WO2012035586A1 - 防犯システム - Google Patents
防犯システム Download PDFInfo
- Publication number
- WO2012035586A1 WO2012035586A1 PCT/JP2010/005681 JP2010005681W WO2012035586A1 WO 2012035586 A1 WO2012035586 A1 WO 2012035586A1 JP 2010005681 W JP2010005681 W JP 2010005681W WO 2012035586 A1 WO2012035586 A1 WO 2012035586A1
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- WO
- WIPO (PCT)
- Prior art keywords
- unit
- signal
- alarm
- slave unit
- slave
- 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
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Classifications
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- G—PHYSICS
- G08—SIGNALLING
- G08B—SIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
- G08B13/00—Burglar, theft or intruder alarms
- G08B13/02—Mechanical actuation
- G08B13/14—Mechanical actuation by lifting or attempted removal of hand-portable articles
-
- G—PHYSICS
- G08—SIGNALLING
- G08B—SIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
- G08B13/00—Burglar, theft or intruder alarms
- G08B13/02—Mechanical actuation
- G08B13/14—Mechanical actuation by lifting or attempted removal of hand-portable articles
- G08B13/1445—Mechanical actuation by lifting or attempted removal of hand-portable articles with detection of interference with a cable tethering an article, e.g. alarm activated by detecting detachment of article, breaking or stretching of cable
- G08B13/1454—Circuit arrangements thereof
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06K—GRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
- G06K17/00—Methods or arrangements for effecting co-operative working between equipments covered by two or more of main groups G06K1/00 - G06K15/00, e.g. automatic card files incorporating conveying and reading operations
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- G—PHYSICS
- G08—SIGNALLING
- G08B—SIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
- G08B13/00—Burglar, theft or intruder alarms
- G08B13/02—Mechanical actuation
- G08B13/14—Mechanical actuation by lifting or attempted removal of hand-portable articles
- G08B13/1445—Mechanical actuation by lifting or attempted removal of hand-portable articles with detection of interference with a cable tethering an article, e.g. alarm activated by detecting detachment of article, breaking or stretching of cable
- G08B13/1463—Physical arrangements, e.g. housings
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- G—PHYSICS
- G08—SIGNALLING
- G08B—SIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
- G08B13/00—Burglar, theft or intruder alarms
- G08B13/22—Electrical actuation
-
- G—PHYSICS
- G08—SIGNALLING
- G08B—SIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
- G08B25/00—Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems
- G08B25/01—Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems characterised by the transmission medium
- G08B25/10—Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems characterised by the transmission medium using wireless transmission systems
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47F—SPECIAL FURNITURE, FITTINGS, OR ACCESSORIES FOR SHOPS, STOREHOUSES, BARS, RESTAURANTS OR THE LIKE; PAYING COUNTERS
- A47F7/00—Show stands, hangers, or shelves, adapted for particular articles or materials
- A47F7/02—Show stands, hangers, or shelves, adapted for particular articles or materials for jewellery, dentures, watches, eye-glasses, lenses, or the like
- A47F7/024—Show stands, hangers, or shelves, adapted for particular articles or materials for jewellery, dentures, watches, eye-glasses, lenses, or the like with provisions for preventing unauthorised removal
Definitions
- the present invention relates to a crime prevention system that monitors theft of merchandise placed on a merchandise shelf in a store.
- Security systems that monitor theft of merchandise for sale or exhibition are known.
- a sensor attached to a product is removed from the product, a notification to that effect is sent from the sensor to the monitoring device via wiring.
- the monitoring device issues an alarm together with the notification from the sensor.
- the monitoring device (parent device) and the sensor are generally connected via wiring, and a plurality of (for example, 10) sensors are connected to one monitoring device. Therefore, for example, as shown by reference numeral 14A in FIG. 14, the wiring becomes complicated when the arrangement interval of the products is narrow. Further, when the arrangement interval of the products is wide, as shown by reference numeral 14B in FIG. 14, there is a problem that the length of the wiring is insufficient and all sensors cannot be used.
- Patent Document 1 discloses a technique in which a box containing an IC tag is affixed to a product, and wireless communication is always performed between a monitoring station (master unit) incorporating a reader and the box (slave unit). Yes.
- the monitoring station detects an abnormality and sounds a buzzer.
- the present invention has been made in view of the above problems, and it is possible to perform troublesome wiring between the slave unit and the master unit while maintaining the convenience of the conventional configuration (configuration in which the sensor and the master unit are connected by wiring). Providing technology to be eliminated.
- one aspect of the present invention is a crime prevention system that monitors theft of a product placed on a product shelf in a store, and is attached to the product shelf and a sensor attached to the product.
- a parent device that monitors the theft of the product by wirelessly receiving a slave unit connected to the plurality of sensors via wiring and a signal using the first frequency band from the one or more slave units.
- the slave unit detects the removal of the sensor from the product, the removal of the slave unit from the product shelf, or the removal of the wiring from the slave unit, thereby theft of the product.
- a slave side transmitting means for transmitting an alarm signal to be transmitted, and a signal using a second frequency band indicating a band different from the first frequency band, and configured to receive the second frequency by radio.
- a slave unit receiving means for receiving instructions from a remote controller that wirelessly transmits various signals using bands, and the master unit wirelessly receives signals using the first frequency band And configured to receive a signal using the second frequency band wirelessly, and a first master unit receiving unit that receives the alarm signal transmitted by the slave unit transmitting unit.
- a second master-side receiving means for receiving an instruction from the remote controller; and a master-side alarm means for starting an alarm operation when the alarm signal is received by the first master-side receiving means; It comprises.
- FIG. 1 is a diagram showing an example of a product shelf (display product shelf 12) in a store to which the security system is applied.
- the store may be, for example, a large store such as a home appliance mass retailer or a home center, a small store such as an apparel store or a general store, and an exhibition hall.
- any store that displays (displays) products (including exhibits) on a product shelf or the like is not particularly limited.
- the security system monitors theft of products placed on product shelves in stores.
- the store is provided with a display product shelf 12 for displaying display products (in this case, mobile phones) 17 (17a to 17f).
- display products 17 in this case, mobile phones 17 (17a to 17f).
- a plurality of display products 17 are arranged on the display product shelf 12 with a predetermined interval.
- a sensor 16 (16a to 16f) is attached to each display product 17.
- the sensor 16 is connected to the slave unit 14 (14a to 14c) via the cable 15 (15a to 15f).
- two sensors 16 are connected to one slave unit 14.
- Such a sensor 16 is affixed to goods using a double-sided tape etc., for example.
- the sensor 16 detects removal from the display product 17 by a sensor lever or the like provided on a surface (applied surface) to be attached to the product.
- the slave unit 14 is connected to a predetermined number (in this case, two) of sensors 16 via a cable 15 and is configured to be able to communicate with the master unit (monitoring device) 10 wirelessly.
- a plurality of connection jacks 21 (two in this case) for connecting the terminals of the cable 15 are provided on the side surface of the slave unit 14 as shown by reference numeral 2A in FIG.
- the connection jack 21 is used to connect to a predetermined number of sensors 16.
- mobile_unit 14 is affixed on the display goods shelf 12 using a double-sided tape etc., for example.
- a sensor lever 23 is provided on the affixing surface of the slave unit 14 as shown by reference numeral 2B in FIG. 2 in the same manner as the sensor 16 described above.
- a buzzer is provided inside the slave unit 14, and a sound emission port 24 is provided in the cover portion of the slave unit 14 as indicated by reference numeral 2 ⁇ / b> B in FIG. 2.
- the cordless handset 14 is also provided with a warning LED (see reference numeral 22 in FIG. 2A).
- the parent device 10 functions as a monitoring device that wirelessly communicates with one or a plurality of child devices 14 to be monitored and monitors the theft of the display product 17 via these child devices 14.
- the base unit 10 includes a buzzer, an alarm LED, and the like, and is also connected to an alarm lamp 11.
- the master unit 10 receives the alarm signal from the slave unit 14, the sensor 16 is removed from the display product 17 or the cable 15 is disconnected from the slave unit 14 using at least one of the buzzer, the alarm LED, and the alarm lamp 11. Or the clerk or the like is notified that the handset 14 has been removed from the display product shelf 12.
- the remote controller 13 transmits signals to the slave unit 14 and the master unit 10 to remotely operate these devices. For example, when the slave unit 14 and the master unit 10 are in an alarm operation (buzzer sounding or alarm LED blinking), the store clerk operates the remote controller 13 to direct the reset signal to these devices. The alarm action in each device is stopped.
- the remote controller 13 can also perform various settings for the slave unit 14 and the master unit 10, for example.
- FIG. 1 shows a mode in which an alarm signal is transmitted from the slave unit 14a to the master unit 10 in response to the removal of the sensor 16a from the display product 17a. In this case, an alarm operation is performed in the slave unit 14a, the master unit 10, and the alarm lamp 11.
- each of the child devices 14 has a store ID that is identification information for identifying a store in a memory (not shown) provided therein, and a child device ID that is identification information for identifying each child device. Holding.
- the child device ID is generated in each child device 14. Further, in the parent device 10, this store ID and a child device ID to be monitored are registered. Even if the parent device 10 receives an alarm signal (a signal including a store ID, a child device ID, and an alarm signal) from the child device 14, if the store ID does not match or the child device ID is not a monitoring target, an alarm is issued. No action is taken.
- the slave unit 14 receives a signal using a low-frequency signal (for example, 22 kHz) and transmits a signal using a high-frequency signal (for example, 315 MHz).
- the low frequency signal is a signal having a short reach, for example, a signal reaching a range of several cm to 1 m
- a high frequency signal has a relatively wide reach, for example, to a range of about several tens of m. It is a signal to reach.
- the reception signal received by the handset 14 from the remote controller 13 includes a reset signal instructing cancellation of the alarm operation, a set signal instructing various operation settings, and a store ID setting signal instructing setting of the store ID. Can be mentioned.
- the reception signal received by the slave unit 14 from the master unit 10 includes a slave unit ID inquiry signal for inquiring the slave unit ID, a slave unit store ID match signal indicating that the slave unit ID matches, And a slave unit ID registration completion signal indicating that registration of the unit ID has been completed.
- the transmission signal transmitted from the slave unit 14 includes a communication check / operation signal for confirming a communication state with the master unit 10, an alarm signal for instructing the start of the alarm operation, and the stop of the alarm operation. Examples thereof include an alarm stop signal for instructing and a slave unit ID registration signal for instructing registration of a slave unit ID.
- base unit 10 transmits a signal using a low-frequency signal (for example, 22 kHz). Moreover, the main
- a low-frequency signal for example, 22 kHz
- base station 10 receives the signal from the remote controller 13 using a low frequency signal (for example, 22 kHz), and receives the signal from the subunit
- a store ID setting signal for instructing the setting of the store ID can be mentioned.
- the reception signal received by the parent device 10 from the child device 14 includes the above-described communication check / operation signal, alarm signal, alarm stop signal, and child device ID registration signal.
- the transmission signal transmitted from the parent device 10 includes the above-described child device ID inquiry signal, the child device store ID match signal, and the child device ID registration completion signal.
- the parent device 10, the child device 14, and the remote controller 13 exchange signals using radio waves in different frequency bands depending on the operation content (signal content). Specifically, for example, a high-frequency signal that can secure a wide area is used as an alarm signal or the like. Further, a signal (store ID setting signal or the like) used for setting or registering various information uses a low frequency signal having a short communication range.
- the reset signal includes a store ID and a reset signal. The same applies to other signals.
- the slave unit 14 includes a connection jack 21, an alarm LED 22, a transmission antenna 30, a buzzer 25, a reception coil 26, a battery 28, a booster coil 29, and a sensor unit 27 having a sensor lever 23. It is equipped.
- the transmitting antenna 30 is used to transmit a signal toward the base unit 10.
- the transmitting antenna 30 transmits a high frequency signal.
- the receiving coil 26 is used to receive signals from the remote controller 13 and the parent device 10. The receiving coil 26 receives a low frequency signal.
- the sensor unit 27 detects attachment of the handset 14 to the display product shelf 12 and removal of the handset 14 from the display product shelf 12.
- the sensor unit 27 is provided with a sensor lever 23 in order to detect the attachment and removal.
- the sensor lever 23 is normally (when the handset 14 is not attached to the display product shelf 12), a force is applied in the direction of arrow A by an elastic member (for example, a spring), and the sensor lever 23 protrudes from the handset 14. Become. While the handset 14 is attached to the display product shelf 12, the sensor lever 23 is pressed in the direction opposite to the arrow A direction by the wall surface of the display product shelf 12 and pushed into the handset 14.
- the buzzer 25 sounds an alarm alarm when the handset 14 is removed from the display product shelf 12, the cable 15 is removed from the handset 14, or the sensor 16 is removed from the display product 17. Further, the alarm LED 22 blinks together with the alarm alarm sounded by the buzzer 25 described above.
- the booster coil 29 is used to boost the voltage applied to the buzzer 25.
- the battery 28 supplies driving power for operating each unit of the slave unit 14. The above is the description of the hardware configuration in the slave unit 14.
- the slave unit 14 includes a connection jack 21, an alarm LED 22, a sensor lever 23, an MPU (Micro-Processing unit) 35, a transmission antenna 30, a transmission control unit 32, a reception coil 26, and reception control.
- the unit 33, the buzzer 25, and the booster coil 29 are provided.
- connection jack 21 has an opening toward the outside of the slave unit 14, and a terminal provided at the tip of the cable 15 is inserted.
- connection jacks 21 21a and 21b
- the present invention is not limited to this, and only one connection jack 21 may be provided. The above may be provided.
- the sensor lever 23 detects the attachment of the handset 14 to the display product shelf 12 and the removal of the handset 14 from the display product shelf 12 as described in FIG.
- the transmission control unit 32 controls transmission of a signal toward the parent device 10 via the transmission antenna 30. As described above, signal transmission from the slave unit 14 via the transmission antenna 30 is performed using a high-frequency signal (315 MHz in this case).
- the reception control unit 33 controls reception of signals from the remote controller 13 and the parent device 10 via the reception coil 26. As described above, reception of signals from the remote controller 13 and the parent device 10 via the reception coil 26 is performed using a low-frequency signal (22 kHz in this case).
- the MPU 35 comprehensively controls the operation of the slave unit 14.
- the MPU 35 includes a detection unit 101, a reception signal determination unit 102, a transmission signal generation unit 103, a store ID setting unit 104, a slave unit ID generation unit 105, and a memory 106 as functional configurations.
- the detecting unit 101 detects the removal of the handset 14 from the display product shelf 12, the removal of the cable 15 from the handset 14, and the removal of the sensor 16 from the display product 17. Thereby, the theft of goods is detected.
- mobile_unit 14 detection part 101
- a fixed voltage is applied with respect to the sensor 16 (resistance) via the cable 15, and the value of the electric current which flows into the said sensor 16 is monitored. And when the change of the said electric current value is detected, it detects that the sensor 16 was removed from the display goods 17.
- the store ID setting unit 104 stores the store ID included in the store ID setting signal sent from the remote controller 13 in the memory 106.
- the slave unit ID generation unit 105 generates a slave unit ID (identification information for identifying each slave unit) and stores it in the memory 106.
- the memory 106 is realized by, for example, an EEPROM (Electrically Erasable Programmable ROM) that is a nonvolatile memory capable of writing and reading data.
- the memory 106 stores, for example, a store ID set in the store ID setting unit 104, a child device ID generated by the child device ID generation unit 105, and the like as indicated by reference numeral 106a.
- the received signal determination unit 102 determines whether or not the signal transmitted from the remote controller 13 or the parent device 10 is addressed to the own device. This determination is performed, for example, by comparing the store ID and slave device ID stored in the memory 106 with the store ID and slave device ID included in the received signal.
- the transmission signal generation unit 103 generates a transmission signal to be transmitted to the parent device 10. For example, when the alarm signal shown in FIG. 3A is transmitted, a transmission signal including the alarm signal is generated together with the store ID and the child machine ID stored in the memory 106.
- buttons 41 and sound emission ports 42 are provided on the upper surface of the parent device 10 (the surface of the parent device 10 as viewed from the direction of arrow C).
- buttons 41 for example, an UP button that increases a value such as a setting value, a DOWN button that decreases a value such as a setting value, and a determination button are provided.
- Alarm LEDs 46 and 47 and a status LED 48 are provided on the front surface of the parent device 10 (the surface of the parent device 10 viewed from the direction of arrow B).
- the alarm LED 46 blinks when an alarm signal is received from the slave unit 14.
- a plurality (16 in this case) of alarm LEDs 47 are provided corresponding to each of the plurality of slave units 14 to be monitored.
- the alarm LED 47 corresponding to the child device 14 that is the transmission source of the alarm signal blinks (in this case, the alarm corresponding to the child device whose child device ID is “1”). LED 47 is blinking).
- the status LED 48 indicates the status related to the connection with the parent device 10 and the child device 14 to be monitored by the parent device 10 by lighting.
- an alarm lamp connection jack 43 for connecting the alarm lamp 11, a power supply jack 44 for inputting power supplied from the power adapter, A connection IN jack 45 for inputting the output from the external device into the main unit 10 is provided.
- a connection OUT jack or the like for inputting the output from the parent device 10 to an external device is provided on the surface of the parent device 10 in the direction opposite to the arrow D direction.
- FIG. 7 is a diagram showing an example of a hardware configuration inside the parent device 10 shown in FIG.
- Reference numeral 7A denotes a hardware configuration inside the parent device 10 as viewed from the direction of arrow B shown in FIG. 6 (front), and reference numeral 7B denotes hardware inside the parent device 10 as seen from the direction of arrow C shown in FIG.
- the hardware configuration is shown (upper surface), and reference numeral 7C shows the hardware configuration inside the base unit 10 as viewed from the direction of arrow E shown in FIG. 6 (rear surface).
- subjected is the same, it may abbreviate
- a control board 50 is provided inside the base unit 10. As indicated by reference numeral 7A, various LEDs (alarm LEDs 46 and 47, status LED 48) described with reference to FIG. 6 are provided on the front surface of the control board 50.
- connection OUT jack 51 On the other side, as shown by reference numerals 7B and 7C, a connection OUT jack 51, a reception coil 53, a reception antenna 54, a transmission coil / boost coil 55, and a buzzer 56 are provided.
- the receiving antenna 54 is used to receive a signal from the slave unit 14.
- the receiving antenna 54 receives a high-frequency signal and receives an alarm signal from the slave unit 14, for example.
- the receiving coil 53 is used for receiving a signal from the remote controller 13.
- the receiving coil 53 receives a low frequency signal, and receives various signals (various control instructions) from the remote controller 13, for example.
- the transmission coil / boost coil 55 transmits a low-frequency signal to the slave unit 14 and boosts the voltage applied to the buzzer 56.
- the transmission coil / boost coil 55 is used when inquiring the slave unit 14 about the slave unit ID.
- the buzzer 56 sounds a warning alarm when receiving a warning signal from the slave unit 14.
- the battery 52 is used as an auxiliary power source.
- the base unit 10 normally operates by receiving power supply from the power adapter via the power jack 44. However, when the power supply is cut off due to the power cable being disconnected or the like, the power supply from the battery 52 is supplied. To work.
- FIG. 6 and 7 are the same as those in FIG. 6 and FIG. 7, the description thereof may be omitted.
- the base unit 10 includes various LEDs (46 to 48), various jacks (43 to 45, 51), an MPU 60, a reception antenna 54, a first reception control unit 67, a reception coil 53, A second reception control unit 68, a transmission coil / boost coil 55, a transmission control unit 69, a buzzer 56, and a power supply circuit 70 are provided.
- the first reception control unit 67 controls reception of signals from the slave unit 14 via the reception antenna 54. As described above, reception of a signal from the slave unit 14 via the reception antenna 54 is performed using a high-frequency signal (315 MHz in this case).
- the second reception control unit 68 controls reception of a signal from the remote controller 13 via the reception coil 53. As described above, reception of a signal from the remote controller 13 via the reception coil 53 is performed using a low-frequency signal (22 kHz in this case).
- the transmission control unit 69 controls transmission of a signal toward the slave unit 14 via the transmission coil / boost coil 55. As described above, transmission of a signal from parent device 10 via transmission coil / boost coil 55 is performed using a low-frequency signal (22 kHz in this case).
- the power supply circuit 70 supplies power from the power supply adapter via the power supply jack 44 to each unit constituting the parent device 10.
- the MPU 60 performs overall control of the operation of the base unit 10.
- the MPU 60 is provided with a store ID setting unit 61, a slave unit ID registration unit 62, a reception signal determination unit 63, a transmission signal generation unit 64, a monitoring unit 65, and a memory 66 as functional configurations.
- the store ID setting unit 61 stores the store ID included in the store ID setting signal sent from the remote controller 13 in the memory 66.
- the handset ID registration unit 62 registers the handset ID included in the handset ID registration signal sent from the handset 14 as a response to the handset ID inquiry signal in the memory 66.
- the memory 66 is realized by, for example, an EEPROM that is a nonvolatile memory capable of writing and reading data.
- the memory 66 stores, for example, a store ID set in the store ID setting unit 61, a slave unit ID registered by the slave unit ID registration unit 62, and the like, as indicated by reference numeral 66a. Note that the slave unit 14 having the slave unit ID registered in the memory 66 is a monitoring target in the master unit 10.
- the reception signal determination unit 63 determines whether or not the signal transmitted from the remote controller 13 or the slave unit 14 is addressed to the own unit. This determination is performed, for example, by comparing the store ID and slave device ID stored in the memory 66 with the store ID and slave device ID included in the received signal.
- the transmission signal generator 64 generates a transmission signal to be transmitted to the slave unit 14.
- the monitoring unit 65 performs overall monitoring processing related to the theft of the display product 17.
- the store clerk When registering the child device ID, the store clerk operates the remote controller 13 to shift the parent device 10 to the setting mode. In shifting to the setting mode, first, a reset signal is transmitted from the remote controller 13 by an operation by a store clerk or the like. The transmission of the reset signal from the remote controller 13 is performed when the parent device 10 is not in an alarm state.
- the reception signal determination unit 63 analyzes the reset signal and determines whether or not the reset signal is addressed to itself (S102). As described above, this determination is made by comparing the store ID included in the reset signal with the store ID stored in the memory 106.
- the base unit 10 sounds an error sound (S104) and then returns to the process of S101 again.
- base unit 10 enters a waiting state for pressing the enter button (various buttons 41).
- the determination button is pressed by a store clerk or the like (YES in S105)
- the parent device 10 shifts to the setting mode (S106). That is, in the present embodiment, when the determination button is pressed after receiving the reset signal, the parent device 10 shifts to the setting mode. It should be noted that in the present embodiment, such a procedure is performed because there is a possibility of fraud or mischief when the mode is shifted to the setting mode only by a button operation (pressing the enter button) from the base unit 10. It is configured to step on.
- the master unit 10 transmits a slave unit ID inquiry signal (see FIG. 3B) via the transmission coil / boost coil 55 (S107).
- mobile_unit ID inquiry signal transmits a subunit
- FIG. 3A the slave device ID registration signal includes a store ID, a slave device ID, and a registration signal.
- slave unit 10 After transmitting the slave unit ID inquiry signal, master unit 10 waits until a slave unit ID registration signal is received from slave unit 14 (NO in S108). As shown in FIG. 3A, the slave device ID registration signal includes a store ID, a slave device ID, and a registration signal. If the slave unit ID registration signal has not been received even after the predetermined time has elapsed, the master unit 10 ends this processing after canceling the setting mode.
- the reception signal determination unit 63 analyzes the slave unit ID registration signal and monitors the slave unit to be monitored It is determined whether or not it is a slave unit ID registration signal from 14 (store) (S109). In this determination, the store ID included in the slave unit ID registration signal is compared with the store ID stored in the memory 66 (S110).
- the base unit 10 rings an error sound (S111), and then returns to the process of S108 again to wait for reception of the slave unit ID registration signal. Become.
- the store IDs match YES in S110
- the parent device 10 stores the child device ID included in the child device ID registration signal in the memory 66, and the child device ID becomes a monitoring target. Temporarily registered as identification information of the slave unit 14 (S112).
- the master unit 10 transmits a slave unit store ID match signal via the transmission coil / boost coil 55 (S113). Thereafter, a store clerk or the like performs an operation for registering the slave unit ID for the master unit 10. For example, an operation is performed such as which storage position in the memory 66 the child machine ID to be registered is registered in. In addition, when the number of handset IDs in the registered state exceeds the limit number, an operation such as canceling the handset registration may be performed. As a result of such an operation, for example, the slave device ID temporarily registered in the process of S112 is registered as identification information of the slave device 14 to be monitored (S114).
- the parent device 10 transmits a slave device ID registration completion signal via the transmission coil / boost coil 55 (S115).
- the slave unit 14 Upon receiving this slave unit ID registration completion signal, the slave unit 14 transmits a communication check / operation signal as a response through the transmission antenna 30.
- the communication check / operation signal includes a store ID, a slave unit ID, and a check signal.
- the base unit 10 When the base unit 10 receives the communication check / operation signal (S116), the base unit 10 returns to the process of S108 again, and waits for reception of a slave unit ID registration signal from another slave unit 14.
- the setting mode is canceled when an operation by the store clerk or the like through the various buttons 41 or when a non-operation state has elapsed for a predetermined time.
- the slave unit 14 monitors the theft of the display product 17 via the sensor 16 (NO in S201).
- the handset 14 is removed from the display product shelf 12, the cable 15 is removed from the handset 14, or the sensor 16 is removed from the display product 17 (YES in S201)
- the handset 14 is An alarm operation is started (S202). That is, the handset 14 sounds the buzzer 25 and blinks the alarm LED 22.
- the slave unit 14 generates an alarm signal in the transmission signal generation unit 103 and transmits it to the master unit 10 via the transmission antenna 30 (S203).
- the slave unit 14 After transmitting the alarm signal, the slave unit 14 waits for a reset signal from the remote controller 13 (NO in S204).
- the slave unit 14 analyzes the reset signal in the reception signal determination unit 102 and determines whether or not the reset signal is destined for the own unit. Is determined (S205). As described above, this determination is made by comparing the store ID included in the reset signal with the store ID stored in the memory 106.
- the handset 14 emits an error sound (S208), and then returns to the process of S204 again and enters a reset signal waiting state.
- the slave unit 14 stops the alarm operation (S207), and the transmission signal generation unit 103 generates an alarm stop signal, which is transmitted to the transmission antenna 30.
- the transmission of the alarm stop signal is performed in order to stop the alarm operation started in base unit 10 by the transmission of the alarm signal in S203.
- the master unit 10 monitors the theft of display merchandise via the sensor 16 and the slave unit 14 (NO in S301).
- the master unit 10 analyzes the alarm signal in the reception signal determination unit 63 and monitors the child to be monitored. It is determined whether it is an alarm signal from the machine 14 (store). In this determination, first, the store ID included in the alarm signal is compared with the store ID stored in the memory 66 (S302).
- the base unit 10 returns to the process of S301 again and enters a state of waiting for receiving an alarm signal.
- the base unit 10 causes the reception signal determination unit 63 to include the slave unit ID included in the alarm signal and the slave unit ID stored in the memory 66. Are compared to determine whether or not the alarm signal is from the monitored slave unit 14.
- the parent device 10 returns to the process of S301 again.
- the parent device 10 starts an alarm operation (S306). That is, base unit 10 sounds buzzer 56 and blinks alarm LEDs 46 and 48. At this time, base unit 10 also causes alarm lamp 11 to blink.
- the master unit 10 waits until it receives a reset signal from the remote controller 13 via the reception coil 53 or receives an alarm stop signal from the slave unit 14 via the reception antenna 54. (NO in S307, NO in S308).
- the base unit 10 analyzes the reset signal in the reception signal determination unit 63 and determines whether or not the reset signal is addressed to itself. Is determined (S312). As described above, this determination is made by comparing the store ID included in the reset signal with the store ID stored in the memory 66.
- the base unit 10 rings an error sound (S315) and then returns to the process of S307 again to wait for reception of a reset signal or an alarm stop signal. It becomes.
- base unit 10 stops the alarm operation (S314) and then returns to the process of S301 again.
- the base unit 10 analyzes the alarm stop signal in the reception signal determination unit 63. Then, it is determined whether or not it is an alarm stop signal from the monitored slave unit 14 (S309). This determination is made by comparing the store ID and slave unit ID included in the alarm stop signal with the store ID and slave unit ID stored in the memory 66.
- the child device 14 that is the alarm stop signal transmission source is not the child device to be monitored. Return to processing.
- the parent device 10 stops the alarm operation (S311) and then returns to the process of S301 again.
- signal communication between the slave unit 14 and the master unit 10 is performed wirelessly. Therefore, troublesome wiring between the child device and the parent device can be eliminated. Moreover, even if the communication between both devices is configured wirelessly in this way, there is no restriction on the number of slave units or the location of the slave units, and the same configuration as when using conventional wiring is used. Convenience can be secured.
- signals are exchanged using radio waves in different frequency bands depending on the operation contents (signal contents). That is, a high-frequency signal is used for a signal transmitted to a relatively far distance, and a low-frequency signal is used for a signal transmitted to a relatively short distance. As a result, information with high security is not transmitted to an unnecessary range, so that security can be maintained. Also, a signal that needs to reach a remote location can properly play its role.
- an alarm signal is transmitted from the slave unit 14 to a plurality of (in this case, two) master units 10a and 10b
- the plurality of master units 10a and 10b may be configured to perform an alarm operation.
- the slave unit ID of the slave unit 14d may be registered in advance in each of the memories 66 of the master units 10a and 10b.
- the alarm signal can be transmitted to the parent device 10b that is relatively far away. Therefore, the base unit 10b may be placed, for example, in an office in a store.
- the slave unit 14 may be mounted on the holder 90 for use.
- the holder 90 detachably supports the display product 17 and mounts the slave unit 14 therein.
- the terminal of the cable 85 to which the reed switch 83 is connected is connected to one connection jack 21 in the slave unit 14, and the other connection jack 21 is connected to the other connection jack 21.
- a magnet 89 is affixed to the back surface of the cellular phone (the surface of the cellular phone 17 as viewed from the direction of arrow F), and the affixed magnet 89 is separated from the reed switch 83 provided in the holder 90.
- the information is sent to the slave unit 14 via the cable 85.
- the handset 14 transmits a count signal when the mobile phone 17 (which may be any information device that receives power supply) is picked up by the customer.
- the case where the store ID is included in the various signals and the memories (106, 66) in the parent device 10 and the child device 14 has been described as an example. It is not necessary to include it.
- the display product 17 may be monitored without using the parent device 10. That is, the product may be monitored using only the sensor 16 and the slave unit 14.
- the case where the low-frequency signal is 22 kHz and the high-frequency signal is 315 MHz has been described as an example.
- this numerical value is merely an example and is not limited thereto. Since such a frequency band can be used in different countries, the frequency band used as a high-frequency signal or a low-frequency signal may be determined accordingly.
- the band of the high frequency signal for example, in the case of China, the band of 314 to 316 MHz may be used, in the case of Europe, the band of 868 MHz may be used, and in the case of the United States.
- a band of 433 MHz may be used.
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- Physics & Mathematics (AREA)
- General Physics & Mathematics (AREA)
- Engineering & Computer Science (AREA)
- Theoretical Computer Science (AREA)
- Computer Networks & Wireless Communication (AREA)
- Business, Economics & Management (AREA)
- Emergency Management (AREA)
- Burglar Alarm Systems (AREA)
- Alarm Systems (AREA)
- Emergency Alarm Devices (AREA)
Abstract
Description
ここで、親機10は、受信用コイル53において、リセット信号を受信すると(S101でYES)、受信信号判定部63において、当該リセット信号を解析し、自機宛てのリセット信号であるか否かを判定する(S102)。上述した通り、この判定は、リセット信号内に含まれた店舗IDと、メモリ106に格納された店舗IDとを比較することで行なわれる。
Claims (8)
- 店舗における商品棚に置かれた商品の盗難を監視する防犯システムであって、
前記商品に取り付けられるセンサと、
前記商品棚に取り付けられ、1又は複数の前記センサに配線を介して接続される子機と、
1又は複数の前記子機からの第1の周波数帯を用いた信号を無線で受信することにより前記商品の盗難を監視する親機と
を具備し、
前記子機は、
前記商品からの前記センサの取り外し、前記商品棚からの当該子機の取り外し、又は前記子機からの前記配線の取り外しを検出することにより前記商品の盗難を検出する検出手段と、
前記第1の周波数帯を用いて信号を無線で送信するように構成され、前記検出手段により前記商品の盗難が検出された場合に前記親機に対して警報動作の開始を指示する警報信号を送信する子機側送信手段と、
前記第1の周波数帯とは異なる帯域を示す第2の周波数帯を用いた信号を無線で受信するように構成され、該第2の周波数帯を用いて各種信号を無線で送信するリモート・コントローラからの指示を受信する子機側受信手段と
を具備し、
前記親機は、
前記第1の周波数帯を用いた信号を無線で受信するように構成され、前記子機側送信手段により送信された前記警報信号を受信する第1の親機側受信手段と、
前記第2の周波数帯を用いた信号を無線で受信するように構成され、前記リモート・コントローラからの指示を受信する第2の親機側受信手段と、
前記第1の親機側受信手段により前記警報信号を受信した場合に警報動作を開始する親機側警報手段と
を具備することを特徴とする防犯システム。 - 前記子機は、
前記子機各々を識別するための子機IDを保持する子機側メモリ
を更に具備し、
前記子機側送信手段により前記子機側メモリに保持された子機IDを含む前記警報信号を送信し、
前記親機は、
監視対象となる子機の子機IDを保持する親機側メモリと、
前記第1の親機側受信手段により受信された前記警報信号に含まれた前記子機IDと、前記親機側メモリに保持された前記子機IDとが一致するか否かを判定する判定手段と
を更に具備し、
前記親機側警報手段は、
前記判定手段により前記子機IDが一致すると判定された場合に前記警報動作を開始する
ことを特徴とする請求項1記載の防犯システム。 - 前記子機は、
前記子機IDを生成し、前記子機側メモリに格納する子機ID生成手段
を更に具備し、
前記子機側送信手段により前記生成された子機IDを含む子機ID登録信号を送信し、
前記親機は、
該親機に設けられた所定ボタンが店員により操作されることにより設定モードに移行し、該設定モードに移行した後、前記第1の親機側受信手段により前記子機ID登録信号を受信した場合、当該子機ID登録信号内に含まれた子機IDを監視対象となる子機の子機IDとして前記親機側メモリに登録する
ことを特徴とする請求項2記載の防犯システム。 - 前記子機は、
前記検出手段により前記商品の盗難が検出された場合に警報動作を開始する子機側警報手段
を更に具備し、
前記子機側受信手段により前記リモート・コントローラから前記警報動作の停止を指示するリセット信号を受信した場合に、前記子機側送信手段により前記親機における前記警報動作の停止を指示する警報停止信号を送信し、
前記子機側警報手段は、
前記子機側受信手段により前記リモート・コントローラから前記リセット信号を受信した場合に警報動作を停止し、
前記親機側警報手段は、
前記第1の親機側受信手段により前記警報停止信号を受信した場合に警報動作を停止する
ことを特徴とする請求項1記載の防犯システム。 - 前記親機側警報手段及び前記子機側警報手段による警報動作は、
警報アラームの鳴動又は警報LEDの点灯の少なくとも1つにより行なわれる
ことを特徴とする請求項4記載の防犯システム。 - 前記親機は、
前記第2の周波数帯を用いて信号を無線で送信するように構成され、前記子機に対する設定動作に係わる信号を送信する親機側送信手段
を更に具備し、
前記子機は、
前記親機側送信手段により送信された前記設定動作に係わる信号を前記子機側受信手段により受信する
ことを特徴とする請求項1記載の防犯システム。 - 前記第1の周波数帯を用いた信号は、高周波信号であり、前記第2の周波数帯を用いた信号は、該第1の周波数帯を用いた信号よりも周波数の低い低周波信号である
ことを特徴とする請求項1から6のいずれか1項に記載の防犯システム。 - 前記商品棚に置かれ、前記商品を着脱可能に保持するホルダー
を更に具備し、
前記子機は、前記ホルダーの内部に搭載される
ことを特徴とする請求項1乃至7のいずれか1項に記載の防犯システム。
Priority Applications (6)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2011511930A JP4768895B1 (ja) | 2010-09-17 | 2010-09-17 | 防犯システム |
| PCT/JP2010/005681 WO2012035586A1 (ja) | 2010-09-17 | 2010-09-17 | 防犯システム |
| KR1020137009408A KR101410762B1 (ko) | 2010-09-17 | 2010-09-17 | 방범 시스템 |
| CN201080068623.2A CN103080987B (zh) | 2010-09-17 | 2010-09-17 | 安全系统 |
| EP10857222.3A EP2618317A4 (en) | 2010-09-17 | 2010-09-17 | SECURITY SYSTEM |
| US13/469,164 US8384543B2 (en) | 2010-09-17 | 2012-05-11 | Security system |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PCT/JP2010/005681 WO2012035586A1 (ja) | 2010-09-17 | 2010-09-17 | 防犯システム |
Related Child Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US13/469,164 Continuation US8384543B2 (en) | 2010-09-17 | 2012-05-11 | Security system |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2012035586A1 true WO2012035586A1 (ja) | 2012-03-22 |
Family
ID=44693593
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/JP2010/005681 Ceased WO2012035586A1 (ja) | 2010-09-17 | 2010-09-17 | 防犯システム |
Country Status (6)
| Country | Link |
|---|---|
| US (1) | US8384543B2 (ja) |
| EP (1) | EP2618317A4 (ja) |
| JP (1) | JP4768895B1 (ja) |
| KR (1) | KR101410762B1 (ja) |
| CN (1) | CN103080987B (ja) |
| WO (1) | WO2012035586A1 (ja) |
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| WO2018164090A1 (ja) | 2017-03-06 | 2018-09-13 | タカヤ株式会社 | 盗難防止装置及び盗難防止システム |
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| CN103177521B (zh) * | 2013-02-27 | 2016-04-27 | 杭州朗鸿科技有限公司 | 数码产品展示器的控制方法 |
| US9177463B2 (en) * | 2013-09-17 | 2015-11-03 | Se-Kure Controls, Inc. | Alarm system with smart sensors |
| CN205692300U (zh) | 2013-09-29 | 2016-11-16 | Invue安全产品公司 | 一种用于确保商品不被盗窃的安全系统 |
| JP6307174B2 (ja) * | 2013-12-24 | 2018-04-04 | クアション インク. | データ収集機能を有する物品盗難防止システム及びその方法 |
| US9443404B2 (en) | 2014-02-14 | 2016-09-13 | Invue Security Products Inc. | Tethered security system with wireless communication |
| WO2016133975A1 (en) | 2015-02-18 | 2016-08-25 | Invue Security Products Inc. | System and method for calibrating a wireless security range |
| WO2016210069A1 (en) | 2015-06-25 | 2016-12-29 | Invue Security Products Inc. | Wireless merchandise security system |
| CN106611466B (zh) * | 2015-10-27 | 2019-02-01 | 思创医惠科技股份有限公司 | 一种商品防盗装置 |
| JP2018207350A (ja) * | 2017-06-06 | 2018-12-27 | 株式会社デンソーテン | 通信システム、通信装置および通信方法 |
| CN109697620B (zh) * | 2017-10-23 | 2023-08-04 | 阿里巴巴集团控股有限公司 | 数据处理方法及系统、区域调整方法及装置 |
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| CN109360353A (zh) * | 2018-08-31 | 2019-02-19 | 拉卡拉汇积天下技术服务(北京)有限公司 | 无人售货方法、装置及用于该装置的电子设备 |
| CN110009854B (zh) * | 2018-11-27 | 2021-03-09 | 杭州朗泽安防技术有限公司 | 一种用于商品安全的可预设警示系统 |
| CN110009852B (zh) * | 2018-11-27 | 2021-03-09 | 杭州朗泽安防技术有限公司 | 一种用于商品安全的监控装置 |
| CN110009843B (zh) * | 2018-11-27 | 2021-03-09 | 杭州朗泽安防技术有限公司 | 一种用于商品安全的可交互警示系统 |
| CN110009845B (zh) * | 2018-11-27 | 2021-03-09 | 杭州朗泽安防技术有限公司 | 一种用于商品安全的警示系统 |
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| CN110009844B (zh) * | 2018-11-27 | 2021-03-09 | 杭州朗泽安防技术有限公司 | 一种用于商品安全的警示系统 |
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- 2010-09-17 KR KR1020137009408A patent/KR101410762B1/ko not_active Expired - Fee Related
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Also Published As
| Publication number | Publication date |
|---|---|
| KR101410762B1 (ko) | 2014-06-23 |
| JPWO2012035586A1 (ja) | 2014-01-20 |
| KR20130065713A (ko) | 2013-06-19 |
| US20120218109A1 (en) | 2012-08-30 |
| EP2618317A1 (en) | 2013-07-24 |
| EP2618317A4 (en) | 2014-10-29 |
| CN103080987A (zh) | 2013-05-01 |
| US8384543B2 (en) | 2013-02-26 |
| JP4768895B1 (ja) | 2011-09-07 |
| CN103080987B (zh) | 2015-08-19 |
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