WO2020217555A1 - 調理装置及び調理システム - Google Patents
調理装置及び調理システム Download PDFInfo
- Publication number
- WO2020217555A1 WO2020217555A1 PCT/JP2019/029902 JP2019029902W WO2020217555A1 WO 2020217555 A1 WO2020217555 A1 WO 2020217555A1 JP 2019029902 W JP2019029902 W JP 2019029902W WO 2020217555 A1 WO2020217555 A1 WO 2020217555A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- cooking
- temperature
- unit
- control unit
- utensil
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
Images
Classifications
-
- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B6/00—Heating by electric, magnetic or electromagnetic fields
- H05B6/02—Induction heating
- H05B6/06—Control, e.g. of temperature, of power
- H05B6/062—Control, e.g. of temperature, of power for cooking plates or the like
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24C—DOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
- F24C7/00—Stoves or ranges heated by electric energy
- F24C7/08—Arrangement or mounting of control or safety devices
- F24C7/082—Arrangement or mounting of control or safety devices on ranges, e.g. control panels, illumination
- F24C7/083—Arrangement or mounting of control or safety devices on ranges, e.g. control panels, illumination on tops, hot plates
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24C—DOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
- F24C7/00—Stoves or ranges heated by electric energy
- F24C7/08—Arrangement or mounting of control or safety devices
- F24C7/087—Arrangement or mounting of control or safety devices of electric circuits regulating heat
-
- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B1/00—Details of electric heating devices
- H05B1/02—Automatic switching arrangements specially adapted to apparatus ; Control of heating devices
- H05B1/0227—Applications
- H05B1/0252—Domestic applications
- H05B1/0258—For cooking
- H05B1/0261—For cooking of food
- H05B1/0266—Cooktops
-
- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B3/00—Ohmic-resistance heating
- H05B3/68—Heating arrangements specially adapted for cooking plates or analogous hot-plates
-
- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B2213/00—Aspects relating both to resistive heating and to induction heating, covered by H05B3/00 and H05B6/00
- H05B2213/07—Heating plates with temperature control means
Definitions
- the present invention relates to a cooking apparatus and a cooking system.
- Patent Document 1 discloses an induction heating type cooker that heats a cooking utensil such as a pan or a frying pan arranged above the induction heating coil by a magnetic field line generated by a current flowing through the induction heating coil.
- the heating power level is set stepwise, for example, “low heat, medium heat, high heat” or “level 1 to level 5", and the user can use it. , Cooking is done while adjusting the heating power each time during cooking.
- temperature control of the object to be heated in the cooking utensil is very important for cooking. And, in order to reproduce the technique that the chef has cultivated for many years, it is necessary to control the temperature of the object to be heated in units of 1 ° C. In addition, the development of cooking science over the past few decades has been remarkable, and many studies on cooking have revealed that minute differences in heating temperature with respect to the object to be heated have a great effect on taste, texture, nutritional value, etc. Has been made.
- the present invention has been made in view of the above circumstances, and is a cooking apparatus capable of easily cooking a desired dish by controlling the object to be heated in the cooking utensil to an appropriate temperature according to the cooking content.
- the purpose is to provide a cooking system.
- the heating unit for heating the cooking utensil in which the object to be heated is housed, the temperature of the object to be heated, and the temperature of the outer surface of the bottom of the cooking utensil.
- the temperature detection unit for detecting one of the cooking utensils and the surface temperature of the object to be heated in the cooking utensil or the inner surface of the bottom of the cooking utensil are set to the cooking temperature set in the cooking step included in the cooking execution information. It includes a control unit that controls the heating unit based on the temperature detected by the temperature detection unit.
- the temperature detection unit is housed in a main body temperature detection unit that detects the temperature on the outer surface of the bottom of the cooking utensil to be temperature-detected, and the cooking utensil to be the temperature detection target. It includes at least one of an external temperature detection unit that directly detects the temperature of the object to be heated.
- the control unit sets the cooking temperature at the temperature of the object to be heated in the cooking utensil set as a temperature control target or the surface temperature of the bottom inner surface of the cooking utensil.
- a cooking execution unit that executes a cooking process according to a preset cooking procedure while controlling the heating unit, and a cooking utensil when the cooking utensil is heated with the object to be heated housed in the cooking utensil.
- the cooking execution unit includes a profile creating unit that is created according to the specifications of the cooking utensil, and the cooking execution unit is the bottom portion detected by the main body temperature detecting unit using the cooking utensil profile of the cooking utensil in use.
- the temperature of the outer surface is corrected to predict the temperature of the temperature control target, and the heating unit is controlled so that the predicted temperature matches the cooking temperature.
- the cooking apparatus includes an outside temperature detecting unit for detecting the outside air temperature of the kitchen and a pressure detecting unit for detecting the pressure in the kitchen, and the outside air temperature and the pressure are measured in the environment of the kitchen.
- the control unit includes an environment information acquisition unit to be acquired as information, and when the cooking execution information is executed, the control unit controls the output of the heating unit in the cooking process in consideration of the acquired environment information.
- the cooking system according to the present invention is a cooking system configured by connecting one of the cooking devices and a mobile terminal registered as an owner of the cooking device so as to be able to communicate in both directions.
- the mobile terminal includes a terminal control unit that outputs an initialization execution instruction for executing the initialization process of the cooking device, and the cooking device receives the initialization execution instruction from the mobile terminal only. Execute the initialization process with.
- the present invention it is possible to easily cook a desired dish by controlling the object to be heated in the cooking utensil to an appropriate temperature according to the cooking content.
- FIG. 1 is a schematic perspective view schematically showing a cooking device 10 used in the cooking system 1 according to the present embodiment
- FIG. 2 is a schematic configuration diagram schematically showing a state in which the cooking device 10 is viewed in a plan view. Is.
- the cooking apparatus 10 used in the present embodiment is an induction heating type cooker (IH) that heats the cooking utensil C by performing induction heating generated by energizing an induction heating coil arranged under the top plate 10b by applying an alternating current. Cooking heater).
- the cooking device 10 may be a gas cooker such as a gas stove that can electrically control the heating power of gas.
- the cooking utensil C is an utensil such as a pan (including a pressure cooker), a frying pan, a kettle, and a cooking plate such as an iron plate that can be cooked by the cooking apparatus 10.
- the cooking utensil C is a metal utensil capable of supporting induction heating.
- the main body 10a of the cooking apparatus 10 has a thin flat plate shape having a substantially rectangular shape in a plan view, and a heating portion 11 is provided on the lower surface side of a heat-resistant glass top plate 10b that serves as a mounting surface for the cooking utensil C.
- the main body 10a is made of heat-resistant resin or metal.
- a mark line is provided as a mark for mounting the cooking utensil C in the correct position when the cooking utensil C is mounted.
- the heating unit 11 is composed of an induction heating coil that is spirally wound, and is provided on the lower surface of the top plate 10b.
- a high-frequency current of a predetermined amount of current is supplied from the heating control unit 22, which will be described later, in the heating unit 11, magnetic field lines are generated so as to surround the induction heating coil, and the magnetic field lines are innumerable inside the metal cooking utensil C.
- Joule heat is generated due to the electrical resistance of the metal when an eddy current flows.
- the object to be heated contained in the cooking utensil C is heated by this Joule heat.
- a magnetic material made of a magnetic material such as ferrite for suppressing leakage of magnetic flux generated from the induction heating coil and a magnetic field line generated from the induction heating coil are prevented from flowing to the lower side of the base portion.
- a magnetic shielding plate or the like may be provided for this purpose.
- the cooking apparatus 10 directly detects the temperature of the main body temperature detecting unit 12a for detecting the temperature of the outer surface of the bottom of the cooking utensil C and the temperature of the liquid (water or oil) to be heated contained in the cooking utensil C.
- a temperature detection unit 12 including a unit 12b is provided.
- the temperature detection unit 12 detects the temperature of the temperature detection target.
- the temperature detection target of the temperature detection unit 12 is the liquid (water or oil) in the cooking utensil C to be heated or the outer surface of the bottom of the cooking utensil C.
- the main body temperature detection unit 12a is composed of a temperature sensor such as a thermistor, and is provided at a substantially central portion of the top plate 10b.
- the main body temperature detecting unit 12a detects the temperature of the outer surface of the bottom of the cooking utensil C and outputs it to the control unit 18 described later.
- the external temperature detection unit 12b comprises, for example, a temperature sensor such as a thermistor or a thermocouple, and is installed at an opening end of a cooking utensil C or the like.
- the external temperature detection unit 12b includes various communication modules necessary for performing data communication (whether wired or wireless) with the cooking device 10.
- the external temperature detection unit 12b directly detects the temperature of the liquid (water or oil) to be heated contained in the cooking utensil C and outputs it to the control unit 18.
- the cooking device 10 includes an environmental information acquisition unit 13 that acquires physical quantities based on the environmental conditions of a kitchen (kitchen of a general household, a kitchen of a restaurant, an outdoor campsite, etc.) where a user cooks as environmental information, and an environmental information acquisition unit 13 during cooking. It is provided with a weight detecting unit 14 for detecting the weight of the cooking utensil C.
- the environmental information acquisition unit 13 acquires the physical quantity based on the environmental state of the kitchen as environmental information and outputs it to the control unit 18.
- the environmental information acquisition unit 13 may include an outside air temperature detection unit 13a that detects the temperature of the kitchen (outside air temperature) and an atmospheric pressure detection unit 13b that detects the air pressure of the kitchen. Both the outside air temperature detection unit 13a and the atmospheric pressure detection unit 13b can appropriately select and use a well-known sensor device.
- the environmental information acquisition unit 13 may include a humidity detection unit including a humidity sensor capable of detecting the humidity of the kitchen.
- the weight detection unit 14 is composed of a weight sensor such as a load cell, and detects the weight value of the cooking utensil C mounted on the top plate 10b during cooking below the top plate 10b and outputs the weight value to the control unit 18.
- the weight detection unit 14 detects the total weight value of the weight of the cooking utensil C and the weight of the foodstuff (water, cooking utensils, seasonings, etc.) contained in the cooking utensil C.
- the weight value detected by the weight detecting unit 14 is, for example, a cooking process in which heating is stopped when the amount of water in the cooking utensil C is reduced to a predetermined amount, and the heating power is gradually reduced as the amount of water in the cooking utensil C is reduced. It is used when executing a cooking process such as a cooking process in which the end timing of the process cannot be specified by the cooking time.
- various display contents before and during cooking are displayed, and various kinds of cooking execution instructions / stops, cooking execution information, cooking utensil profiles, equipment information, and the like are displayed.
- the operation display unit 15 includes a display area 15a for displaying various display contents and an operation area 15b for displaying various operation buttons.
- the display area 15a is composed of display devices such as a liquid crystal display (LCD) and an organic EL (OLED: organic light-emitting diode) display, and displays the display contents based on a display control instruction from the control unit 18. It is an interface to display.
- the operation area 15b is composed of, for example, a touch panel.
- the operating principle of the touch panel is not particularly limited, but since the cooking apparatus 10 of the present embodiment is often used in a kitchen that handles water, a resistive film method that does not easily hinder its use even when it gets wet is adopted. Is preferable.
- the display area 15a "display contents before cooking”, “display contents during cooking”, “display contents of selection system”, “display contents of setting system” and the like are displayed.
- the temperature of the temperature target set in the cooking execution information the temperature of the temperature target set in the cooking execution information, the cooking mode / cooking execution information candidate selected when cooking, and the cooking time set in the cooking execution information.
- Display related to operation assist for selecting and determining cooking mode / cooking execution information.
- the “temperature target” refers to a temperature control target when executing cooking execution information.
- the temperature target is "water temperature” or “oil temperature” which is the temperature of the object to be heated, and "the surface temperature of the inner surface of the cooking utensil C”.
- the heating unit 11 is controlled so that the "water temperature” becomes the cooking temperature set in the cooking process during cooking.
- display contents during cooking the temperature of the temperature target during cooking, the selected cooking execution information, the contents of the cooking process being executed in the cooking execution information (operation pattern, cooking temperature, cooking time, etc.), An operation assist display indicating an operation method of pausing during cooking can be mentioned.
- Examples of "display contents of the selection system” include real-time temperature of the set temperature target, thermal power indicator, operation assist display such as selection / determination of the set temperature, and display of candidate parameters.
- display contents of the setting system it is related to the display related to the preset management of the cooking execution information, the display related to the setting of the cooking utensil profile, and the communication setting for establishing (session) communication between the cooking device 10 and the mobile terminal 100.
- Display display related to device information (device name, connectable user name, etc.), display related to time setting, and the like.
- Operation buttons 15c used in various operations are displayed in the operation area 15b.
- the operation area 15b of the present embodiment is an area of the alternate long and short dash line in the figure, and a plurality of operation buttons 15c composed of soft keys are displayed.
- a "timer button” operated when setting a cooking time or the like a "back button” for returning an operation being executed, selected or set.
- the operation button 15c is not limited to the soft switch on the touch panel, and may be a mechanical switch such as a push button.
- FIG. 3 is a diagram showing a schematic configuration of the cooking system 1.
- the cooking device 10 described above and the mobile terminal 100 owned by the user are bidirectionally connected to each other so as to be able to communicate with each other.
- the desired cooking can be achieved by operating the operation display unit 15 of the cooking device 10.
- the mobile terminal 100 operates various setting functions before and during cooking provided in the cooking device 10, a function for selecting / executing cooking execution information, a function for creating / managing a cooking utensil profile described later, and the like. It has a function that can be operated and set on the display unit 15. Therefore, in the cooking system 1, communication has been established between the communication unit 16 of the cooking device 10 described later and the terminal communication unit 101 of the registered mobile terminal 100 owned by the owner or guest user of the cooking device 10. If so, these mobile terminals 100 can be made to function as a controller for operating the cooking device 10. The point that the mobile terminal 100 functions as a controller will be described in detail later.
- FIG. 4 is a functional block diagram of the cooking system 1.
- the cooking apparatus 10 includes a communication unit 16, a storage unit 17, and a control unit 18.
- the description of the configuration requirements described in the previous section will be omitted.
- the communication unit 16 is composed of various communication modules necessary for performing data communication with the cooking device 10.
- the communication unit 16 establishes a communication state between the cooking device 10 and the registered mobile terminal 100 so that bidirectional communication is possible.
- As the communication method with the mobile terminal 100 Bluetooth (registered trademark), Wi-Fi (registered trademark), infrared communication, NFC and the like can be used as long as it is wireless communication regardless of wired communication or wireless communication.
- the storage unit 17 is composed of a general-purpose storage device such as a non-volatile memory such as a flash memory.
- the storage unit 17 has a cooking execution information database in which preset (preset) cooking execution information is organized, a profile database in which cooking utensil profiles for each cooking utensil C are organized, and cooking set after the start of use of the cooking device 10.
- a control program for performing drive control of each part constituting the cooking device 10 is stored.
- the cooking execution information database stores recipe execution information, multi-step execution information, and single-step execution information, which are cooking execution information, in a state of being organized by type.
- the profile database contains, for example, cooking utensil C utensil information (for example, information indicating individual specifications of cooking utensil C, such as the name of cooking utensil C, the size (capacity, diameter) of cooking utensil C, and the material of cooking utensil C). And the cooking utensil profile of each cooking utensil C are stored in association with each other.
- the control unit 18 includes processors such as a CPU (Central Processing Unit), a ROM (Read Only Memory), and a RAM (Random Access Memory), and executes a predetermined control program stored in the storage unit 17 to execute the cooking apparatus 10. It controls various controls related to the drive of the CPU.
- the control unit 18 communicates with the input reception unit 19, the cooking execution unit 20, the timekeeping unit 21, the heating control unit 22, the cooking execution information creation unit 23, the profile creation unit 24, the preset management unit 25, and communication settings.
- a unit 26, a device information setting unit 27, and a display control unit 28 are provided.
- the input receiving unit 19 receives a control instruction based on the operation content operated by the operation display unit 15 or a control instruction from the mobile terminal 100. When the input receiving unit 19 receives the control instruction, the input receiving unit 19 outputs the control instruction to the output destination.
- the control instructions received by the input receiving unit 19 include, for example, a cooking mode before cooking and a selection instruction of various parameters, an instruction before / during cooking (instruction such as start, pause, skip, stop, etc.), when creating a cooking mode, or Instructions when creating a profile (selection instructions when selecting a cooking mode, instructions for setting various parameters when setting a cooking mode, instructions for setting conditions when creating a profile, etc.), instructions when managing presets (deletion and update of items to be preset) , Initialization decision instruction), Communication setting instruction between the cooking device 10 and the mobile terminal 100 (decision instruction when entering a password, decision instruction when connecting method, etc.), instruction when setting device information (device name, User name, decision instruction after setting the time, etc.).
- the temperature detection unit 12 (at least of the main body temperature detection unit 12a and the external temperature detection unit 12b) On the other hand, the temperature value detected in (1), the time counting time for each cooking process measured by the measuring unit 21, the environmental information acquired by the environmental information acquisition unit 13, and the cooking utensil profile stored in the storage unit 17 are obtained. As appropriate, the heating control unit 22 is driven to control the heating unit 11 so that the temperature target set in the cooking execution information becomes an appropriate temperature in each cooking process.
- the cooking execution unit 20 determines the set cooking temperature while sequentially monitoring the temperature values of at least one of the main body temperature detection unit 12a and the external temperature detection unit 12b. Temperature Controls the temperature of the target. Further, when the cooking execution unit 20 executes cooking execution information using only the temperature detected by the main body temperature detection unit 12a, the cooking execution unit 20 uses the measured temperature value detected by the main body temperature detection unit 12a for cooking.
- the temperature of the temperature target is predicted by correcting using the cooking utensil profile of the utensil C, and the heating unit 11 is controlled so that the predicted temperature, which is the prediction result, matches the cooking temperature set in each cooking step. That is, the cooking execution unit 20 adjusts and controls the electric power supplied from the heating control unit 22 to the heating unit 11 by using the cooking utensil profile so that the predicted temperature matches the cooking temperature.
- the cooking execution unit 20 When executing the cooking execution information, the cooking execution unit 20 reflects the environmental information acquired by the environmental information acquisition unit 13 and adjusts the heating output of the cooking process as necessary. For example, when making a clear consomme soup with French cuisine, a fine amount of heat called “Mijote (the amount of heat that the water surface sways and sometimes foams)" is required. However, when the environment of the kitchen changes, such as when a low pressure approaches and the pressure drops, or when cooking at a relatively high altitude, the boiling point drops, so the desired degree of heating can be obtained. It may not be possible to make a clear soup due to excessive steam bubbles.
- Mijote the amount of heat that the water surface sways and sometimes foams
- the cooking apparatus 10 of the present embodiment by acquiring the environmental information of the kitchen and reflecting it in the cooking execution information, it depends on the environmental state of the kitchen, especially when the boiling process is included in the cooking process.
- the output of the heating unit 11 can be finely controlled. Therefore, in the cooking apparatus 10, the output of the heating unit 11 can be controlled so as to generate the amount of steam bubbles like "Mijote" when making the above-mentioned clear consomme soup.
- the cooking execution unit 20 performs the heating power adjustment process based on the weight value detected by the weight detection unit 14. For example, suppose that the recipe information for making a bouillon in the recipe mode includes a cooking step of turning off the fire when the amount of water contained in the cooking utensil C changes from 4 L to 2 L. In this case, even if the cooking time is simply set, the amount of water may not be the specified amount. However, since the cooking execution unit 20 can determine the timing to stop the fire based on the weight value detected by the weight detection unit 14, heating is continued until the specified amount of water is reached, and when the amount of water reaches a predetermined amount. The heating can be stopped with.
- the cooking execution unit 20 can control the heating unit 11 so as to gradually reduce the heating power in proportion to the decrease in the amount of water based on the weight value detected by the weight detection unit 14. A constant amount of foaming can be maintained until the end of cooking.
- the cooking execution unit 20 is detected by the main body temperature detection unit 12a in this cooking process.
- An upper limit is set for the temperature value, and the heating control unit 22 can be controlled so as not to exceed the upper limit.
- cooking "custard" as recipe information a cooking process in which semi-solid ingredients are kneaded at a constant temperature for a predetermined time is included, but if the temperature at the bottom of the cooking utensil C is too high, the cooking utensil There is a risk that some of the ingredients touching the bottom of C will be burnt.
- the cooking execution unit 20 sets an upper limit on the temperature value detected by the main body temperature detection unit 12a, and controls the heating control unit 22 so that the temperature of the outer surface of the bottom portion of the cooking utensil C does not exceed the upper limit.
- the cooking apparatus 10 can suppress the burning of the ingredients as compared with cooking with a general cooking utensil, and thus has the effect of remarkably improving the convenience.
- the cooking execution unit 20 controls the heating control unit 22 so as to obtain an appropriate heating power based on the cooking utensil profile of the cooking utensil C used. .. Further, the cooking execution unit 20 can adjust the heating power of the heating unit 11 with higher accuracy by controlling the heating control unit 22 by using the environmental information acquired by the environmental information acquisition unit 13 in addition to the cooking utensil profile. It becomes.
- the cooking mode executed by the cooking execution unit 20 includes "recipe mode”, “multi-step mode”, and “single step mode” as preset modes.
- the cooking mode includes a "legacy mode” in which cooking is performed by adjusting the heating power, which is a general method of using a cooking device.
- the recipe mode is a cooking device based on recipe information in which the cooking process is set in advance according to the cooking procedure, such as cooking recipes published by professional cooks and cooking researchers, cooking recipes published by research and educational institutions, etc. This is a mode in which the temperature of 10 and the cooking time are controlled.
- the user selects the recipe mode as the cooking mode and selects the desired recipe information.
- the parameters included in the recipe information include “cooking name”, “cooking procedure and cooking process”, “cooking temperature and cooking time for each cooking process”, “presence or absence of standby processing before and after the cooking process”, and " These parameters are appropriately set for each cooking process of cooking, including “waiting time”, and are combined according to the cooking procedure.
- the cooking execution unit 20 controls the time measuring unit 21 and the heating control unit 22 so that the cooking process is sequentially executed according to the recipe information selected together with the recipe mode.
- the multi-step mode is a mode in which the temperature of the cooking apparatus 10 and the cooking time are controlled according to the multi-step execution information in which a plurality of cooking processes are combined.
- the user selects the multi-step mode as the cooking mode, selects desired multi-step execution information, and sets predetermined parameters.
- the cooking execution unit 20 sets the timing unit 21 and the heating control unit 22 so that the cooking process is sequentially executed according to the multi-step execution information set together with the multi-step mode. Control.
- the single step mode is a mode in which the cooking process controls the temperature of the cooking apparatus 10 and the cooking time according to the single step execution information of one pattern.
- the user selects the single step mode as the cooking mode, selects the desired single step execution information, and sets predetermined parameters.
- the cooking execution unit 20 controls the time measuring unit 21 and the heating control unit 22 so that the cooking process is executed according to the single step execution information selected together with the single step mode. To do.
- the legacy mode is a cooking method similar to that of a general cooking device, that is, a mode in which the operation button 15c of the operation display unit 15 is operated to adjust the heating power of the heating unit 11 to perform cooking.
- the cooking execution unit 20 controls the heating control unit 22 according to the operation instruction from the operation display unit 15.
- the timekeeping unit 21 is, for example, a circuit such as an RTC (Real time Clock), and has a function as an internal clock for measuring the time, as well as a timekeeping required for various controls such as when cooking is executed and when a cookware profile is set. It has a function as a timer to perform. Further, the timekeeping unit 21 outputs a timekeeping end signal after measuring the set time. This timekeeping end signal functions as, for example, a trigger for notifying the end of a predetermined cooking process.
- RTC Real time Clock
- the heating control unit 22 is composed of an inverter circuit, receives power from an external power source (commercial power source), rectifies it once to obtain DC pulse power, and converts this DC pulse power into high-frequency AC current of, for example, about 20 to 50 KHz. It is supplied to the heating unit 11.
- the amount of high-frequency alternating current supplied from the heating control unit 22 to the heating unit 11 is appropriately controlled according to the cooking process being executed by the cooking execution unit 20 or the profile creation process being executed by the profile creation unit 24.
- the cooking execution information creation unit 23 creates cooking execution information corresponding to the cooking mode set when the user cooks, based on various parameters set by the user.
- "multi-step execution information” and “single-step execution information” can be created from the preset cooking execution information.
- the cooking execution information creation unit 23 outputs the created cooking execution information to the preset management unit 25.
- Multi-step execution information When creating the multi-step execution information, the user sets the parameters such as "operation pattern”, "type of temperature detection unit 12 to be used”, “type of temperature target”, and cooking so as to obtain the desired multi-step execution information. “Cooking temperature” and “cooking time”, “trigger setting”, “standby process and standby process time”, “presence / absence of lid”, “loop step”, etc. for each process are appropriately set.
- the "operation pattern” is, for example, “heating (low temperature)” for cooking in the range of 30 ° C. to 99 ° C., “heating (high temperature)” for cooking in the range of 100 ° C. to 200 ° C., and “heating (high temperature)” for boiling water.
- the user desires to include “boiling”, “standby” which is a standby state when performing other processing before and after the cooking process, “loop” which repeats a predetermined cooking process, and "end” which ends cooking. It is appropriately set so that the cooking procedure is used.
- the “type of the temperature detection unit 12 to be used" the “main body temperature detection unit 12a” or the “external temperature detection unit 12b” is set as the temperature detection unit 12 used during cooking.
- any one of “water temperature”, “oil temperature”, and “surface temperature of the bottom inner surface of the cooking utensil C” is set as the temperature target.
- the “cooking temperature” means that the control temperature of the temperature target for each cooking process is set in the set operation pattern.
- the “cooking time” is set to the duration when the temperature target for each cooking process reaches a predetermined cooking temperature in the set operation pattern.
- the "trigger setting” for example, “time” or “predetermined button operation” is set as a trigger for shifting (skipping) to the next cooking process.
- the “standby process and standby process time” are a process of temporarily suspending the cooking process in order to perform a predetermined process (addition of ingredients, straining of ingredients, etc.) during the cooking process to be executed, and the process thereof.
- the standby processing time is set.
- predetermined process addition of ingredients, straining of ingredients, etc.
- the "operation pattern” includes the above-mentioned “heating (low temperature)”, “heating (high temperature)", and “boiling”, and one of these parameters is set.
- “type of temperature detection unit 12 to be used” "type of temperature target”, “cooking temperature”, “cooking time”, “trigger setting” and “presence / absence of lid” are set in the multi-step execution information.
- the parameters are the same as the above parameters, and the parameters corresponding to the selected operation pattern can be set.
- the profile creation unit 24 creates the cooking utensil profile of the cooking utensil C used by the user.
- the “cooking utensil profile” is the “cooking utensil information” of the cooking utensil C, and the temperature and external temperature of the bottom outer surface of the cooking utensil C detected by the main body temperature detection unit 12a when the preset calibration process is executed.
- “Temperature temperature difference information” showing the dynamic relationship of the temperature difference for each elapsed time obtained by observing the temperature difference with the temperature of the object to be heated in the cooking utensil C detected by the detection unit 12b over time.
- a cookware profile is created for each cookware C used.
- the calibration process executed by the profile creating unit 24 is a “heating step (heating of the object to be heated)” for the cooking instrument C containing a predetermined amount of liquid (water or oil) to be the object to be heated to be stored in the cooking utensil C.
- the operations of "process (step)”, “heat retention step (step of keeping the object to be heated at a predetermined temperature)” and “heat dissipation step (step of stopping the heat treatment to dissipate heat of the object to be heated)” are executed.
- the calibration process is executed in a state where about half to two-thirds of the total capacity of the cooking utensil C is accommodated in the cooking utensil C to be used. To do.
- the profile creation unit 24 starts the calibration process, the temperature value detected by the main body temperature detection unit 12a (that is, the measured temperature value of the bottom outer surface of the cooking utensil C) and the temperature detected by the external temperature detection unit 12b.
- the value (that is, the measured temperature value of the object to be heated in the cooking utensil C) is acquired at predetermined time intervals (for example, every 1 second).
- the profile creation unit 24 determines the temperature difference between the measured temperature value of the main body temperature detecting unit 12a and the measured temperature value detected by the external temperature detecting unit 12b in each process executed in the calibration process as the elapsed time of the calibration process. Observe sequentially along.
- the profile creation unit 24 has a temperature value (actual measurement) detected by the main body temperature detection unit 12a based on the temperature difference information over time obtained from the dynamic relationship of the temperature difference for each elapsed time obtained by the calibration process. To correct the temperature value) and predict the temperature value of the object to be heated in the cooking utensil C and the surface temperature (that is, the temperature target) of the bottom inner surface of the cooking utensil C based on the corrected measured temperature value. Create a cookware profile for.
- the profile creating unit 24 executes the calibration process, if the temperature of the object to be heated housed in the cooking utensil C is room temperature (for example, 28 ° C.) or higher, the correct calibration process cannot be performed. Notify the user of a warning. In addition to displaying a warning display on the operation display unit 15 of the cooking device 10 or the terminal display unit 104 of the mobile terminal 100, this warning may be sounded to the mobile terminal 100.
- the cooking utensil C includes, for example, the temperature of the outer surface of the bottom of the cooking utensil C and the surface temperature of the inner surface of the bottom of the cooking utensil C or an object to be accommodated, depending on the type of metal material constituting the cooking utensil C, the thickness of the cooking utensil C, and the like. There is a temperature difference with the temperature of the heated product (water temperature or oil temperature).
- the cooking execution unit 20 controls the temperature based on the temperature of the outer surface of the bottom of the cooking utensil C, that is, the actual temperature value of the main body temperature detection unit 12a.
- an error may occur between the temperature detected by the main body temperature detecting unit 12a and the surface temperature of the bottom inner surface of the cooking utensil C or the actual temperature of the housed object to be heated.
- the measured temperature value detected by the main body temperature detection unit 12a is corrected according to each cooking utensil C to be used.
- the surface temperature of the inner surface of the bottom of the cooking utensil C or the temperature value of the object to be heated can be accurately predicted, so that the temperature of the temperature target can be controlled with high accuracy.
- it is effective for dishes that are cooked with a lid and stir-fried dishes that use a frying pan because the external temperature detection unit 12b cannot be used.
- FIG. 5 shows an example of a temperature locus between the temperature value detected by the main body temperature detection unit 12a and the temperature value detected by the external temperature detection unit 12b when the cooking utensil C to be profiled is calibrated. It is a graph which shows. The solid line in the figure shows the temperature value detected by the main body temperature detection unit 12a for each elapsed time of the calibration process, and the dotted line shows the temperature value detected by the external temperature detection unit 12b. Further, in the graph shown in FIG. 5, the vertical axis represents temperature (° C.) and the horizontal axis represents time (min), and as an example of the calibration process, “heating step” ⁇ “heat retention step (60 ° C.)” ⁇ “heating step”. “ ⁇ " Insulation step (95 ° C.) " ⁇ ” Heat dissipation step "is executed in this order.
- a temperature difference occurs between the measured temperature value detected by the main body temperature detecting unit 12a and the measured temperature value detected by the external temperature detecting unit 12b. You can see that. Further, as shown in FIG. 5, the temperature difference of the actually measured temperature values detected by each temperature detection unit changes with time and is not a constant temperature difference.
- the profile creating unit 24 compares the measured temperature value of the main body temperature detecting unit 12a with the measured temperature value of the external temperature detecting unit 12b, corrects the measured temperature value of the main body temperature detecting unit 12a, and corrects the measured temperature value of the cooking utensil C.
- a cookware profile for predicting the temperature of the object to be heated, which is the temperature target, and the surface temperature of the bottom inner surface of the cookware C is created from the measured temperature value of the bottom outer surface.
- the profile creation unit 24 can execute profile prediction processing for predicting the temperature locus by searching the profile database for a cookware profile that is close to the temperature locus of the newly created cookware profile and superimposing the profiles. ..
- the profile creation unit 24 executes the calibration process in 10 minutes, which is half of the processing time of the calibration process, which is usually set to 20 minutes.
- the profile creation unit 24 collates the calibration processing result with the past cooking utensil profile that is close to the processing result after the calibration processing to be newly created is completed.
- the profile creation unit 24 can predict the temperature locus of the other half of the normal calibration processing time, and can shorten the profile creation time.
- the preset management unit 25 When the "setting mode" is selected as the operation mode and the "preset management process” is selected as the processing content, the preset management unit 25 performs new registration processing, overwriting processing, and deletion processing of the preset cooking execution information. The preset management unit 25 performs the above processing according to a control instruction regarding preset management from the operation display unit 15 or the mobile terminal 100.
- the preset management unit 25 makes structural changes in the recipe information such as "type of operation pattern”, "addition / deletion of cooking process", and "setting of loop step” in the preset recipe information, It is possible to temporarily register the target recipe information as the multi-step execution information and execute the recipe information change process for changing a predetermined parameter of the multi-step execution information. As a result, the user can change the content of the cooking process of the recipe information by registering the recipe information as the multi-step execution information.
- the preset management unit 25 uses the cooking device 10 such as the cooking execution information database, the profile database, and the device information stored in the storage unit 17. Performs initialization processing that initializes various information set after the start and restores the factory default settings.
- the initialization process is executed when an initialization execution instruction that can be output only from the mobile terminal 100 registered as the owner is received. That is, in the cooking system 1 according to the present embodiment, the initialization process can be performed only from the mobile terminal 100 registered as the owner, and the initialization process cannot be performed from the mobile terminal 100 and the cooking device 10 registered as guests.
- the communication setting unit 26 communicates between the cooking device 10 and the mobile terminal 100 or the external temperature detection unit 12b. Communication establishment processing is performed according to the communication method so that the state is established. The communication setting unit 26 performs the above processing according to a control instruction regarding communication settings from the operation display unit 15 or the mobile terminal 100.
- the communication state is established by the communication setting unit 26, the cooking device 10 is in a state of being able to communicate bidirectionally with the mobile terminal 100.
- the mobile terminal 100 is subjected to a predetermined registration process for the cooking device 10 in order to establish communication with the cooking device 10.
- the mobile terminal 100 owned by the user who is the owner of the cooking device 10 becomes an "owner-registered mobile terminal" for the cooking device 10 by performing the registration process. Further, it is also possible to register a mobile terminal 100 other than the mobile terminal 100 registered as an owner (for example, a mobile terminal owned by a guest user authorized as a user who becomes the owner).
- the mobile terminal 100 registered as a guest user can control the cooking device 10 in various ways as a remote controller for the cooking device 10.
- the guest-registered mobile terminal 100 is in a state in which certain restrictions are applied to the functions that can be executed by the owner-registered mobile terminal 100.
- the communication setting unit 26 When communication with the mobile terminal 100 or the external temperature detection unit 12b to be connected is established, the communication setting unit 26 outputs a connection completion notification indicating that the communication has been established. Further, when communication cannot be established with the connection destination, the communication setting unit 26 outputs a notification (reconfirmation notification) prompting reconfirmation of the connection setting contents. This reconfirmation notification re-sets the settings to the user when communication is not established between the cooking device 10 and the connection destination, such as when the password content is entered incorrectly, the device malfunctions, or the radio wave condition is unstable. Output for confirmation.
- the reconfirmation notification of the connection setting contents may be displayed on the operation display unit 15 of the cooking device 10 or the terminal display unit 104 of the mobile terminal 100, or may be notified to the mobile terminal 100 by ringing.
- the device information setting unit 27 When “setting mode” is selected as the operation mode and “device information setting processing” is selected as the processing content, the device information setting unit 27 performs processing related to setting / updating device information.
- the device information setting unit 27 performs device information setting processing such as registration / change processing of the device name of the cooking device 10, update processing of the control program of the cooking device 10, user registration processing, time setting / correction processing, and power supply when no operation is performed. Time setting process for turning off, temperature display mode (° C / ° F) setting process, and the like are performed.
- the device information setting unit 27 performs the above processing according to a control instruction regarding device setting from the operation display unit 15 or the mobile terminal 100.
- the display control unit 28 displays the display content displayed when the cooking device 10 is operated in the display area 15a of the operation display unit 15.
- the display control unit 28 controls to switch the screen or change the display content according to the control instruction received by the input reception unit 19, and changes the display content according to the progress of the cooking execution information executed by the cooking execution unit 20. Control to make it.
- the mobile terminal 100 is various portable communication terminals owned by the user, such as a mobile phone, a smartphone, and a tablet terminal.
- the mobile terminal 100 includes a terminal communication unit 101, a terminal storage unit 102, a terminal control unit 103, a terminal display unit 104, and a terminal operation unit 105.
- the terminal communication unit 101 is composed of various communication modules necessary for data communication with the cooking device 10.
- Bluetooth registered trademark
- Wi-Fi registered trademark
- infrared communication NFC and the like
- the terminal storage unit 102 includes, for example, a non-volatile memory such as a flash memory and a general-purpose storage device such as an SD card.
- the terminal storage unit 102 stores various control programs necessary for the mobile terminal 100 to function as a normal portable communication terminal.
- the terminal storage unit 102 stores (installs) a cooking system application for executing various control processing sequences of the cooking device 10 to make the mobile terminal 100 function as a remote controller for the cooking device 10.
- This cooking system application is downloaded / installed from the outside via the terminal communication unit 101.
- the terminal storage unit 102 also stores information necessary for driving the cooking device 10 by remote operation, such as a cooking execution information database and a profile database stored in the storage unit 17 of the cooking device 10.
- the terminal storage unit 102 is not limited to the storage device mounted on the mobile terminal 100, and may utilize cloud storage such as an external server.
- the terminal control unit 103 includes processors such as a CPU (Central Processing Unit), a ROM (Read Only Memory), and a RAM (Random Access Memory), for example. Based on the operation instruction from the terminal operation unit 105, the terminal control unit 103 executes various control programs stored in the terminal storage unit 102 so as to function as a normal portable communication terminal. The terminal control unit 103 controls to switch the image to be displayed on the terminal display unit 104 or change the display content based on the operation information operated by the terminal operation unit 105, and progresses the cooking execution information executed by the cooking execution unit 20. Performs processing related to display control, such as control to change the display content according to the situation.
- processors such as a CPU (Central Processing Unit), a ROM (Read Only Memory), and a RAM (Random Access Memory), for example.
- the terminal control unit 103 executes various control programs stored in the terminal storage unit 102 so as to function as a normal portable communication terminal.
- the terminal control unit 103 controls to switch the image to be displayed on the terminal display
- the terminal control unit 103 By activating the cooking system application stored in the terminal storage unit 102, the terminal control unit 103 realizes the functions of each unit constituting the control unit 18 of the cooking device 10.
- the mobile terminal 100 can drive and control the cooking device 10 to be controlled according to the processing sequence of the cooking system application. Therefore, the mobile terminal 100 can function as a remote controller capable of remotely controlling the cooking device 10.
- the terminal control unit 103 has each configuration shown in FIG. 4 when the cooking system application is started.
- the terminal control unit 103 includes a terminal-side cooking execution unit 103a that realizes the function of the cooking execution unit 20 of the control unit 18, a terminal-side time measurement unit 103b that realizes the function of the time measurement unit 21 of the control unit 18.
- the terminal-side cooking execution information creation unit 103c that realizes the function of the cooking execution information creation unit 23 of the control unit 18, the terminal-side profile creation unit 103d that realizes the function of the profile creation unit 24 of the control unit 18, and the control unit 18.
- It includes a terminal-side preset management unit 103e that realizes the function of the preset management unit 25, and a terminal-side device information setting unit 103f that realizes the function of the device information setting unit 27 of the control unit 18.
- the terminal control unit 103 When the terminal control unit 103 functions as a remote controller for the cooking device 10, it transmits a control instruction according to the operation information operated by the terminal operation unit 105 to the cooking device 10 via the terminal communication unit 101. Further, when the cooking temperature of 100 ° C. or higher is set in the cooking process, the terminal control unit 103 controls so that the operation from the portable terminal 100 related to cooking becomes invalid from the viewpoint of safety.
- the terminal-side preset management unit 103e initializes various information set after the start of use of the cooking device 10, such as the cooking execution information database, profile database, and device information stored in the storage unit 17, and is shipped from the factory. Outputs an initialization execution instruction for causing the cooking apparatus 10 to execute the "initialization process" for returning to the state of.
- This initialization process can be instructed only from the mobile terminal 100 registered as the owner. As a result, the cooking apparatus 10 is prevented from being subjected to an unintended initialization process by another person. Further, when the user transfers the cooking device 10 to another person, the user himself / herself performs the initialization process using the mobile terminal 100 registered as the owner, so that the user's personal information stored in the storage unit 17 is stored. There is no need to worry about unauthorized leakage.
- the terminal display unit 104 is composed of display devices such as a liquid crystal display and an organic EL display.
- the terminal control unit 103 displays various display contents necessary for driving the mobile terminal 100 on the display area, in addition to the display contents linked and displayed when the cooking system application is started under the control of the terminal control unit 103.
- the terminal operation unit 105 is composed of various input devices such as a mechanical operation key such as a selection button and a UI (User Interface) such as a touch panel provided with a touch sensor on the display screen of the terminal display unit 104.
- a mechanical operation key such as a selection button
- a UI User Interface
- touch panel provided with a touch sensor on the display screen of the terminal display unit 104.
- FIG. 6 is a flowchart showing an outline of the basic operation of the cooking system 1 according to the present embodiment.
- the control unit 18 executes the legacy mode (S200).
- the legacy mode the user operates the operation display unit 15 to perform a thermal power adjustment process for setting a desired thermal power.
- the cooking apparatus 10 controls the heating unit 11 so that the heating power is set by the control unit 18. Then, when the control unit 18 determines that the cooking by the user is completed, the control unit 18 returns to S100 again.
- the control unit 18 executes the single step mode (S300).
- the control unit 18 performs pre-cooking processing in the single step mode (S310).
- pre-cooking processing in the single step mode (S310)
- various parameters necessary for executing the single-step execution information are selected and set.
- control unit 18 when the control unit 18 receives the input of the cooking execution when the pre-cooking process is completed and is in the state of waiting for the cooking execution, the control unit 18 starts the cooking execution process of cooking according to the set single-step execution information. (S320). In S320, the control unit 18 controls the timing unit 21 and the heating control unit 22 so that the cooking process is executed according to the selected single step execution information. Then, when the control unit 18 determines that the cooking is completed, the control unit 18 returns to S100 again.
- the control unit 18 executes the recipe mode (S400).
- the control unit 18 performs pre-cooking processing in the recipe mode (S410).
- the control unit 18 executes the multi-step mode (S500).
- the control unit 18 performs pre-cooking processing in the multi-step mode (S510).
- FIG. 7 is a flowchart of the cooking execution process.
- the control unit 18 performs a cooking process confirmation process for confirming the cooking process of the cooking execution information to be executed (S601).
- the control unit 18 confirms the number of cooking process steps, the order of cooking processes, etc. set in the cooking execution information to be executed.
- the control unit 18 performs a parameter confirmation process for confirming the parameters of the cooking process to be executed (S602).
- the parameters set in the cooking process to be executed "operation pattern”, "temperature target”, “cooking temperature”, “cooking time”, “trigger”, "presence / absence of standby process and standby time” , “With or without lid”, etc.
- the control unit 18 detects the temperature detected by the temperature detection unit 12, that is, the temperature of the outer surface of the bottom of the cooking utensil C detected by the main body temperature detection unit 12a, and the temperature detected by the external temperature detection unit 12b.
- the temperature (water temperature or oil temperature) of the object to be heated stored in the cooking utensil C is acquired (S604).
- the temperature detected by the external temperature detection unit 12b of S604 is not acquired in S602 when the setting parameter of "with lid" exists in the cooking process of the cooking execution information to be executed.
- control unit 18 acquires the environmental information acquired by the environmental information acquisition unit 13, that is, the outside air temperature detected by the outside air temperature detection unit 13a and the atmospheric pressure of the kitchen detected by the atmospheric pressure detection unit 13b ( S605).
- control unit 18 starts a heat treatment that controls the heating unit 11 while taking environmental information into consideration so that the temperature target set in the cooking process becomes the set cooking temperature (S606).
- the control unit 18 starts timing of the cooking time by the timing unit 21 (S607).
- the control unit 18 determines whether or not the temperature of the temperature target has reached the set cooking temperature (S608).
- S608 when the control unit 18 determines that the temperature of the temperature target has reached the cooking temperature (S608-Yes), the control unit 18 performs a heat retention process for controlling the heating unit 11 so that the current temperature is maintained (S608-Yes). S609).
- the control unit 18 determines that the temperature of the temperature target has not reached the cooking temperature (S608-No)
- the control unit 18 continues the heat treatment during execution.
- the control unit 18 controls the temperature of the temperature target while sequentially monitoring the temperature value of at least one of the main body temperature detection unit 12a and the external temperature detection unit 12b.
- the control unit 18 determines whether or not the cooking time of the cooking process being executed has been reached (S610). In S610, when the control unit 18 determines that the cooking process being executed has reached the set cooking time (S610-Yes), the control unit 18 returns to S602 in order to move to the next cooking process. On the other hand, when the control unit 18 determines that the cooking process being executed has not reached the set cooking time (S610-No), the control unit 18 continues the heat retention process.
- the control unit 18 detects the temperature detected by the temperature detection unit 12, that is, the temperature of the bottom outer surface of the cooking utensil C detected by the main body temperature detection unit 12a, and the temperature detected by the external temperature detection unit 12b.
- the temperature (water temperature or oil temperature) of the object to be heated stored in the cooking utensil C is acquired (S621).
- the temperature detected by the external temperature detection unit 12b of S621 is not acquired in S602 when the setting parameter of "with lid" exists in the cooking process of the cooking execution information to be executed.
- control unit 18 acquires the environmental information acquired by the environmental information acquisition unit 13, that is, the outside air temperature detected by the outside air temperature detection unit 13a and the atmospheric pressure of the kitchen detected by the atmospheric pressure detection unit 13b ( S622).
- the control unit 18 reads out the cooking utensil profile of the cooking utensil C to be used from the storage unit 17 (S623), and uses the cooking utensil profile to obtain an appropriate heating power while taking environmental information into consideration.
- the heat treatment for controlling the above is started (S624).
- the control unit 18 determines whether or not the water in the cooking utensil C has boiled (S625).
- control unit 18 determines that the water in the cooking utensil C has boiled (S625-Yes)
- the control unit 18 returns to S602 in order to move to the next cooking step.
- the control unit 18 determines that the water in the cooking utensil C is not boiling (S625-No)
- the control unit 18 continues the heat treatment during execution.
- the control unit 18 sequentially monitors at least one of the temperature values of the main body temperature detection unit 12a and the external temperature detection unit 12b to determine whether or not boiling has occurred.
- the control unit 18 When executing the standby process, the control unit 18 starts the standby process (S631), and then causes the timekeeping unit 21 to start the clocking of the standby time (S632). Next, the control unit 18 determines whether or not additional heating is set in the cooking process (S633).
- control unit 18 determines that the additional heating is set (S633-Yes)
- the control unit 18 controls the heating unit 11 so as to reach the set target temperature to perform the additional heating treatment (S634). .. Then, the control unit 18 determines whether or not the temperature target has reached the target temperature by the additional heat treatment (S635). On the other hand, when it is determined that the additional heating is not set (S633-No), it is determined whether or not there is a trigger input for releasing the standby state (S636).
- control unit 18 determines in S636 that there is a set trigger input (S635-Yes), the control unit 18 returns to S602 in order to move to the next cooking process. On the other hand, when the control unit 18 determines that there is no set trigger input (S636-No), the control unit 18 returns to S633 again. In S636, the control unit 18 determines whether or not a timekeeping end signal indicating that the set waiting time has elapsed or an operation signal of a predetermined operation button (for example, a skip button) is input as a trigger input.
- a predetermined operation button for example, a skip button
- the control unit 18 ends the processing of the executed cooking execution information (S640).
- the completion of the processing of the cooking execution information means that the series of cooking steps set in the cooking execution information is completed and the cooking is completed.
- the temperature detection unit 12 when the temperature detection unit 12 is only the main body temperature detection unit 12a, the measured temperature value of the main body temperature detection unit 12a is corrected by using the cooking utensil profile to be used, and the temperature of the temperature target is adjusted.
- the heating unit 11 is controlled so that the predicted temperature matches the set cooking temperature. This control is performed by the above-mentioned heat treatment (treatment of S606 to S610), boiling treatment (treatment of S624 and S625), and standby treatment (treatment of S633 to S635).
- FIG. 8 is a flowchart of the setting mode execution process.
- “profile creation processing” and “communication setting processing” are described as setting mode execution processing, but in addition to this, “profile management processing” and “device information setting processing” are also included. May be included.
- the control unit 18 performs a process of determining the content of the selected setting process (S701). In S701, the control unit 18 determines whether the content of the setting process is "profile creation process” or "communication setting process”.
- the control unit 18 acquires the utensil information of the cooking utensil C to be used (S703).
- the utensil information includes the name of the cooking utensil C and the specification information of the cooking utensil C.
- the control unit 18 causes the control unit 18 to set the object to be heated in the set cooking utensil C. It is determined whether or not the temperature is normal temperature (S705).
- control unit 18 sequentially monitors the temperature values of the main body temperature detection unit 12a and the external temperature detection unit 12b, and executes the calibration process while acquiring the temperature difference of the temperature values for each elapsed time.
- control unit 18 determines that the set calibration process is completed (S710-Yes)
- it creates a cooking utensil profile of the target cooking utensil C (S711), and registers the cooking utensil profile.
- the process is performed (S712), and the process is terminated.
- the control unit 18 determines that the set calibration process has not been completed (S711-No)
- the control unit 18 continues the calibration process being executed.
- the control unit 18 shifts to the communication setting process (S720).
- the mobile terminal 100 to be connected is the mobile terminal 100 for which the user registration process has been performed in advance.
- the control unit 18 In executing the communication setting process, the control unit 18 performs a process of confirming the connection destination (mobile terminal 100 or the external temperature detection unit 12b) of the cooking device 10 (S721). Next, the control unit 18 performs a communication establishment process for establishing communication between the cooking device 10 and the connection destination (S722). In S722, as a communication establishment process, the control unit 18 performs a process of establishing communication between the cooking device 10 and the external temperature detection unit 12b to be connected or the mobile terminal 100 according to the communication method. ..
- the control unit 18 determines whether or not communication between the cooking device 10 and the connection destination has been established by the communication establishment process (S723).
- the control unit 18 determines that the communication between the cooking device 10 and the connection destination has been established (S723-Yes)
- the control unit 18 outputs a connection completion notification (S724) and ends the process.
- the control unit 18 determines that the communication between the cooking device 10 and the connection destination has not been established (S723-No)
- the control unit 18 outputs a notification prompting the reconfirmation of the connection setting (S725). Return to S722 again.
- the cooking apparatus 10 has the heating unit 11 for heating the cooking utensil C in which the heated object such as water, oil, and foodstuff is stored, and the temperature of the heated object.
- the cooking execution information includes the temperature detection unit 12 that detects at least one of the temperatures of the bottom outer surface of the cooking utensil C, the temperature of the object to be heated in the cooking utensil C, or the surface temperature of the bottom inner surface of the cooking utensil C. It is configured to include a control unit 18 that controls the heating unit 11 based on the temperature detected by the temperature detection unit 12 so that the cooking temperature is set in the cooking process.
- the cooking apparatus 10 of the present embodiment controls the temperature of the object to be heated in the cooking utensil C with high accuracy, instead of cooking by thermal power as in the conventional apparatus, when the cooking execution information is executed and cooking is performed. It is possible to cook. Therefore, the user can easily cook dishes according to the cooking execution information, for example, cooking recipes provided by professional cooks, without the user having to adjust and control the heating power for the fine temperature control that is important in cooking. Can be reproduced in.
- the temperature detecting unit 12 is heated by the main body temperature detecting unit 12a that detects the temperature of the bottom outer surface of the cooking utensil C that is the temperature detection target and the cooking utensil C that is the temperature detection target. It is configured to include at least one of the external temperature detection units 12b that directly detects the temperature of an object.
- the temperature of the object to be heated in the cooking utensil C is detected by using the external temperature detecting unit 12b, and in the cooking process requiring a lid, it is based on the temperature detected by the main body temperature detecting unit 12a. It is possible to acquire the temperature of the object to be heated in the cooking utensil C and control the temperature of the object to be heated in the cooking utensil C with high accuracy.
- the control unit 18 sets the temperature of the object to be heated in the cooking utensil C set as the temperature control target or the surface temperature of the bottom inner surface of the cooking utensil C to be the set cooking temperature.
- the cooking execution unit 20 that executes the cooking process according to the preset cooking procedure while controlling the heating unit 11 and the cooking utensil C with the object to be heated housed in the cooking utensil C are heated.
- Temporal temperature showing the dynamic relationship of the temperature difference for each elapsed time between the temperature of the bottom outer surface of the cooking utensil C detected by the main body temperature detection unit 12a and the temperature of the object to be heated detected by the external temperature detection unit 12b.
- a cooking utensil profile for predicting the temperature of the object to be heated by correcting the temperature of the bottom outer surface of the cooking utensil C detected by the main body temperature detecting unit 12a including the difference information is created according to the specifications of the cooking utensil C.
- the cooking execution unit 20 corrects the temperature of the bottom outer surface of the cooking utensil C detected by the main body temperature detecting unit 12a by using the cooking utensil profile of the cooking utensil C in use.
- the temperature of the temperature control target is predicted, and the heating unit 11 is controlled so that the predicted temperature (predicted temperature of the temperature control target) matches the cooking temperature.
- the control unit 18 can change the temperature of the temperature control target (temperature target) from the temperature of the bottom outer surface of the cookware C detected by the main body temperature detection unit 12a (the temperature of the object to be heated or the surface of the bottom inner surface of the cookware C).
- the temperature inside the cooking utensil C can be predicted by correcting the temperature detected by the main body temperature detecting unit 12a by using the cooking utensil profile corresponding to the cooking utensil C used.
- the temperature of the temperature target can be controlled with high accuracy.
- the cooking apparatus 10 includes an outside temperature detecting unit 13a for detecting the outside air temperature of the kitchen and a pressure detecting unit 13b for detecting the pressure in the kitchen, and acquires the outside air temperature and the pressure as environmental information of the kitchen.
- An environmental information acquisition unit 13 is provided, and the control unit 18 is configured to control the output of the heating unit 11 in the cooking process in consideration of the acquired environmental information when executing the cooking execution information.
- the output of the heating unit 11 can be finely adjusted according to the environment of the kitchen, so that the cooking utensil C is heated.
- the heating output of the object and the heating unit 11 can be controlled with high accuracy.
- the cooking system 1 is a system in which the cooking device 10 and the mobile terminal 100 registered as an owner of the cooking device 10 are connected so as to be able to communicate in both directions, and the mobile terminal 100 is configured.
- the cooking device 10 includes a terminal control unit 103 that outputs an initialization execution instruction for executing the initialization process of the cooking device 10, and the cooking device 10 is initially set by the control unit 18 only when the initialization execution instruction from the mobile terminal 100 is received. It is configured to perform the conversion process.
- the cooking device 10 receives only the initialization execution instruction from the mobile terminal 100 registered as the owner and executes the initialization process, so that it is possible to prevent an unintended initialization process from being performed by another person.
- the cooking system 1 corresponds to an example of the "cooking system” described in the claims.
- the cooking device 10 corresponds to an example of the “cooking device” described in the claims.
- the heating unit 11 corresponds to an example of the “heating unit” described in the claims.
- the temperature detection unit 12 corresponds to an example of the “temperature detection unit” described in the claims.
- the main body temperature detection unit 12a corresponds to an example of the “main body temperature detection unit” described in the claims.
- the external temperature detection unit 12b corresponds to an example of the "external temperature detection unit” described in the claims.
- the environmental information acquisition unit 13 corresponds to an example of the "environmental information acquisition unit” described in the claims.
- the outside air temperature detection unit 13a corresponds to an example of the “outside air temperature detection unit” described in the claims.
- the atmospheric pressure detection unit 13b corresponds to an example of the "atmospheric pressure detection unit” described in the claims.
- the control unit 18 corresponds to an example of the “control unit” described in the claims.
- the cooking execution unit 20 corresponds to an example of the “cooking execution unit” described in the claims.
- the profile creation unit 24 corresponds to an example of the “profile creation unit” described in the claims.
- the mobile terminal 100 corresponds to an example of the "mobile terminal” described in the claims.
- the terminal control unit 103 corresponds to an example of the "terminal control unit” described in the claims.
- Cooking utensil C corresponds to an example of the "cooking utensil” described in the claims.
- Cooking system 10 Cooking equipment (10a main body, 10b top plate) 11 Heating unit 12 Temperature detection unit (12a main body temperature detection unit, 12b external temperature detection unit) 13 Environmental information acquisition unit (13a outside air temperature detection unit, 13b atmospheric pressure detection unit) 14 Weight detection unit 15 Operation display unit (15a display area, 15b operation area, 15c operation button) 16 Communication unit 17 Storage unit 18 Control unit 19 Input reception unit 20 Cooking execution unit 21 Timing unit 22 Heating control unit 23 Cooking execution information creation unit 24 Profile creation unit 25 Preset management unit 26 Communication setting unit 27 Device information setting unit 28 Display control Unit 100 Mobile terminal 101 Terminal communication unit 102 Terminal storage unit 103 Terminal control unit (103a terminal side cooking execution unit, 103b terminal side total time unit, 103c terminal side cooking execution information creation unit, 103d terminal side profile creation unit, 103e terminal side preset Management unit, 103f terminal side device information setting unit) 104 Terminal display unit 105 Terminal operation unit C Cooking utensils
Landscapes
- Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- Electromagnetism (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Food Science & Technology (AREA)
- Cookers (AREA)
- Induction Heating Cooking Devices (AREA)
- Electric Stoves And Ranges (AREA)
Abstract
Description
まず、本実施形態に係る調理システム1の構成について説明する。図1は、本実施形態に係る調理システム1で使用される調理装置10を模式的に示す概略斜視図であり、図2は、調理装置10を平面視した状態を模式的に示す概略構成図である。
「調理前の表示内容」の一例としては、調理実行情報で設定された温度ターゲットの温度、調理を行う際に選択される調理モード・調理実行情報の候補、調理実行情報で設定された調理時間、調理モード・調理実行情報の選択及び決定を行う操作アシストに関する表示などが挙げられる。ここで、「温度ターゲット」とは、調理実行情報を実行する際の温度制御対象を指す。本実施形態において、温度ターゲットは、被加熱物の温度となる「水温」又は「油温」、「調理器具Cの内面の表面温度」である。つまり、調理実行情報の温度ターゲットが「水温」に設定された場合、調理中は、「水温」が調理工程で設定された調理温度となるように加熱部11が制御される。
「調理中の表示内容」の一例としては、調理中の温度ターゲットの温度、選択された調理実行情報、調理実行情報において実行中の調理工程の内容(動作パターン、調理温度、調理時間など)、調理中の一時停止の操作方法を示す操作アシスト表示などが挙げられる。
「選択系の表示内容」の一例としては、設定された温度ターゲットのリアルタイム温度、火力のインジケータ、設定温度の選択・決定などの操作アシスト表示、候補となるパラメータの表示などが挙げられる。
「設定系の表示内容」の一例としては、調理実行情報のプリセット管理に関する表示、調理器具プロファイルの設定に関する表示、調理装置10と携帯端末100との通信を確立(セッション)させるための通信設定に関する表示、機器情報(機器名、接続可能なユーザ名など)に関する表示、時刻設定に関する表示などが挙げられる。
レシピモードは、プロの料理人、料理研究家などが公開する調理レシピ、研究・教育機関が公開する調理レシピなど、予め調理手順に沿って調理工程が設定されたレシピ情報に基づいて、調理装置10の温度制御及びを調理時間の制御を行うモードである。レシピモードで調理を行う場合、ユーザは、調理モードとしてレシピモードを選択すると共に、所望のレシピ情報を選択する。
マルチステップモードは、複数の調理工程を組み合わせたマルチステップ実行情報に沿って調理装置10の温度制御及びを調理時間の制御を行うモードである。マルチステップモードで調理を行う場合、ユーザは、調理モードとしてマルチステップモードを選択すると共に、所望のマルチステップ実行情報を選択し所定のパラメータを設定する。調理実行部20は、調理モードとしてマルチステップモードが選択されると、そのマルチステップモードと共に設定されたマルチステップ実行情報に従って調理工程が順次実行されるように、計時部21と加熱制御部22を制御する。
シングルステップモードは、調理工程が1パターンのシングルステップ実行情報に沿って調理装置10の温度制御及びを調理時間の制御を行うモードである。シングルステップモードで調理を行う場合、ユーザは、調理モードとしてシングルステップモードを選択すると共に、所望のシングルステップ実行情報を選択し所定のパラメータを設定する。調理実行部20は、調理モードとしてシングルステップモードが選択されると、そのシングルステップモードと共に選択されたシングルステップ実行情報に従って調理工程が実行されるように、計時部21と加熱制御部22を制御する。
レガシーモードは、一般的な調理装置と同様の調理方法、すなわち操作表示部15の操作ボタン15cを操作して加熱部11の火力を調整して調理を行うモードである。調理実行部20は、調理モードとしてレガシーモードが選択されると、操作表示部15からの操作指示に従って加熱制御部22を制御する。
マルチステップ実行情報を作成する場合、ユーザは、所望するマルチステップ実行情報となるように、パラメータとして、「動作パターン」、「使用する温度検出部12の種別」、「温度ターゲットの種別」、調理工程毎の「調理温度」及び「調理時間」、「トリガー設定」、「待機処理及び待機処理の時間」、「蓋の有無」並びに「ループステップ」などを適宜設定する。
「使用する温度検出部12の種別」とは、調理中に使用する温度検出部12として「本体温度検出部12a」又は「外部温度検出部12b」が設定される。
「温度ターゲットの種別」とは、温度ターゲットとして「水温」、「油温」、「調理器具Cにおける底部内面の表面温度」の何れかが設定される。
「調理温度」とは、設定された動作パターンにおいて調理工程毎の温度ターゲットの制御温度が設定される。
「調理時間」とは、設定された動作パターンにおいて調理工程毎の温度ターゲットが所定の調理温度に達したときの継続時間が設定される。
「トリガー設定」とは、例えば次の調理工程に移行(スキップ)するためのトリガーとして「時間」又は「所定のボタン操作」が設定される。
「待機処理及び待機処理の時間」とは、実行される調理工程の間に所定の処理(食材の追加、食材の濾し作業など)を行うために調理工程を一時的に待機させる処理と、その待機処理の時間が設定される。
「蓋の有無」とは、動作パターンとして「加熱(低温)」が選択され、使用する温度検出部として「本体温度検出部12a」が選択され、温度ターゲットとして「水温」又は「油温」が選択されたときに設定される。つまり、蓋の有無は、調理工程として蓋が必要な調理を行う場合に設定される。
「ループステップ」とは、動作パターンとして「ループ」が選択されたときに繰り返して行われる調理工程に対して設定される。
シングルステップ実行情報を作成する場合、ユーザは、所望するシングルステップ実行情報となるように、パラメータとして、「動作パターン」、「使用する温度検出部12の種別」、「温度ターゲットの種別」、「調理温度」、「調理時間」、「トリガー設定」及び「蓋の有無」を適宜設定する。
次に、図6~図8を参照しながら上述した調理システム1の処理動作について説明する。なお、以下に説明する各動作については、例示的な順序でステップの要素を提示しており、提示した特定の順序に限定されない。よって、図6~図8に示す各フローチャートについて、処理結果に矛盾が生じない限り、順序を入れ替えることが可能である。また、以下の各処理は、主に調理装置10を操作したときの動作例である。
図6は、本実施形態に係る調理システム1の基本動作の概要を示すフローチャートである。
図7は、調理実行処理のフローチャートである。図7に示すように、調理実行処理が開始されると、制御部18は、実行される調理実行情報の調理工程を確認する調理工程確認処理を行う(S601)。調理工程確認処理において、制御部18は、実行される調理実行情報で設定された調理工程の工程数、調理工程の順序などを確認する。次に、制御部18は、実行される調理工程のパラメータを確認するパラメータ確認処理を行う(S602)。パラメータ確認処理では、実行される調理工程で設定されたパラメータである、「動作パターン」、「温度ターゲット」、「調理温度」、「調理時間」、「トリガー」、「待機処理の有無及び待機時間」、「蓋の有無」などを確認する。
一方、制御部18は、温度ターゲットの温度が調理温度に達していないと判断したときは(S608-No)、実行中の加熱処理を継続させる。S608及びS609において、制御部18は、本体温度検出部12aと外部温度検出部12bの少なくとも一方の温度値を逐次監視しながら温度ターゲットの温度制御を行う。
一方、制御部18は、実行中の調理工程が、設定された調理時間に達していないと判断したときは(S610-No)、保温処理を継続させる。
一方、制御部18は、調理器具C内の水が沸騰していないと判断したときは(S625-No)、実行中の加熱処理を継続させる。S625において、制御部18は、沸騰したか否かの判断を、本体温度検出部12aと外部温度検出部12bの少なくとも一方の温度値を逐次監視して行う。
一方、追加加熱が設定されていないと判断したときは(S633-No)、待機状態を解除するためのトリガー入力の有無を判断する(S636)。
一方、制御部18は、温度ターゲットが目標温度に達していないと判断したときは(S635-No)、実行中の加熱処理を継続させる。
一方、制御部18は、設定されたトリガー入力が無いと判断したときは(S636-No)、再度S633に戻る。S636において、制御部18は、トリガー入力として、設定された待機時間が経過したことを示す計時終了信号の入力又は所定の操作ボタン(例えば、スキップボタン)の操作信号の入力の有無を判断する。
図8は、セッティングモード実行処理のフローチャートである。なお、図8に示す処理フローでは、セッティングモード実行処理として、「プロファイル作成処理」と「通信設定処理」について記載しているが、この他、「プロファイル管理処理」、「機器情報設定処理」が含まれてよい。
一方、制御部18は、調理器具C内の被加熱物の温度が常温ではないと判断したときは(S705-No)、ユーザに警告通知を出力し(S707)、再度S705に戻る。
一方、制御部18は、停止の指示が入力されていないと判断したときは(S708-No)、設定された一連のキャリブレーション処理が終了したか否かの判断を行う(S710)。
一方、制御部18は、設定されたキャリブレーション処理が終了していないと判断したときは(S711-No)、実行中のキャリブレーション処理を継続させる。
一方、制御部18は、調理装置10と接続先との間の通信が確立していないと判断したときは(S723-No)、接続設定の再確認を促す通知を出力して(S725)、再度S722に戻る。
以上のように、本実施形態に係る調理システム1において、調理装置10は、水、油、食材などの被加熱物が収容される調理器具Cを加熱する加熱部11と、被加熱物の温度と、調理器具Cの底部外面の温度の少なくとも一方を検出する温度検出部12と、調理器具C内の被加熱物の温度又は調理器具Cの底部内面の表面温度が、調理実行情報に含まれる調理工程で設定された調理温度となるように、温度検出部12で検出された温度に基づいて加熱部11を制御する制御部18と、を備える構成となっている。
上述の実施形態において、調理システム1は、特許請求の範囲に記載された「調理システム」の一例に該当する。調理装置10は、特許請求の範囲に記載された「調理装置」の一例に該当する。加熱部11は、特許請求の範囲に記載された「加熱部」の一例に該当する。温度検出部12は、特許請求の範囲に記載された「温度検出部」の一例に該当する。本体温度検出部12aは、特許請求の範囲に記載された「本体温度検出部」の一例に該当する。外部温度検出部12bは、特許請求の範囲に記載された「外部温度検出部」の一例に該当する。環境情報取得部13は、特許請求の範囲に記載された「環境情報取得部」の一例に該当する。外気温検出部13aは、特許請求の範囲に記載された「外気温検出部」の一例に該当する。気圧検出部13bは、特許請求の範囲に記載された「気圧検出部」の一例に該当する。制御部18は、特許請求の範囲に記載された「制御部」の一例に該当する。調理実行部20は、特許請求の範囲に記載された「調理実行部」の一例に該当する。プロファイル作成部24は、特許請求の範囲に記載された「プロファイル作成部」の一例に該当する。携帯端末100は、特許請求の範囲に記載された「携帯端末」の一例に該当する。端末制御部103は、特許請求の範囲に記載された「端末制御部」の一例に該当する。調理器具Cは、特許請求の範囲に記載された「調理器具」の一例に該当する。
10 調理装置(10a 本体、10b 天板)
11 加熱部
12 温度検出部(12a 本体温度検出部、12b 外部温度検出部)
13 環境情報取得部(13a 外気温検出部、13b 気圧検出部)
14 重量検出部
15 操作表示部(15a 表示領域、15b 操作領域、 15c 操作ボタン)
16 通信部
17 記憶部
18 制御部
19 入力受付部
20 調理実行部
21 計時部
22 加熱制御部
23 調理実行情報作成部
24 プロファイル作成部
25 プリセット管理部
26 通信設定部
27 機器情報設定部
28 表示制御部
100 携帯端末
101 端末通信部
102 端末記憶部
103 端末制御部(103a 端末側調理実行部、103b 端末側計時部、103c 端末側調理実行情報作成部、103d 端末側プロファイル作成部、103e 端末側プリセット管理部、103f 端末側機器情報設定部)
104 端末表示部
105 端末操作部
C 調理器具
Claims (5)
- 被加熱物が収容される調理器具を加熱する加熱部と、
前記被加熱物の温度と、前記調理器具の底部外面の温度の少なくとも一方を検出する温度検出部と、
前記調理器具内の前記被加熱物又は前記調理器具の底部内面の表面温度が、調理実行情報に含まれる調理工程で設定された調理温度となるように、前記温度検出部で検出された前記温度に基づいて前記加熱部を制御する制御部と、
を備える、
調理装置。 - 前記温度検出部は、温度検出対象となる前記調理器具の前記底部外面の前記温度を検出する本体温度検出部と、温度検出対象となる前記調理器具に収容される前記被加熱物の前記温度を直接検出する外部温度検出部の少なくとも一方を含む、
請求項1に記載の調理装置。 - 前記制御部は、
温度制御対象として設定された前記調理器具内の前記被加熱物の前記温度又は前記調理器具の底部内面の表面温度が前記調理温度となるように、前記加熱部を制御しながら予め設定された調理手順に沿って調理工程を実行する調理実行部と、
前記調理器具内に前記被加熱物を収容した状態で前記調理器具を加熱したときの、前記本体温度検出部で検出された前記調理器具の前記底部外面の前記温度と前記外部温度検出部で検出された前記被加熱物の前記温度との経過時間毎の温度差の動的な関係を示す経時的温度差情報を含み、前記本体温度検出部で検出された前記調理器具の前記底部外面の前記温度を補正して前記被加熱物の前記温度を予測するための調理器具プロファイルを、前記調理器具の仕様に応じて作成するプロファイル作成部と、を備え、
前記調理実行部は、使用中の前記調理器具の前記調理器具プロファイルを用いて、前記本体温度検出部で検出された前記底部外面の前記温度を補正して前記温度制御対象の前記温度を予測し、この予測した温度が、前記調理温度と一致するように、前記加熱部を制御する、
請求項2に記載の調理装置。 - 調理場の外気温度を検出する外気温検出部と、前記調理場の気圧を検出する気圧検出部とを含み、前記外気温度と前記気圧を前記調理場の環境情報として取得する環境情報取得部を備え、
前記制御部は、前記調理実行情報を実行する際に、取得された前記環境情報を加味して前記調理工程での前記加熱部の出力を制御する、
請求項1~3の何れか1項に記載の調理装置。 - 請求項1~4の何れか1項に記載の調理装置と、当該調理装置に所有者登録された携帯端末との間が、双方向に通信可能に接続されて構成される調理システムであって、
前記携帯端末は、前記調理装置の初期化処理を実行させる初期化実行指示を出力する端末制御部を備え、
前記調理装置は、前記携帯端末からの初期化実行指示を受け付けたときのみ前記制御部で初期化処理を実行する、
調理システム。
Priority Applications (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201980095286.7A CN113678571B (zh) | 2019-04-26 | 2019-07-30 | 烹饪装置及烹饪系统 |
| EP19926102.5A EP3962238B1 (en) | 2019-04-26 | 2019-07-30 | Cooking device and cooking system |
| US17/606,007 US12389498B2 (en) | 2019-04-26 | 2019-07-30 | Cooking device and cooking system |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2019086496A JP6961645B2 (ja) | 2019-04-26 | 2019-04-26 | 調理装置及び調理システム |
| JP2019-086496 | 2019-04-26 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2020217555A1 true WO2020217555A1 (ja) | 2020-10-29 |
Family
ID=72942255
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/JP2019/029902 Ceased WO2020217555A1 (ja) | 2019-04-26 | 2019-07-30 | 調理装置及び調理システム |
Country Status (5)
| Country | Link |
|---|---|
| US (1) | US12389498B2 (ja) |
| EP (1) | EP3962238B1 (ja) |
| JP (1) | JP6961645B2 (ja) |
| CN (1) | CN113678571B (ja) |
| WO (1) | WO2020217555A1 (ja) |
Families Citing this family (14)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| EP3410016A1 (en) * | 2017-06-02 | 2018-12-05 | Electrolux Appliances Aktiebolag | User interface for a hob |
| JP2021064513A (ja) * | 2019-10-15 | 2021-04-22 | タニカ電器販売株式会社 | 電磁調理器 |
| DE102020204252A1 (de) * | 2020-04-01 | 2021-10-07 | E.G.O. Elektro-Gerätebau GmbH | Verfahren zum Beheizen eines Kochgefäßes auf einem Kochfeld und Kochfeld |
| US11727682B2 (en) * | 2020-11-16 | 2023-08-15 | Haier Us Appliance Solutions, Inc. | Lid detection method for an over-the-range appliance |
| US20220151436A1 (en) * | 2020-11-16 | 2022-05-19 | Haier Us Appliance Solutions, Inc. | Cooking assemblies and methods of operation based on a detected cooking oil |
| CN114518774B (zh) * | 2020-11-19 | 2023-11-03 | 云米互联科技(广东)有限公司 | 烹饪温度控制方法、烹饪设备控制装置、烹饪设备及介质 |
| JP7591441B2 (ja) * | 2021-03-16 | 2024-11-28 | リンナイ株式会社 | 加熱調理システム |
| JP7411604B2 (ja) * | 2021-05-26 | 2024-01-11 | 日立グローバルライフソリューションズ株式会社 | 加熱調理器及び加熱調理方法 |
| EP4243569B1 (en) * | 2022-03-07 | 2024-08-07 | LG Electronics Inc. | Induction heating apparatus and method for controlling induction heating apparatus |
| CN120018796A (zh) * | 2022-10-21 | 2025-05-16 | 松下知识产权经营株式会社 | 控制方法、信息提供方法、控制系统、信息提供系统以及程序 |
| JPWO2024084964A1 (ja) * | 2022-10-21 | 2024-04-25 | ||
| WO2025033687A1 (ko) * | 2023-08-07 | 2025-02-13 | 삼성전자주식회사 | 센서 장치 및 이를 포함하는 조리기기 |
| EP4591764A1 (en) | 2023-12-06 | 2025-07-30 | Bellnix Co., Ltd. | Method and device for estimating temperature of contents in electric pot |
| CN119697821A (zh) * | 2025-02-25 | 2025-03-25 | 中山市合硕高品电器有限公司 | 一种基于智能电流传感器的功率控制的方法及装置 |
Citations (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPH06317328A (ja) * | 1993-12-17 | 1994-11-15 | Matsushita Electric Ind Co Ltd | 自動調理器 |
| JP2005011670A (ja) | 2003-06-19 | 2005-01-13 | Rinnai Corp | 誘導加熱調理器 |
| JP2011071040A (ja) * | 2009-09-28 | 2011-04-07 | Mitsubishi Electric Corp | 誘導加熱調理器 |
| JP2011253781A (ja) * | 2010-06-04 | 2011-12-15 | Mitsubishi Electric Corp | 加熱調理器 |
| CN205883618U (zh) * | 2016-07-21 | 2017-01-11 | 佛山市顺德区美的电热电器制造有限公司 | 一种电磁锅灶 |
| JP2017020703A (ja) * | 2015-07-09 | 2017-01-26 | 三菱電機株式会社 | 加熱調理器 |
Family Cites Families (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPH06241463A (ja) * | 1993-02-22 | 1994-08-30 | Matsushita Electric Ind Co Ltd | 調理器具 |
| AU2011279548B2 (en) * | 2010-07-15 | 2015-11-26 | Breville Pty Limited | Multi cooker |
| DE102013104107A1 (de) * | 2013-04-23 | 2014-10-23 | Cuciniale Gmbh | Verfahren zur Regelung eines Garprozesses |
| WO2016070220A1 (en) * | 2014-11-07 | 2016-05-12 | Breville Pty Limited | Cooktop |
| WO2017033406A1 (ja) * | 2015-08-27 | 2017-03-02 | パナソニックIpマネジメント株式会社 | 加熱調理器 |
| US10935252B2 (en) * | 2015-09-04 | 2021-03-02 | Electrolux Home Products, Inc. | Methods and apparatus for controlling a cooking appliance |
| WO2019059209A1 (ja) * | 2017-09-25 | 2019-03-28 | パナソニックIpマネジメント株式会社 | 加熱調理器 |
-
2019
- 2019-04-26 JP JP2019086496A patent/JP6961645B2/ja active Active
- 2019-07-30 EP EP19926102.5A patent/EP3962238B1/en active Active
- 2019-07-30 WO PCT/JP2019/029902 patent/WO2020217555A1/ja not_active Ceased
- 2019-07-30 US US17/606,007 patent/US12389498B2/en active Active
- 2019-07-30 CN CN201980095286.7A patent/CN113678571B/zh active Active
Patent Citations (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPH06317328A (ja) * | 1993-12-17 | 1994-11-15 | Matsushita Electric Ind Co Ltd | 自動調理器 |
| JP2005011670A (ja) | 2003-06-19 | 2005-01-13 | Rinnai Corp | 誘導加熱調理器 |
| JP2011071040A (ja) * | 2009-09-28 | 2011-04-07 | Mitsubishi Electric Corp | 誘導加熱調理器 |
| JP2011253781A (ja) * | 2010-06-04 | 2011-12-15 | Mitsubishi Electric Corp | 加熱調理器 |
| JP2017020703A (ja) * | 2015-07-09 | 2017-01-26 | 三菱電機株式会社 | 加熱調理器 |
| CN205883618U (zh) * | 2016-07-21 | 2017-01-11 | 佛山市顺德区美的电热电器制造有限公司 | 一种电磁锅灶 |
Non-Patent Citations (1)
| Title |
|---|
| See also references of EP3962238A4 |
Also Published As
| Publication number | Publication date |
|---|---|
| JP6961645B2 (ja) | 2021-11-05 |
| US12389498B2 (en) | 2025-08-12 |
| EP3962238B1 (en) | 2026-02-11 |
| CN113678571A (zh) | 2021-11-19 |
| EP3962238A1 (en) | 2022-03-02 |
| CN113678571B (zh) | 2024-05-07 |
| US20220210874A1 (en) | 2022-06-30 |
| EP3962238A4 (en) | 2023-01-25 |
| JP2020184409A (ja) | 2020-11-12 |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| JP6961645B2 (ja) | 調理装置及び調理システム | |
| AU2017220032B2 (en) | User interface for a cooking system | |
| US20150334785A1 (en) | Menu-based cooking appliance | |
| WO2021218083A1 (zh) | 烹饪电器的控制方法、烹饪电器及可读存储介质 | |
| US20180310759A1 (en) | Control system for cooking | |
| KR20160012849A (ko) | 지능형 전기레인지 | |
| CA3015304A1 (en) | Wirelessly controlled cooking system | |
| JP7094417B2 (ja) | 加熱調理器 | |
| US20200281391A1 (en) | Sous-vide oven mode with probe | |
| WO2019209371A1 (en) | Cooking system for tracking a cooking device | |
| CN101517320B (zh) | 烤炉控制系统及方法 | |
| AU2019358967B2 (en) | Cookware with electronic display | |
| JP6138200B2 (ja) | 加熱調理器 | |
| US12538996B2 (en) | Cooktop appliance automated rice cooking | |
| US12535838B2 (en) | Cooktop appliance with adaptive closed-loop controls | |
| JP6165202B2 (ja) | 加熱調理器 | |
| JP2012014839A (ja) | 加熱調理器 | |
| AU2023374914A1 (en) | Induction cookware for providing power instructions to an induction hob | |
| JP2024142423A (ja) | 加熱調理器 | |
| JP2025167544A (ja) | 加熱調理システム | |
| WO2020011136A1 (zh) | 基于对电磁脉冲的响应确定灶具器具上的炊具位置 | |
| CN114963248A (zh) | 加热设备及加热设备的控制方法 | |
| HK1261082A1 (en) | User interface for a cooking system |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| 121 | Ep: the epo has been informed by wipo that ep was designated in this application |
Ref document number: 19926102 Country of ref document: EP Kind code of ref document: A1 |
|
| NENP | Non-entry into the national phase |
Ref country code: DE |
|
| ENP | Entry into the national phase |
Ref document number: 2019926102 Country of ref document: EP Effective date: 20211126 |
|
| WWG | Wipo information: grant in national office |
Ref document number: 17606007 Country of ref document: US |
|
| WWG | Wipo information: grant in national office |
Ref document number: 2019926102 Country of ref document: EP |