WO2019188816A1 - 制御装置、情報処理装置及び蓄電池検索システム - Google Patents
制御装置、情報処理装置及び蓄電池検索システム Download PDFInfo
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- WO2019188816A1 WO2019188816A1 PCT/JP2019/012170 JP2019012170W WO2019188816A1 WO 2019188816 A1 WO2019188816 A1 WO 2019188816A1 JP 2019012170 W JP2019012170 W JP 2019012170W WO 2019188816 A1 WO2019188816 A1 WO 2019188816A1
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- Prior art keywords
- storage battery
- control device
- information
- control
- deterioration state
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M10/00—Secondary cells; Manufacture thereof
- H01M10/42—Methods or arrangements for servicing or maintenance of secondary cells or secondary half-cells
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- H02J7/84—
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06Q—INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
- G06Q10/00—Administration; Management
- G06Q10/08—Logistics, e.g. warehousing, loading or distribution; Inventory or stock management
- G06Q10/087—Inventory or stock management, e.g. order filling, procurement or balancing against orders
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06Q—INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
- G06Q30/00—Commerce
- G06Q30/06—Buying, selling or leasing transactions
- G06Q30/0601—Electronic shopping [e-shopping]
- G06Q30/0633—Managing shopping lists, e.g. compiling or processing purchase lists
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06Q—INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
- G06Q50/00—Information and communication technology [ICT] specially adapted for implementation of business processes of specific business sectors, e.g. utilities or tourism
- G06Q50/06—Energy or water supply
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M10/00—Secondary cells; Manufacture thereof
- H01M10/42—Methods or arrangements for servicing or maintenance of secondary cells or secondary half-cells
- H01M10/4285—Testing apparatus
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01R—MEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
- G01R31/00—Arrangements for testing electric properties; Arrangements for locating electric faults; Arrangements for electrical testing characterised by what is being tested not provided for elsewhere
- G01R31/36—Arrangements for testing, measuring or monitoring the electrical condition of accumulators or electric batteries, e.g. capacity or state of charge [SoC]
- G01R31/392—Determining battery ageing or deterioration, e.g. state of health
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M10/00—Secondary cells; Manufacture thereof
- H01M10/42—Methods or arrangements for servicing or maintenance of secondary cells or secondary half-cells
- H01M10/48—Accumulators combined with arrangements for measuring, testing or indicating the condition of cells, e.g. the level or density of the electrolyte
- H01M10/488—Cells or batteries combined with indicating means for external visualization of the condition, e.g. by change of colour or of light density
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M10/00—Secondary cells; Manufacture thereof
- H01M10/42—Methods or arrangements for servicing or maintenance of secondary cells or secondary half-cells
- H01M10/425—Structural combination with electronic components, e.g. electronic circuits integrated to the outside of the casing
- H01M2010/4278—Systems for data transfer from batteries, e.g. transfer of battery parameters to a controller, data transferred between battery controller and main controller
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E60/00—Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
- Y02E60/10—Energy storage using batteries
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02T—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO TRANSPORTATION
- Y02T90/00—Enabling technologies or technologies with a potential or indirect contribution to GHG emissions mitigation
- Y02T90/10—Technologies relating to charging of electric vehicles
- Y02T90/16—Information or communication technologies improving the operation of electric vehicles
- Y02T90/167—Systems integrating technologies related to power network operation and communication or information technologies for supporting the interoperability of electric or hybrid vehicles, i.e. smartgrids as interface for battery charging of electric vehicles [EV] or hybrid vehicles [HEV]
Definitions
- the present disclosure relates to a control device, an information processing device, and a storage battery search system.
- Patent Document 1 discloses a control device that controls charging / discharging of a plurality of storage batteries using deterioration information of the storage batteries.
- a control device capable of controlling a storage battery includes a control unit and a communication unit.
- the said control part determines the conditions of the said deterioration state of the said storage battery based on the deterioration state of the said storage battery which is a control object.
- the communication unit transmits a search request for a storage battery to be newly controlled, including the condition of the deterioration state of the storage battery, to an information processing device, and includes a storage battery information searched based on the search request A result is received from the information processing apparatus.
- the information processing apparatus is communicably connected to a control apparatus that can control the storage battery.
- the information processing apparatus receives a registration request for the deterioration state of the storage battery, which is a control target of the first control apparatus, from the first control apparatus, the information processing apparatus stores the deterioration state in a database including information on the storage battery.
- the information processing apparatus receives a search request for a storage battery to be newly controlled including a condition for the deterioration state of the storage battery from the second control apparatus, the information processing apparatus searches the database based on the search request.
- the information processing device transmits a search result including the searched information of the storage battery to the second control device.
- a storage battery search system includes a control device that can control a storage battery, and an information processing device that is communicably connected to the control device.
- the control device determines a condition of the deterioration state of the storage battery based on a deterioration state of the storage battery that is a control target, and searches for a storage battery to be newly controlled including the condition of the deterioration state of the storage battery
- a request is transmitted to the information processing apparatus.
- the information processing device receives the search request from the control device, the information processing device searches a database including storage battery information based on the search request, and the search device includes the search result including the searched storage battery information. Send to.
- a control device that can control a plurality of storage batteries
- a configuration that can adjust the overall storage capacity, etc. by adding, removing, or replacing storage batteries according to the use of the customer is generally used. It has been adopted.
- the performance of the new storage battery such as the storage capacity, is sufficient due to the difference in degradation state or performance from other installed storage batteries. May not be demonstrated. Therefore, a control device and an information processing device that improve the usefulness of a technology for controlling a storage battery by providing information on a storage battery to be newly controlled based on information on another storage battery that is already installed is required. Therefore, the present disclosure provides a control device, an information processing device, and a storage battery search system that improve the usefulness of a technique for controlling a storage battery.
- the storage battery search system 1 includes a server device 10 and three control devices 20A, 20B, and 20C.
- control devices 20A, 20B, and 20C are not particularly distinguished, they are simply collectively referred to as the control device 20.
- FIG. 1 one server device 10 and three control devices 20 are illustrated for simplicity, but the number of server devices 10 and control devices 20 may be arbitrarily determined.
- the server device 10 is an information processing device such as a server used by a storage battery search service provider, for example.
- the control device 20 includes, for example, an energy management system (EMS) such as HEMS (Home Energy Management System), BEMS (Building Energy Management System), FEMS (Factory Energy Management System), and CEMS (Community Energy Management System), and a battery management system.
- EMS energy management system
- It is an information processing apparatus capable of controlling a storage battery, including (Battery Management System: BMS), a power conditioner, a mobile phone, a smartphone, a tablet terminal, a PC (Personal Computer), a remote controller, a smart speaker, and the like.
- the control target of the control device 20 is not limited to a storage battery.
- the control target of the control device 20 may include, for example, a power load device, a distributed power source, a fuel cell, a heat pump type hot water heater, a smart meter, or an electric vehicle.
- the control device 20 is also called a power management device.
- control device 20A is controllably connected to storage batteries 30A and 30B.
- Control device 20B is controllably connected to storage batteries 30C and 30D.
- the storage batteries 30 ⁇ / b> A, 30 ⁇ / b> B, 30 ⁇ / b> C, and 30 ⁇ / b> D are simply collectively referred to as the storage battery 30 unless particularly distinguished.
- Control device 20 is used by a user of storage battery 30.
- the server device 10 and the control device 20 are communicably connected via a network 40.
- Control device 20 is connected to storage battery 30 in a controllable manner.
- the control device 20 calculates the deterioration state of the connected storage battery 30.
- the control device 20 determines the condition of the deterioration state of the storage battery based on the deterioration state of the storage battery 30 to be controlled.
- the control device 20 transmits to the server device 10 a search request for a storage battery to be newly controlled, including the condition of the deterioration state of the storage battery.
- the server device 10 includes a database 14 that includes storage battery information.
- the server device 10 When the server device 10 receives the above-described search request from the control device 20, the server device 10 searches the database based on the search request. The server device 10 transmits the search result including the searched storage battery information to the control device 20. The control device 20 displays the received search result. The user proceeds with selection and purchase of a newly installed storage battery based on the displayed search results.
- the server device 10 and the control device 20 cooperate to execute processing related to the storage battery search of the present disclosure.
- the server device 10 and the control device 20 may share and execute a series of processes. Or each of the server apparatus 10 and the control apparatus 20 may perform the same process.
- the server apparatus 10 and the control apparatus 20 may complete the process.
- the server device 10 and the control device 20 may complete the same processing with the processing result of the server device 10 as positive, for example. Or you may rewind a process before execution of the said process.
- the server device 10 includes a server control unit 11, a server communication unit 12, a server storage unit 13, and a database 14.
- the server control unit 11 includes one or more processors that provide control and processing capabilities for realizing each function of the server device 10 as will be described in detail later.
- the server control unit 11 may be configured by a processor such as a CPU (Central Processing Unit) that executes a program that defines a control procedure, or a dedicated processor specialized for processing each function.
- a processor such as a CPU (Central Processing Unit) that executes a program that defines a control procedure, or a dedicated processor specialized for processing each function.
- CPU Central Processing Unit
- the server communication unit 12 includes an interface that communicates with an external device wirelessly or by wire and transmits and receives information.
- the server communication unit 12 may include, for example, a wireless LAN (Local Area Network) communication module, a wired LAN communication module, or a CAN (Controller Area Network) communication module.
- the server communication unit 12 is communicably connected to the control device 20 via the network 40. Thereby, the server device 10 transmits and receives information to and from the control device 20.
- the server storage unit 13 includes, for example, a semiconductor memory, a magnetic memory, or an optical memory.
- the server storage unit 13 may function as, for example, a main storage device or an auxiliary storage device.
- the server storage unit 13 may be a cache memory of a processor included in the server control unit 11.
- the server storage unit 13 may be a volatile storage device or a non-volatile storage device.
- the server storage unit 13 stores information and programs used for control and processing for realizing each function of the server device 10. At least a part of the information and programs stored in the server storage unit 13 may be shared and synchronized with the control device 20.
- the database 14 stores storage battery information.
- the database 14 receives a search request from the server control unit 11, the database 14 performs a search based on the conditions included in the search request from the information stored in the database 14.
- the database 14 transmits the searched information to the server control unit 11 as a search result.
- the information about the storage battery stored in the database 14 may include information received from the control device 20.
- the storage battery information stored in the database 14 includes additional information acquired by the server control unit 11 from an external device such as a manufacturer's Web server via the Internet based on the information received from the control device 20. May be.
- an external device such as a manufacturer's Web server via the Internet based on the information received from the control device 20. May be.
- an example of information stored in the database 14 will be described.
- the storage battery information can be created for each storage battery to be searched.
- the storage battery to be searched in the present disclosure may be any storage battery used for charging and discharging power.
- a storage battery may be a storage battery used for arbitrary uses, such as a household storage battery, an electric vehicle, a hybrid vehicle, a portable apparatus, or a mobile battery, for example.
- the storage battery is described as being searched, stored, and managed in units provided or sold as a single storage battery by a storage battery manufacturer for these uses, but is not limited thereto.
- the storage battery may be searched, stored, and managed in cell units, which are the minimum units used for charging and discharging electric power, or in module units in which a plurality of cells are connected.
- the information on the storage battery may include arbitrary information unique to the storage battery used in the search.
- the storage battery information includes a storage battery ID (identification information: Identifier), a user ID, a storage battery manufacturer ID, a model, a serial number, an initial capacity, a deterioration state, a deterioration state acquisition date, a storage capacity, a sale possibility, and an amount.
- the storage battery ID is arbitrary information that can uniquely identify the storage battery information.
- the storage battery uniquely identified by the storage battery ID is also simply referred to as a storage battery.
- the user ID is information that can uniquely identify the user of the storage battery.
- a user uniquely identified by a user ID is also simply referred to as a user.
- the user ID may be managed in association with information related to the user such as the user's nomination, address, telephone number, e-mail address, or information on a credit card or bank account used for storage battery transactions. Further, the user ID may be managed in association with information that can uniquely identify the control device 20. Thereby, the server apparatus 10 can specify the control apparatus 20 which the user uses for control of a storage battery using user ID.
- the storage battery manufacturer ID is information that can uniquely identify the manufacturer that manufactured or sold the storage battery.
- the storage battery manufacturer uniquely identified by the storage battery manufacturer ID is also simply referred to as a storage battery manufacturer.
- the model is information for specifying the product specifications and battery characteristics of the storage battery given by the storage battery manufacturer.
- the production number is information that can uniquely identify the storage battery assigned by the storage battery manufacturer. These pieces of information can be used to narrow down the storage batteries in the search for the storage batteries, or to specify the storage batteries in the storage battery sales transaction performed after the search.
- the initial capacity is information indicating a capacity (kWh) at which the storage battery can be stored at the time of shipment.
- the initial capacity may be a capacity based on an actual measurement value by the control device 20, or may be a design capacity (DC: Design Capacity) published by a storage battery manufacturer or the like.
- DC Design Capacity
- the initial capacity is a design capacity.
- the initial capacity can be used for narrowing down the storage battery in matching the storage battery, together with information such as a deterioration state described later.
- the deterioration state is information indicating the degree of deterioration of the storage battery.
- the deterioration state is also referred to as SOH (State of Health).
- the SOH may be expressed by the following Equation 1 as a ratio (%) of the current full charge capacity (FCC) to the design capacity.
- SOH (%) FCC / DC ⁇ 100 (Formula 1)
- FCC current full charge capacity
- the FCC may be calculated by any method.
- the FCC may be a discharge power amount measured when the storage battery is discharged from a fully charged state to a fully discharged state. Further, the FCC may be estimated based on the current and time required for charging / discharging.
- the deterioration state acquisition date is information indicating a date when the SOH of the storage battery is calculated.
- the deterioration state acquisition date is also referred to as an SOH acquisition date.
- the server control unit 11 may estimate that the storage battery is further deteriorated than the deterioration state included in the storage battery information.
- the server control unit 11 may make an update request for SOH information to the user of the storage battery or the control device 20 used by the user.
- the server control unit 11 may exclude the storage battery from the search target when a certain period has elapsed from the SOH acquisition date.
- the storage capacity is information indicating a capacity that the storage battery can store at the present time.
- the storage capacity may be calculated as in the following Equation 2 using the above-described initial capacity and SOH.
- the storage capacity may be an FCC received from the control device 20.
- Storage capacity (kWh) initial capacity (kWh) ⁇ SOH (%) / 100 (Formula 2)
- “Sellability” is information indicating whether the storage battery can be sold.
- the information on whether or not to sell may be registered, for example, based on information on whether or not there is an intention to sell a storage battery that has not started a sales transaction to a user of the storage battery.
- the server control unit 11 may set “No” to whether or not to sell a storage battery in which a sales transaction is in progress or a storage battery in which a sales transaction has already been completed.
- the server control unit 11 may exclude the storage battery information from the search target when “No” is set in the sale permission / inhibition.
- the amount is information indicating the amount related to the storage battery transaction.
- the amount information may include, for example, the desired sale amount set by the user of the storage battery.
- the amount information may include the highest value of the desired purchase amount presented by a user who desires to purchase a storage battery.
- an actual sale amount may be set as the amount of the storage battery for which the sales transaction has been completed.
- the server control unit 11 may store the deterioration state in a database including information on the storage battery. Arbitrary information may be included in the registration request for the deterioration state of the storage battery 30.
- the registration request for the deterioration state of the storage battery 30 may include the SOH (%) described above, or information for calculating the SOH such as the FCC of the storage battery 30, the amount of discharge power, the current and time required for charging and discharging. May be included.
- the server control unit 11 may calculate the SOH of the storage battery 30 based on the information and store it in the database as a deteriorated state.
- the registration request for the deterioration state of the storage battery 30 may include information exemplified as the storage battery information described above.
- the storage battery ID may be included in the registration request for the deterioration state of the storage battery 30.
- Server control part 11 may judge whether information on storage battery 30 which is the object of a registration demand is memorized by database using storage battery ID contained in a registration demand. The server control unit 11 may newly create information on the storage battery 30 when the information on the storage battery 30 that is the target of the registration request is not stored in the database. Moreover, the server control part 11 may update the information of the said storage battery 30, when the information of the storage battery 30 which is the object of a registration request is already memorize
- the server control unit 11 informs the control device 20 that controls the storage battery 30 of the deterioration state of the storage battery 30.
- An update request may be sent.
- the server control unit 11 When the server control unit 11 receives a search request for a storage battery to be newly controlled including the condition of the storage battery deterioration state from the control device 20, the server control unit 11 searches the database 14 based on the search request.
- the server control unit 11 may search the database 14 by narrowing down the search target based on information included in the search request such as the condition of the deterioration state.
- the server control unit 11 transmits the search result including the searched storage battery information to the control device 20.
- the search request may include conditions other than the deterioration state of the storage battery.
- the search request may include a condition regarding information exemplified as the storage battery information described above in addition to the condition of the deterioration state of the storage battery.
- the server control unit 11 may search the database 14 based on a combination of conditions included in the search request.
- the server control unit 11 may search for a storage battery that satisfies the conditions included in the search request with one storage battery, or may search for a storage battery that satisfies the conditions included in the search request by a combination of a plurality of storage batteries.
- the search request may include a condition for the storage capacity of the storage battery.
- the server control unit 11 may search for a storage battery that satisfies the storage capacity of the search request with one storage battery, or search for a storage battery that satisfies the storage capacity of the search request by the sum of the storage capacities of the plurality of storage batteries. Also good. When there is no storage battery that satisfies the storage capacity specified by the user in one storage battery, or when a storage battery that satisfies the storage capacity specified by the user with one storage battery is expensive, the user can combine a plurality of storage batteries. You can consider purchasing through.
- the server apparatus 10 may be used for a storage battery transaction between users based on the above-described search results.
- the server control unit 11 receives a transaction request specifying the storage battery 30 included in the search result from the control device 20, the server control unit 11 transmits the transaction request to another control device 20 that controls the storage battery 30.
- the server control unit 11 may search the database 14 based on information such as a storage battery ID included in the transaction request.
- the server control unit 11 may specify the transmission target control device 20 using the user ID included in the searched storage battery information and transmit a transaction request.
- control device 20 (Configuration of control device) The configuration of the control device 20 will be specifically described. As illustrated in FIG. 1, the control device 20 includes a control unit 21, a communication unit 22, a storage unit 23, a notification unit 24, and an input unit 25.
- the control unit 21 includes one or more processors that provide control and processing capability for realizing each function of the control device 20, as will be described in detail later.
- the control unit 21 may be configured by a processor such as a CPU that executes a program that defines a control procedure, or a dedicated processor specialized for the processing of each function.
- the communication unit 22 includes an interface that communicates with an external device wirelessly or by wire and transmits and receives information.
- the communication unit 22 may include, for example, a wireless LAN communication module, a wired LAN communication module, or a CAN communication module.
- the communication unit 22 is communicably connected to the server device 10 via the network 40. Thereby, the control device 20 transmits and receives information to and from the server device 10.
- the communication part 22 is connected so that communication with the storage battery 30 is possible. Thereby, the control device 20 transmits and receives information to and from the storage battery 30.
- the storage unit 23 includes, for example, a semiconductor memory, a magnetic memory, or an optical memory.
- the storage unit 23 may function as, for example, a main storage device or an auxiliary storage device.
- the storage unit 23 may be a cache memory of a processor included in the control unit 21.
- the storage unit 23 may be a volatile storage device or a non-volatile storage device.
- the storage unit 23 stores information and programs used for control and processing for realizing each function of the control device 20. At least a part of the information and programs stored in the storage unit 23 may be shared and synchronized with the server device 10.
- storage part 23 memorize
- storage part 23 may memorize
- the notification unit 24 notifies information by image, sound, vibration, lighting of light, and the like.
- the notification unit 24 may include at least one of a display device, a speaker, a vibrator, and a light, for example.
- the display device can be, for example, a liquid crystal display or an organic EL display.
- the notification unit 24 may display the search result received from the server device 10 based on the control of the control unit 21.
- reporting part 24 is a speaker
- reporting part 24 may output the search result received from the server apparatus 10 as an audio
- the input unit 25 receives an input operation from the user.
- the input unit 25 may include, for example, an input device such as a touch panel, a keyboard, a mouse, a camera, or a microphone provided integrally with the display device of the notification unit 24.
- the input unit 25 transmits the user operation to the control unit 21 as electronic information.
- At least one of the notification unit 24 and the input unit 25 may be provided in, for example, a remote control, a tablet, or a personal computer that is physically separated from the control device 20.
- the control unit 21 controls the storage battery 30.
- the control unit 21 transmits and receives information for controlling the storage battery 30 to and from the storage battery 30 via the communication unit 22.
- the control of the storage battery 30 includes arbitrary processing related to the operation of the storage battery 30.
- the control of the storage battery 30 may include, for example, activation, stop, storage, discharge, communication, operation plan management, information provision, or the like of the storage battery 30.
- the control of the storage battery 30 is not limited to direct control, and may be indirect control via another control device such as BMS.
- the control device 20 may indirectly control the storage battery 30 by another control device by transmitting a control instruction for the storage battery 30 to the other control device.
- the control unit 21 stores information necessary for controlling the storage battery 30 in the storage unit 23.
- the control unit 21 calculates the deterioration state of the storage battery 30 that is the control target.
- the control unit 21 calculates the above-described SOH (%) as the deterioration state of the storage battery 30, for example.
- the control unit 21 may acquire information necessary for calculating SOH such as the current FCC of the storage battery 30, for example.
- the control unit 21 may calculate the deterioration state for each of the storage batteries 30A and 30B, or may calculate the deterioration state of the storage battery 30 as a whole. .
- the control unit 21 transmits a request for registering the deterioration state of the storage battery 30 to be controlled from the communication unit 22 to the server device 10.
- the registration request for the deterioration state of the storage battery 30 may include the SOH (%) described above, or information for calculating the SOH such as the FCC of the storage battery 30, the amount of discharge power, the current and time required for charging and discharging. May be included.
- the server apparatus 10 receives the registration request, the server apparatus 10 stores the deterioration state in the database.
- the control part 21 may transmit the registration request
- control part 21 may transmit a registration request
- FIG. For example, when the control device 20 detects a storage battery 30 that is newly controlled, the control device 20 sends a registration request for the deterioration state of the storage battery 30 together with information such as the storage battery manufacturer, model, and serial number of the storage battery 30 to the communication unit. 22 may be transmitted to the server device 10.
- the control device 20 sends a request for registration of the deterioration state of the storage battery 30 from the communication unit 22 together with information such as whether or not the storage battery 30 can be sold and the amount based on the user operation of the user who desires to sell the storage battery 30. You may transmit to the server apparatus 10. Further, for example, when the control unit 21 receives an update request for the deterioration state of the storage battery 30 from the server device 10 for a reason that a predetermined period has elapsed from the SOH acquisition date, the control unit 21 registers the current SOH and SOH acquisition date. The request may be transmitted to the server device 10.
- the control unit 21 determines the condition of the deterioration state of the storage battery based on the deterioration state of the storage battery 30 to be controlled.
- the control unit 21 may determine the condition of the deterioration state of the storage battery based on the deterioration state of an arbitrary storage battery among the storage batteries 30 to be controlled. For example, when the user newly adds a storage battery, the control unit 21 may determine the condition of the deterioration state of the storage battery based on the deterioration state of all the storage batteries 30.
- the control unit 21 may determine the condition of the deterioration state of the storage battery based on the deterioration state of the replacement storage battery.
- the condition of the deterioration state of the storage battery may include at least one numerical value or numerical range.
- the control unit 21 may set, for example, the average value, the minimum value, or the maximum value of the SOH of the storage batteries 30A and 30B included in the storage battery 30 to be controlled as the condition of the deterioration state of the storage battery.
- control unit 21 is a range from the minimum value to the maximum value of the SOH of the storage batteries 30A and 30B included in the storage battery 30 to be controlled, or a range of 10% above and below the average value of the SOH of the storage batteries 30A and 30B.
- a numerical range may be set as a condition for the deterioration state of the storage battery.
- the control unit 21 transmits a search request for a storage battery to be newly controlled including the condition of the deterioration state of the storage battery from the communication unit 22 to the server device 10.
- Information included in the search request is not limited to the condition of the deterioration state.
- the search request may include, for example, a condition for the storage capacity of the storage battery.
- the search request may include an arbitrary condition used for narrowing down the storage batteries to be newly controlled, such as the number of storage batteries, the storage battery manufacturer, the model, or the amount.
- the control unit 21 may include in the search request whether one storage battery desires to satisfy the above-described condition or whether the above-described condition may be satisfied by a combination of a plurality of storage batteries.
- the control unit 21 receives a search result including information on the storage battery searched based on the search request from the server device 10 via the communication unit 22.
- the control unit 21 notifies the information received from the server device 10 by the notification unit 24. More specifically, the control unit 21 notifies the search result received from the server device 10 by the notification unit 24.
- the user can proceed with the selection and purchase of a newly installed storage battery based on the notified search result.
- the notification unit 24 may be a display unit that displays information received from the server device 10 such as a display device. According to this configuration, the control unit 21 displays the information received from the server device 10 on the display unit.
- control device 20 may be used for dealing with a newly installed storage battery.
- the control device 20 may notify the user of the control device 20 of a transaction request for the storage battery 30 by another user.
- the control unit 21 receives from the server device 10 a transaction request specifying the storage battery 30 to be controlled via the communication unit 22.
- the control unit 21 notifies the received transaction request by the notification unit 24.
- the user can proceed with the transaction of the storage battery 30 based on the notified transaction request.
- the control device 20 may include a display device and a touch panel provided integrally with the display device as the notification unit 24 and the input unit 25.
- the registration process of the information regarding the storage battery 30 with respect to the server apparatus 10 from the control apparatus 20 is demonstrated.
- the user A whose user ID is A manages the storage batteries 30A and 30B using the control device 20A.
- the user A When the user A desires to sell the storage battery 30A or 30B, the user A starts using the storage battery search system. User A selects a storage battery icon from a management screen provided by control device 20A as shown in FIG. Then, the control device 20A displays a menu screen as shown in FIG. On the menu screen, a “sale” button, an “addition” button, and a “replacement” button for the storage battery are displayed. When the “sale” button on the menu screen is pressed by the user A, an information disclosure confirmation screen regarding the storage battery as shown in FIG. 5 is displayed.
- the control device 20A makes a registration request for the deterioration state of the storage batteries 30A and 30B based on the user operation. It transmits to the server apparatus 10.
- the deterioration state of the storage batteries 30A and 30B may be calculated after the “Yes” button is pressed, or a value calculated in advance may be used.
- FIG. 2 the information of the storage battery memorize
- the server apparatus 10 When the server apparatus 10 receives the registration request for the deterioration state of the storage batteries 30A and 30B to be controlled from the control apparatus 20A, the server apparatus 10 stores them in the database 14 as information of the storage battery IDs 0001 and 0002, respectively. Thereby, in storage battery search system 1, storage batteries 30A and 30B are made into search object. When the SOH included in the information on the storage batteries 30A and 30B is not updated for a predetermined period, the server device 10 may transmit a request for updating the deterioration state of the storage batteries 30A and 30B to the control device 20A.
- the user B whose user ID is B uses the control device 20B to manage the storage batteries 30C and 30D.
- the user B desires to add or replace the storage battery, the user B starts using the storage battery search system.
- User B selects a storage battery icon from a management screen provided by control device 20B as shown in FIG.
- the control device 20B displays a menu screen as shown in FIG.
- the control device 20B determines the storage battery based on the deterioration state of the storage batteries 30C and 30D to be controlled. Determine the condition of the degradation state. For example, when the deterioration states of the storage batteries 30C and 30D are 50% and 60%, respectively, the control device 20B may set the deterioration state condition to 50% or more and 60% or less using the deterioration states of the two storage batteries.
- the control device 20 ⁇ / b> B transmits a search request to be newly controlled to the server device 10 including the condition of the deterioration state of the storage battery.
- the control device 20B may include the storage battery manufacturer ID, model, and storage capacity of the storage batteries 30C and 30D in the search request.
- the server device 10 searches the database based on the received search request.
- the server device 10 may narrow down the search target based on the conditions of the storage battery manufacturer ID, the model, and the storage capacity in addition to the condition of the deterioration state included in the search request.
- the server device 10 transmits a search result including the searched storage battery information to the control device 20B.
- the control device 20B receives the search result including the storage battery information from the server device 10, the control device 20B displays a list of storage batteries based on the search result as shown in FIG. 6 on the screen.
- the list of storage batteries in FIG. 6 may include, for example, one that satisfies a condition with one storage battery as in item number 1 and one that satisfies a condition with a combination of two storage batteries as in item number 2.
- the control device 20A When receiving a transaction request designating the storage battery 30A from the server device 10, the control device 20A displays, for example, a message indicating that the transaction request has been received on the management screen of FIG.
- a transaction response is sent from the control device 20A to the server device 10, and includes transaction processing including storage battery settlement processing, database update processing, transmission of transaction completion notification to the control devices 20A and 20B, etc. Is advanced.
- the notification unit 24 and the input unit 25 are examples of a display device and a touch panel, but are not limited thereto.
- the notification unit 24 and the input unit 25 may be any device used for providing information to the user and inputting information from the user.
- the notification unit 24 may be a speaker for outputting sound.
- the input unit 25 may be a microphone that converts a user's voice into an electrical signal.
- the control device 20 may realize the search and transaction of the storage battery by an interactive service that receives an input operation by a user's voice with a microphone and outputs a search result with a speaker.
- the storage device is registered with respect to the server device 10 by the control device 20A, and the search for the storage battery with respect to the server device 10 is performed by the control device 20B.
- Step S101 The control device 20A calculates the deterioration state of the storage batteries 30A and 30B that are the control targets.
- Step S102 The control device 20A transmits to the server device 10 a registration request for the deterioration state of the storage batteries 30A and 30B to be controlled.
- Step S103 The server device 10 stores the storage battery information including the deterioration state of the storage batteries 30A and 30B received from the control device 20A in the database.
- Step S104 When the deterioration state of the storage battery 30A or 30B is not updated for a predetermined period, the server device 10 transmits an update request for the deterioration state of the storage battery 30A or 30B to the control device 20A.
- Step S105 The control device 20A transmits a registration request for the deterioration state of the storage batteries 30A and 30B to be controlled to the server device 10.
- Step S106 The server device 10 updates the storage battery information in the database with the deterioration state of the storage batteries 30A and 30B received from the control device 20A.
- Step S107 The control device 20B calculates the deterioration state of the storage batteries 30C and 30D to be controlled.
- Step S108 The control device 20B determines the condition of the deterioration state of the storage battery to be controlled based on the deterioration state of the storage batteries 30C and 30D to be controlled.
- Step S109 The control device 20B transmits to the server device 10 a search request for a storage battery to be newly controlled, including the condition of the deterioration state of the storage battery.
- Step S110 The server device 10 searches the database based on the search request received from the control device 20B.
- Step S111 The server device 10 transmits a search result including the searched storage battery information to the control device 20B.
- Step S112 The control device 20B notifies the search result including the storage battery information received from the server device 10.
- Step S113 The control device 20B transmits a transaction request designating the storage battery 30A included in the search result to the server device 10.
- Step S114 Upon receiving a transaction request designating the storage battery 30A from the control device 20B, the server device 10 transmits the transaction request to the control device 20A that controls the storage battery 30A.
- Step S115 The control device 20A notifies the transaction request specifying the storage battery 30A received from the server device 10.
- Step S116 The control device 20A transmits a transaction response to the transaction request designating the storage battery 30A to the server device 10.
- Step S117 When the server apparatus 10 receives the transaction response, the server apparatus 10 executes a transaction process for the storage battery 30A.
- the control device 20 capable of controlling the storage battery 30 includes the control unit 21 and the communication unit 22.
- the control unit 21 determines the condition of the deterioration state of the storage battery based on the deterioration state of the storage battery 30 to be controlled.
- the communication part 22 transmits the search request
- the search result is received from the server device 10.
- the control device 20 calculates the deterioration state of the storage battery 30 that is the control target. According to such a configuration, when searching for information on a storage battery to be newly controlled, it is possible to reduce the burden of measuring and calculating the deterioration state of the storage battery 30 already controlled by the control device 20 by the user. Thereby, the usefulness of the technique which controls a storage battery improves.
- the search request transmitted by the control device 20 includes conditions for the storage capacity of the storage battery.
- the server device 10 that has received the search request can also search for a storage battery that satisfies the storage capacity requirements of the search request by combining a plurality of storage batteries. Thereby, a user can be provided with more choices as a storage battery to be newly controlled, and the usefulness of the technology for controlling the storage battery is improved.
- the control device 20 transmits a request for registering the deterioration state of the storage battery 30 to be controlled from the communication unit 22 to the server device 10.
- the control device 20 not only searches for information on a storage battery that is newly controlled, but also purchases information on the storage battery 30 that is a control target of the control device 20 that is no longer needed. It can also be used to provide the above. Thereby, utilization of a used storage battery is promoted and the usefulness of the technique which controls a storage battery improves.
- the control device 20 receives a transaction request specifying the storage battery to be controlled in the communication unit 22 from the server device 10. According to such a configuration, the control device 20 can notify the user of the control device 20 that there is a person who wants to purchase the storage battery 30 to be controlled. Thereby, utilization of a used storage battery is promoted and the usefulness of the technique which controls a storage battery improves.
- the control device 20 further includes a notification unit 24 that notifies the information received from the server device 10.
- the information received from the server device 10 includes at least one of a search result and a transaction request. According to such a configuration, the information provided by the server device 10 is notified to a user who wishes to search or trade in the storage battery 30 of the control device 20. Therefore, the usefulness of the technique which controls a storage battery improves.
- the control device 20 further includes a display unit that displays information received from the server device 10. According to such a configuration, the information provided by the server device 10 is visualized and visually notified to the user of the control device 20. Therefore, the usefulness of the technique which controls a storage battery improves.
- the server device 10 which is the information processing device according to the present embodiment is connected to a control device capable of controlling the storage battery so as to be communicable.
- the server apparatus 10 receives a registration request for the deterioration state of the storage battery 30 that is the control target of the first control apparatus 20 from the first control apparatus 20, the server apparatus 10 stores the deterioration state in a database including storage battery information. To do.
- the server apparatus 10 receives a search request for a storage battery to be newly controlled including the condition of the deterioration state of the storage battery 30 from the second control apparatus 20, the server apparatus 10 searches the database based on the search request, and searches the storage battery The search result including 30 information is transmitted to the second control device 20.
- the plurality of control devices 20 can share information on the storage battery 30 that is not required by each user and the storage battery 30 that is newly desired to be installed. Thereby, the usefulness of the technique which controls a storage battery improves.
- the server apparatus 10 When the server apparatus 10 according to the present embodiment receives a transaction request specifying the storage battery 30 included in the search result from the second control apparatus 20, the server apparatus 10 transmits the transaction request to the control apparatus 20 that controls the storage battery 30. According to such a configuration, in the control device 20, not only the search for the storage battery 30 but also the transaction for the searched storage battery 30 can be performed. Thereby, the usefulness of the technique which controls a storage battery improves.
- the configuration in which the server device 10 includes the database 14 has been described, but the configuration is not limited thereto.
- the server device 10 may not include the database 14.
- processing such as storage and retrieval of information realized by the database 14 may be implemented using the server control unit 11 and the server storage unit 13.
- the server device 10 may be configured to execute part or all of the operations and processes executed by the control device 20.
- the control device 20 may be configured to execute a part or all of the operations performed by the server device 10.
- processing such as display control of various screens displayed on the control device 20 may be executed by the server device 10 or may be executed in cooperation by the server device 10 and the control device 20.
- the control device 20 may execute a search process executed by the server device 10. In such a case, the server device 10 may only collect and provide information on the storage battery 30 owned by each control device 20.
- control device 20 is installed in the customer facility together with the storage battery 30 to be controlled, but this is not restrictive.
- the control device 20 may be controllably connected to the storage battery 30 via a network 40 such as the Internet.
- the control device 20 may be installed in a remote place from the storage battery 30 that is the control target.
- At least a part of the configuration and functions of the server device 10 or the control device 20 may be implemented in another device.
- at least a part of the configuration and functions of the communication unit 22 may be mounted on an interface board that can be connected to the control device 20.
- at least a part of the configuration and functions of the storage unit 23 may be mounted on an external storage device that can be connected to the control device 20.
- at least a part of the configuration and functions of the notification unit 24 may be mounted on a display device or the like that can be connected to the control device 20.
- at least a part of the configuration and functions of the input unit 25 may be mounted on an input device or the like that can be connected to the control device 20.
- the storage battery information stored in the database 14 of the server device 10 is not limited to the above-described example.
- the information on the storage battery may include information indicating the type of storage battery such as a lead storage battery, a nickel metal hydride storage battery, a lithium ion battery, or a sodium sulfur battery.
- the information on the storage battery may include information on the positive electrode material, the negative electrode material, and the electrolyte.
- the information on the positive electrode material is lithium iron phosphate (LiFePO 4 ), lithium manganate (LiMn 2 O 4 ), lithium nickelate (LiNiO 2 ), lithium cobaltate (LiCoO 2 ), Or even if a ternary system (Li (Ni-Mn-Co) O 2 ) or the like is registered and graphite (LiC 6 ) or lithium titanate (Li 4 Ti 5 O 12 ) or the like is registered as information on the negative electrode material Good. With these pieces of information, it is possible to realize storage battery search and transaction more suitable for the user using detailed battery characteristics of the storage battery.
- the present invention is not limited thereto.
- Arbitrary information may be used as information indicating the degree of deterioration of the storage battery.
- the information indicating the degree of deterioration of the storage battery may include an electromotive force, an internal resistance value, or a chargeable capacity of the storage battery.
- the storage battery search system 1 includes registration of storage battery information, creation of a search condition included in a search request for a storage battery, search for a storage battery, and the like based on the deterioration state of the storage battery.
- the present invention is not limited to this.
- Various processes provided by the storage battery search system 1 may be performed based on arbitrary information regarding the storage battery.
- the arbitrary information regarding the storage battery may include information indicating the degree of deterioration of the storage battery, information indicating the performance of the storage battery, information indicating the configuration of the storage battery, and the like. With these pieces of information, a search and transaction for a storage battery more suitable for the user can be realized.
- Storage battery search system 10 Server device (information storage device) DESCRIPTION OF SYMBOLS 11 Server control part 12 Server communication part 13 Server storage part 14 Database 20 Control apparatus 21 Control part 22 Communication part 23 Storage part 24 Notification part 25 Input part 30 Storage battery 40 Network
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Abstract
Description
サーバ装置10の構成について具体的に説明する。サーバ装置10は、サーバ制御部11と、サーバ通信部12と、サーバ記憶部13と、データベース14と、を備える。
蓄電池の情報は、検索の対象となる蓄電池ごとに作成され得る。本開示において検索の対象となる蓄電池は、電力の充電及び放電に用いられる任意の蓄電池であってよい。蓄電池は、例えば、家庭用蓄電池、電気自動車、ハイブリッド自動車、携帯機器、或いはモバイルバッテリ等、任意の用途に用いられる蓄電池であってよい。また、本実施形態において、蓄電池は、これらの用途のために蓄電池メーカから1つの蓄電池として提供又は販売される単位で検索、記憶、及び管理されるものとして説明するが、これに限られない。例えば、蓄電池は、電力の充放電に用いられる最小単位であるセル単位、或いは複数のセルを接続したモジュール単位で検索、記憶、及び管理されてもよい。
SOH(%)=FCC/DC×100 (式1)
この場合、SOHが100%であるときに蓄電池は劣化していないことを示し、SOHが低いほど、蓄電池の劣化が進んでいることを示す。FCCは任意の方法で算出されてもよい。例えば、FCCは、蓄電池の満充電状態から完全放電状態まで放電したときに測定される放電電力量であってもよい。また、FCCは、充放電に要する電流及び時間等に基づき推定されてもよい。
蓄電容量(kWh)=初期容量(kWh)×SOH(%)/100 (式2)
制御装置20の構成について具体的に説明する。図1に示すように、制御装置20は、制御部21、通信部22、記憶部23、報知部24、及び入力部25を備える。
図2~6を参照して、本開示の一実施形態に係る蓄電池検索システム1に含まれるサーバ装置10及び制御装置20が協働して実行する、蓄電池の検索に関する処理の一例を説明する。制御装置20は、例えば報知部24及び入力部25として、表示デバイス及び表示デバイスと一体的に設けられたタッチパネルを備えてもよい。まず、制御装置20からサーバ装置10に対する蓄電池30に関する情報の登録処理について説明する。例えば、ユーザIDがAであるユーザAは、制御装置20Aを使用して、蓄電池30A及び30Bを管理している。ユーザAが蓄電池30A又は30Bの販売を希望する場合に、ユーザAは蓄電池検索システムの利用を開始する。ユーザAは、図3に示すような制御装置20Aが提供する管理画面から蓄電池のアイコンを選択する。すると制御装置20Aは図4に示すようなメニュー画面を表示する。メニュー画面には、蓄電池の「売却」ボタン、「増設」ボタン、及び「交換」ボタンが表示される。ユーザAによりメニュー画面の「売却」ボタンが押下されると、図5に示すような蓄電池に関する情報公開の確認画面が表示される。ユーザAが確認画面の「はい」ボタンを押下し、売却対象の蓄電池の指定及び売却価格等のユーザ操作を行うと、ユーザ操作に基づき制御装置20Aは蓄電池30A及び30Bの劣化状態の登録要求をサーバ装置10に送信する。蓄電池30A及び30Bの劣化状態は「はい」ボタンが押下された後に算出されてもよく、或いは予め算出されていた値が用いられてもよい。図2に、サーバ装置10のデータベース14に記憶される蓄電池の情報を示す。サーバ装置10は、制御装置20Aから制御対象である蓄電池30A及び30Bの劣化状態の登録要求を受信すると、それぞれ蓄電池ID0001及び0002の情報としてデータベース14に記憶する。これにより、蓄電池検索システム1において、蓄電池30A及び30Bが検索対象とされる。サーバ装置10は、蓄電池30A及び30Bの情報に含まれるSOHが所定の期間更新されない場合には、制御装置20Aに蓄電池30A及び30Bの劣化状態の更新要求を送信してもよい。
10 サーバ装置(情報記憶装置)
11 サーバ制御部
12 サーバ通信部
13 サーバ記憶部
14 データベース
20 制御装置
21 制御部
22 通信部
23 記憶部
24 報知部
25 入力部
30 蓄電池
40 ネットワーク
Claims (10)
- 蓄電池を制御可能な制御装置であって、
制御対象である前記蓄電池の劣化状態に基づいて前記蓄電池の前記劣化状態の条件を判定する制御部と、
前記蓄電池の前記劣化状態の前記条件を含む、新たに制御対象とする蓄電池の検索要求を情報処理装置へ送信し、前記検索要求に基づいて検索された蓄電池の情報を含む検索結果を前記情報処理装置から受信する通信部と、
を備える、制御装置。 - 請求項1に記載の制御装置であって、
前記制御部は、更に、前記制御対象である前記蓄電池の前記劣化状態を算出する、制御装置。 - 請求項1又は2に記載の制御装置であって、
前記検索要求には、更に、前記蓄電池の蓄電容量の条件が含まれる、制御装置。 - 請求項1から3のいずれか一項に記載の制御装置であって、
前記通信部は、更に、前記制御対象である前記蓄電池の前記劣化状態の登録要求を情報処理装置へ送信する、制御装置。 - 請求項4に記載の制御装置であって、
前記通信部は、更に、前記制御対象である前記蓄電池を指定した取引要求を情報処理装置から受信する、制御装置。 - 請求項1から5のいずれか一項に記載の制御装置であって、
前記情報処理装置から受信した情報を報知する報知部を更に備える、制御装置。 - 請求項1から5のいずれか一項に記載の制御装置であって、
前記情報処理装置から受信した情報を表示する表示部を更に備える、制御装置。 - 蓄電池を制御可能な制御装置と通信可能に接続される情報処理装置であって、
第1の制御装置から、当該第1の制御装置の制御対象である前記蓄電池の劣化状態の登録要求を受信した場合、当該劣化状態を蓄電池の情報を含むデータベースに記憶し、
第2の制御装置から、前記蓄電池の前記劣化状態の条件を含む、新たに制御対象とする蓄電池の検索要求を受信すると、前記検索要求に基づいて前記データベースを検索し、
検索された前記蓄電池の前記情報を含む検索結果を前記第2の制御装置に送信する、
情報処理装置。 - 請求項8に記載の情報処理装置であって、
前記第2の制御装置から前記検索結果に含まれる前記蓄電池を指定した取引要求を受信すると、前記蓄電池を制御する前記制御装置に当該取引要求を送信する、
情報処理装置。 - 蓄電池を制御可能な制御装置と、
前記制御装置と通信可能に接続される情報処理装置と、
を備える蓄電池検索システムであって、
前記制御装置は、
制御対象である前記蓄電池の劣化状態に基づいて前記蓄電池の前記劣化状態の条件を判定し、
前記蓄電池の前記劣化状態の前記条件を含む、新たに制御対象とする蓄電池の検索要求を前記情報処理装置へ送信し、
前記情報処理装置は、
前記制御装置から、前記検索要求を受信すると、前記検索要求に基づいて蓄電池の情報を含むデータベースを検索し、
検索された前記蓄電池の前記情報を含む検索結果を前記制御装置に送信する、
蓄電池検索システム。
Priority Applications (4)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US17/040,540 US11973194B2 (en) | 2018-03-26 | 2019-03-22 | Control apparatus, information processing apparatus, and storage cell retrieval system |
| CN201980021541.3A CN111902993A (zh) | 2018-03-26 | 2019-03-22 | 控制装置、信息处理装置及蓄电池检索系统 |
| EP19774371.9A EP3780246A4 (en) | 2018-03-26 | 2019-03-22 | CONTROL DEVICE, INFORMATION PROCESSING DEVICE AND ACCUMULATOR RECOVERY SYSTEM |
| JP2020509978A JP7072050B2 (ja) | 2018-03-26 | 2019-03-22 | 制御装置、情報処理装置及び蓄電池検索システム |
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| JP2022007424A (ja) * | 2020-06-26 | 2022-01-13 | 京セラ株式会社 | 利用許諾システム、管理サーバ、リモートコントローラ及び利用許諾方法 |
| JP2024510386A (ja) * | 2021-03-11 | 2024-03-07 | デュラセル、ユーエス、オペレーションズ、インコーポレーテッド | パワーバンクバッテリ及びそれを用いて充電されるデバイスの容量の統合的監視 |
| WO2025069173A1 (ja) * | 2023-09-26 | 2025-04-03 | 日本電気株式会社 | 情報処理装置、情報処理システム、情報処理方法及び記録媒体 |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP7771516B2 (ja) * | 2021-02-22 | 2025-11-18 | カシオ計算機株式会社 | 電子機器、情報出力方法及びプログラム |
| CN113222655A (zh) * | 2021-04-29 | 2021-08-06 | 深圳供电局有限公司 | 储能装置确定方法、装置、计算机设备及可读存储介质 |
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| JP7546386B2 (ja) | 2020-06-26 | 2024-09-06 | 京セラ株式会社 | 利用許諾システム、管理サーバ、リモートコントローラ及び利用許諾方法 |
| JP2024510386A (ja) * | 2021-03-11 | 2024-03-07 | デュラセル、ユーエス、オペレーションズ、インコーポレーテッド | パワーバンクバッテリ及びそれを用いて充電されるデバイスの容量の統合的監視 |
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Also Published As
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| JP7072050B2 (ja) | 2022-05-19 |
| EP3780246A1 (en) | 2021-02-17 |
| US20210028501A1 (en) | 2021-01-28 |
| US11973194B2 (en) | 2024-04-30 |
| CN111902993A (zh) | 2020-11-06 |
| JPWO2019188816A1 (ja) | 2021-03-25 |
| EP3780246A4 (en) | 2022-03-09 |
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