WO2016208054A1 - Procédé de commande d'un système de commande d'appareil, système de commande d'appareil, et adaptateur - Google Patents

Procédé de commande d'un système de commande d'appareil, système de commande d'appareil, et adaptateur Download PDF

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Publication number
WO2016208054A1
WO2016208054A1 PCT/JP2015/068473 JP2015068473W WO2016208054A1 WO 2016208054 A1 WO2016208054 A1 WO 2016208054A1 JP 2015068473 W JP2015068473 W JP 2015068473W WO 2016208054 A1 WO2016208054 A1 WO 2016208054A1
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WO
WIPO (PCT)
Prior art keywords
remote control
adapter
control code
control signal
conversion information
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PCT/JP2015/068473
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English (en)
Japanese (ja)
Inventor
伸行 河野
Original Assignee
中国電力株式会社
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by 中国電力株式会社 filed Critical 中国電力株式会社
Priority to JP2016538118A priority Critical patent/JP5996833B1/ja
Priority to PCT/JP2015/068473 priority patent/WO2016208054A1/fr
Publication of WO2016208054A1 publication Critical patent/WO2016208054A1/fr

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q9/00Arrangements in telecontrol or telemetry systems for selectively calling a substation from a main station, in which substation desired apparatus is selected for applying a control signal thereto or for obtaining measured values therefrom

Definitions

  • the present invention relates to a device control system control method, a device control system, and an adapter.
  • Patent Document 1 describes a communication adapter for connecting an electrical device such as a home appliance to a network.
  • the communication adapter includes a second interface unit for communicating with home appliances, an input / output unit for communicating with a network, and a communication format for basic data when the communication data is basic data.
  • a conversion data rewrite control unit for individually updating the basic data conversion unit and the additional data conversion unit using the update information corresponding to the home appliance acquired via one of them.
  • Patent Document 2 discloses a light receiving element that receives a remote control operation signal from a remote control transmitter and converts it into an electrical signal, a demodulator that demodulates the electrical signal to generate a first remote control code, and a first remote control transmitter.
  • Storage means for storing the remote control code and the second remote control code in correspondence with each other, reading means for decoding the first remote control code and reading the corresponding second remote control code, and the read second remote control code on the remote control Remote control transmission means for modulating a modulation method according to the format of the receiving apparatus and transmitting a remote control operation signal obtained thereby, and controlled so that the remote control operation signal transmitted from the remote control transmission means is input to the remote control receiving apparatus
  • a remote control code conversion adapter having an adapter body configured to be attachable to a device is described.
  • JP 2012-100073 A Japanese Utility Model Publication No. 63-61898 Echonet consortium? ECHONET “Lite Standard” Ver.1.11 (Japanese version) ”, [online], 1997-2015, [Heisei 27 year 6 month month 1 day search], Internet ⁇ URL: http://www.echonet.gr.jp/spec /spec#v111#lite.htm>
  • ECHONET Lite registered trademark
  • HEMS Home Energy Management System
  • the electrical device is a full ECHONET ⁇ Lite device (above (1)), it can be directly connected to a communication network compliant with the above standard. If the electrical device is an ECHONET-Lite-ready device (above (2)), it can be connected to the communication network by adding an ECHONET-Lite middleware adapter.
  • the present invention has been made in view of such a background, and controls an apparatus control system for controlling an electric apparatus that does not comply with a predetermined communication standard from a communication network compliant with the communication standard. It is an object to provide a method, a device control system, and an adapter.
  • one of the present inventions includes a communication terminal connected to a communication network compliant with a predetermined communication standard, and a message sent to the communication network via the communication network.
  • an adapter that controls a non-compliant electrical device that is a non-compliant electrical device according to the contents of the telegram, and a control method for a device control system comprising: An adapter receiving a remote control signal transmitted from a remote control device that controls the non-compliant electrical device; acquiring a remote control code included in the remote control signal; transmitting the acquired remote control code to the communication terminal; , And the communication terminal stores a control code corresponding to the non-compliant electrical device in the communication standard A step of receiving the remote control code sent from the adapter, a step of storing conversion information which is information indicating correspondence between the control code and the remote control code, and a step of transmitting the conversion information to the adapter And the adapter receives the conversion information received from the communication terminal, stores the received conversion information, and the message for the non-comp
  • the device control system is information indicating correspondence between a remote control signal transmitted from a remote control device that controls a non-compliant electric device and a control code corresponding to the non-compliant electric device in a predetermined communication standard. Is generated, and the generated conversion information is stored in the adapter.
  • the adapter acquires a remote control code corresponding to the control code included in the telegram based on the conversion information. Then, a remote control signal including the acquired remote control code is transmitted.
  • Another aspect of the present invention is a control method of the device control system, wherein the adapter is included in the remote control signal and a remote control signal receiving unit that receives a remote control signal transmitted from the non-compliant electrical device. Acquiring information, and transmitting a message in which the information and the control code included in the received message are set to the communication terminal via the communication network.
  • information included in a remote control signal transmitted from a non-compliant electric device can be transmitted to a communication terminal.
  • the predetermined communication standard is, for example, the ECHONET® Lite (registered trademark) standard
  • the control code is, for example, a property code in the ECHONET® Lite (registered trademark) standard.
  • FIG. 1 is a diagram illustrating a schematic configuration of a device control system 1.
  • FIG. This is a hardware configuration of the non-compliant electric device 2.
  • FIG. 1 shows a schematic configuration of a device control system 1 described as an embodiment of the present invention.
  • the device control system 1 includes a HEMS network 5 (HEMS: Home Energy Management System) that is a communication network compliant with the ECHONET Lite (registered trademark) standard, and a HEMS server 6 connected to the HEMS network 5.
  • HEMS network 5 HEMS: Home Energy Management System
  • the HEMS terminal 7 and the adapter 10 and an electric device that does not comply with the ECHONET Lite (registered trademark) standard (hereinafter referred to as non-compatible electric device 2).
  • the device control system 1 may further include one or more electrical devices (hereinafter referred to as “corresponding electrical devices 4”) that are connected to the HEMS network 5 and comply with the ECHONET Lite (registered trademark) standard.
  • the adapter 10 can be regarded as one of the compatible electrical devices 4.
  • Non-compliant electrical equipment 2, compatible electrical equipment 4 is, for example, an air conditioner, AV equipment (television, video deck, audio equipment, various recorders, etc.), electric fan, humidifier, lighting equipment, and the like.
  • AV equipment Television, video deck, audio equipment, various recorders, etc.
  • electric fan electric fan
  • humidifier lighting equipment
  • the HEMS network 5 for example, as a lower layer, a wired or wireless transmission medium (for example, LAN (Local Area Network, PLC (Power Line Communication), wireless LAN, Bluetooth (registered trademark), 920 MHz band wireless communication, etc.))
  • LAN Local Area Network
  • PLC Power Line Communication
  • wireless LAN Wireless Local Area Network
  • Bluetooth registered trademark
  • 920 MHz band wireless communication etc.
  • the non-compliant electrical device 2 is accompanied by a remote control device 3 for remotely controlling the non-compliant electrical device 2.
  • the type of the remote control signal transmitted from the remote control device 3 is not limited, but in the present embodiment, it is an infrared signal.
  • the remote control signal has a predetermined data format including a series of codes. Examples of the data format include an NEC (registered trademark) format, a home-made cooperative (registered trademark) format, and a SONY (registered trademark) format.
  • the HEMS server 6 stores and provides information on power usage in a consumer provided with the HEMS network 5, monitors and controls the status of the corresponding electrical equipment 4, monitors and controls the status of power generation / power sales, and saves power information.
  • Various services such as providing Further, the HEMS server 6 stores information (for example, property information 651 described later) related to ECHONET Lite (registered trademark), and provides the information to the HEMS terminal 7 and the like through the HEMS network 5 as needed.
  • the HEMS terminal 7 transmits a message conforming to ECHONET Lite (registered trademark) to the corresponding electric device 4 through the HEMS network 5 (hereinafter referred to as an “ECHONET Lite frame”).
  • ECHONET Lite registered trademark
  • the corresponding electric device 4 can be controlled.
  • the HEMS terminal 7 can control the non-compliant electric device 2 by transmitting a message to the adapter 10 via the HEMS network 5.
  • the adapter 10 is a remote controller equivalent to the remote control code of the remote control signal transmitted from the remote control device 3 attached to the non-compliant electric device 2 according to the content of the ECHONET Lite (registered trademark) message sent from the HEMS terminal 7. Send a remote control signal containing the code.
  • the adapter 10 stores later-described conversion information 50 that associates a property code that is a control code in ECHONET Lite (registered trademark) with a remote control code, and uses this conversion information 50 to convert a property code to a remote control code. Or vice versa.
  • Fig. 2 shows the hardware configuration of the non-compliant electrical device 2.
  • the non-compliant electric device 2 includes a microcomputer 21, an input device 22, a display device 23, a control mechanism 24, and a remote control communication device 25.
  • the microcomputer 21 includes a processor and a storage element.
  • the input device 22 is a user interface for the user to set and operate the non-compliant electric device 2, and is, for example, a button, a switch, a touch panel, or the like.
  • the display device 23 is a user interface that displays information such as the operating state of the non-compliant electric device 2, and is, for example, an LCD (Liquid Crystal Display) or an LED (Light Emitting Diode).
  • the control mechanism 24 is configured by an electronic element, a mechanical part, or the like that realizes the function of the non-compliant electric device 2 and is controlled by the microcomputer 21.
  • the remote control communication device 25 receives a remote control signal sent from the remote control device 3 or the adapter 10, and transmits information included in the remote control signal to the microcomputer 21. In addition, the remote control communication device 25 transmits information sent from the microcomputer 21 as a remote control signal.
  • FIG. 3 shows the hardware configuration of the remote control device 3.
  • the remote control device 3 includes a microcomputer 31, an input device 32, a display device 33, and a remote control communication device 34.
  • the microcomputer 31 includes a processor and a storage element.
  • the input device 32 is a user interface for the user to set and operate the non-compliant electric device 2, and is, for example, a button or a switch.
  • the display device 23 is a user interface that displays an operation state or the like of the non-compliant electric device 2, and is, for example, an LCD.
  • the remote control communication device 34 transmits information sent from the microcomputer 31 as a remote control signal.
  • the remote control communication device 34 receives a remote control signal sent from the non-compliant electrical device 2 and transmits information included in the remote control signal to the microcomputer 31.
  • FIG. 4 shows the hardware configuration of the corresponding electrical device 4.
  • the corresponding electrical device 5 includes a microcomputer 41, an input device 42, a display device 43, a control mechanism 44, and a HEMS communication device 45.
  • the microcomputer 41 includes a processor and a storage element.
  • the input device 42 is a user interface for the user to set and operate the corresponding electric device 4, and is, for example, a button, a switch, a touch panel, or the like.
  • the display device 43 is a user interface that displays information such as the operating state of the corresponding electrical device 4, and is, for example, an LCD or LED.
  • the control mechanism 44 is configured by an electronic element, a mechanical part, or the like that realizes the function of the corresponding electrical device 4, and is controlled by the microcomputer 41.
  • the HEMS communication device 45 performs communication via the HEMS network 5.
  • FIG. 5 shows the hardware configuration of the HEMS server 6.
  • the HEMS server 6 includes a processor 61, a storage device 62, an input device 63, a display device 64, and a HEMS communication device 65.
  • the processor 61 is configured using, for example, a CPU (Central Processing Unit) or an MPU (Micro Processing Unit).
  • the storage device 62 is a RAM (Random Access Memory), a ROM (Read Only Memory), an NVRAM (Non Volatile RAM), a hard disk drive, an SSD (Solid State Drive) or the like, and stores programs and data.
  • the input device 63 is a user interface (touch panel, keypad, keyboard, mouse, etc.) for inputting information.
  • the display device 64 is a user interface that provides information to the user, such as an LCD or LED.
  • the HEMS communication device 65 performs communication via the HEMS network 5.
  • FIG. 6 shows functions of the HEMS server 6 and data stored in the HEMS server 6.
  • the HEMS server 6 includes functions of various functional units 611 and a property information providing unit 612. These functions are realized by the processor 61 reading and executing a program stored in the storage device 62, or by hardware such as ASIC (Application Specific Specific Integrated Circuit) included in the HEMS server 6.
  • the HEMS server 6 stores property information 651.
  • the HEMS server 6 manages the property information 651 in a database realized by, for example, DBMS (DataBase Management System).
  • DBMS DataBase Management System
  • the various functional units 611 are various functions provided in the HEMS server 6, for example, accumulation and provision of information on power usage in the consumer, status monitoring and control of the corresponding electrical device 4, and status monitoring and control of the power generation / power sales status, Provide functions such as providing power saving information.
  • the property information providing unit 612 provides property information 651 as needed to other devices in response to a request from another device connected to the HEMS network 5 such as the HEMS terminal 7 or voluntarily.
  • the property information 651 includes information on property codes, which are codes used to instruct the setting and control of the above-described device object, which are defined for each device object (ECHONET device object) in the ECHONET® Lite® (registered trademark) standard.
  • a property code is set as, for example, an ECHONET Lite property (EPC) in a message transmitted and received between devices connected to the HEMS network 5 via the HEMS network 5.
  • FIG. 7 shows an example of the property information 651.
  • the property information 651 is composed of one or more records including the property name 6511 and property code 6512 items.
  • One record corresponds to one property in the ECHONET Lite (registered trademark) standard.
  • the property name 6511 a property name in the ECHONET Lite (registered trademark) standard is set.
  • the property code 6512 a property code in the ECHONET Lite (registered trademark) standard is set.
  • FIG. 8 shows the hardware configuration of the HEMS terminal 7.
  • the HEMS terminal 7 includes a processor 71, a storage device 72, an input device 73, a display device 74, and a HEMS communication device 75.
  • the processor 71 is configured using, for example, a CPU or MPU.
  • the storage device 72 is a RAM, ROM, NVRAM, hard disk drive, SSD or the like, and stores programs and data.
  • the input device 73 is a user interface (touch panel, keypad, keyboard, mouse, etc.) for inputting information.
  • the display device 74 is a user interface that provides information to the user, such as an LCD.
  • the HEMS communication device 75 provides a communication function via the HEMS network 5.
  • FIG. 9 shows the function of the HEMS terminal 7 and the data stored in the HEMS terminal 7.
  • the HEMS terminal 7 includes various function units 711, property information acquisition units 712, property information storage units 713 (control code storage units), remote control code reception units 714, conversion information storage units 715, and conversion information transmissions.
  • Each function of the unit 716 and the non-corresponding electric device control unit 717 is provided.
  • These functions are realized by the processor 71 reading out and executing a program stored in the storage device 72 or by hardware such as ASIC provided in the HEMS terminal 7.
  • the HEMS terminal 7 is, for example, a smartphone, these functions can be realized by introducing (installing) a dedicated application to the HEMS terminal 7, for example.
  • the HEMS terminal 7 stores property information 751 and conversion information 752.
  • the various function units 711 provide various functions provided in the HEMS terminal 7, for example, functions such as setting, status monitoring, and control of the corresponding electrical device 4.
  • the property information acquisition unit 712 acquires property information from the HEMS server 6 via the HEMS network 5.
  • the property information storage unit 713 stores the property information acquired by the property information acquisition unit 712 as property information 751.
  • the remote control code receiving unit 714 receives a remote control code from the adapter 10 via the HEMS network 5.
  • the conversion information storage unit 715 stores conversion information 752 that is information indicating the correspondence between the property code included in the property information 751 and the remote control code.
  • the conversion information transmission unit 716 transmits the conversion information 752 to the adapter 10 as needed.
  • the non-compliant electric device control unit 717 generates a message for controlling the non-compliant electric device 2 according to the operation input received from the user, and transmits the generated message to the adapter 10.
  • FIG. 10 shows an example of the conversion information 752.
  • the conversion information 752 is composed of one or more records in which the property name 7521, the property code 7522, and the remote control code 7523 are associated with each other.
  • the property name 7521 is set to the property name of the property information of the device object corresponding to the non-compliant electric device 2 in ECHONET Lite (registered trademark).
  • the property code 7522 the property code of the property information of the device object corresponding to the incompatible electric device 2 is set.
  • the remote control code 7523 a remote control code corresponding to the property code 7522 is set.
  • FIG. 11 shows the hardware configuration of the adapter 10.
  • the adapter 10 includes a microcomputer 11, a HEMS communication device 12, and a remote control communication device 13.
  • the microcomputer 11 includes a processor and a storage element.
  • the HEMS communication device 12 performs communication via the HEMS network 5.
  • the remote control communication device 25 transmits and receives a remote control signal to / from the non-compliant electric device 2 and the remote control device 3.
  • FIG. 12 shows the function of the adapter 10 and the data stored in the adapter 10.
  • the adapter 10 includes functions of a conversion information setting unit 111, a remote control signal transmission unit 112, and a notification processing unit 113.
  • the conversion information setting unit 111 includes functions of a remote control signal reception unit 1111, a remote control signal analysis unit 1112, a remote control code transmission unit 1113, a conversion information reception unit 1114, and a conversion information storage unit 1115.
  • the remote control signal transmission unit 112 includes functions of a telegram reception unit 1121, a code conversion unit 1122, and a remote control signal transmission unit 1123.
  • the notification processing unit 113 includes an information acquisition unit 1131 and a message transmission unit 1132. These functions are realized by the microcomputer 11 executing a program or by hardware such as ASIC provided in the adapter 10. As shown in the figure, the adapter 10 stores conversion information 50.
  • the conversion information setting unit 111 generates and stores conversion information 50 based on the conversion information 752 sent from the HEMS terminal 7.
  • the remote control signal receiving unit 1111 receives a remote control signal sent from the remote control device 3.
  • the remote control signal analysis unit 1112 analyzes the remote control signal received by the remote control signal reception unit 1111 and acquires the remote control code included in the remote control signal.
  • the remote control code transmission unit 1113 transmits the remote control code acquired by the remote control signal analysis unit 1112 to the HEMS terminal 7 via the HEMS network 5.
  • the conversion information receiving unit 1114 receives the conversion information 752 sent from the HEMS terminal 7.
  • the conversion information storage unit 1115 generates and stores the conversion information 50 based on the conversion information 752 received by the conversion information reception unit 1114.
  • FIG. 13 shows an example of the conversion information 50.
  • the conversion information 50 is composed of one or more records in which the property name 511, the property code 512, and the remote control code 513 are associated with each other.
  • the property name 511 is set to the property name of the property information of the device object corresponding to the non-compatible electric device 2 in ECHONET Lite (registered trademark).
  • the property code 512 the property code of the property information of the device object corresponding to the non-compliant electric device 2 is set.
  • the remote control code 513 a remote control code corresponding to the property code 512 is set.
  • the remote control signal transmission unit 112 acquires the remote control code corresponding to the property code included in the message sent from the HEMS terminal 7 from the conversion information 50, and transmits the remote control signal including the acquired remote control code. Send.
  • the message receiving unit 1121 receives a message sent from the HEMS terminal 7 via the HEMS network 5.
  • the code conversion unit 1122 acquires a remote control code corresponding to the property code included in the message received by the message reception unit 1121 from the conversion information 50.
  • the remote control signal transmission unit 1123 transmits a remote control signal including the remote control code acquired by the code conversion unit 1122.
  • the notification processing unit 113 (for example, the property code is assigned to the non-compliant electric device 2.
  • a message in which the above information is acquired from the non-compliant electric device 2 and the acquired information is set. Is transmitted to the HEMS terminal 7 via the HEMS network 5.
  • the information acquisition unit 1131 is included in the remote control signal received from the non-compliant electric device 2 when the remote control signal receiving unit 111 receives a message in which a property code for requesting information on the non-compliant electric device 2 is received. Get information.
  • the message transmission unit 1132 transmits the message in which the acquired information and the property code are set to the HEMS terminal 7 via the HEMS network 5.
  • FIG. 14 is a flowchart for explaining processing related to the setting of conversion information 50 (hereinafter referred to as conversion information setting processing S1400) performed in the device control system 1.
  • conversion information setting processing S1400 processing related to the setting of conversion information 50 (hereinafter referred to as conversion information setting processing S1400) performed in the device control system 1.
  • conversion information setting processing S1400 will be described with reference to FIG.
  • the HEMS terminal 7 starts communication with the adapter 10 via the HEMS network 5 (S1411, S1451). For example, the HEMS terminal 7 may transmit a broadcast to the HEMS network 5 and wait for a response of the adapter 10 (search for the adapter 10), and may start communication with the adapter 10 that has responded.
  • the HEMS terminal 7 receives, from the user, designation of an ECHONET (registered trademark) device object (hereinafter, referred to as a device object) of the non-compatible electric device 2 to be set via the input device 73.
  • ECHONET registered trademark
  • FIG. 15A shows an example of a screen (hereinafter, referred to as a device object designation screen 1501) displayed by the HEMS terminal 7 upon the reception.
  • the HEMS terminal 7 Upon receiving the designation of the device object (for example, the name or identifier of the device object), the HEMS terminal 7 requests the property information of the device object from the HEMS server 6 by designating the received device object via the HEMS network 5. (S1413).
  • the HEMS server 6 When the HEMS server 6 receives the request (S1471), it transmits the property information of the device object specified in the request to the HEMS terminal 7 via the HEMS network 5 (S1472).
  • the HEMS terminal 7 When the HEMS terminal 7 receives the property information from the HEMS server 6 (S1414), the HEMS terminal 7 displays a setting screen for the conversion information 50 describing the property name and property code included in the received property information (S1415). Specification of the property to be received is received from the user (S1416).
  • FIG. 15B shows an example of the setting screen (hereinafter referred to as property designation screen 1502).
  • the user can designate a property to be set by selecting one of the check boxes 1551.
  • the HEMS terminal 7 When the HEMS terminal 7 receives the property specification, the HEMS terminal 7 transmits a remote control signal reception instruction to the adapter 10 via the HEMS network 5 (S1417).
  • the adapter 10 When the adapter 10 receives the reception instruction (S1452), it waits for reception of the remote control signal sent from the remote control device 3. The user performs an operation corresponding to the property designated in S1415 on the remote control device 3 with the remote control signal transmission unit of the remote control device 3 facing the adapter 10. As a result, a remote control signal including a remote control code corresponding to the above operation is transmitted toward the adapter 10.
  • the adapter 10 When the adapter 10 receives the remote control signal (S1453), the adapter 10 analyzes the received remote control signal to acquire the remote control code included in the remote control signal (S1454), and transmits the acquired remote control code to the HEMS terminal 7 ( S1455).
  • FIG. 15C shows an example of a screen (hereinafter referred to as a conversion information confirmation screen 1503) displayed on the HEMS terminal 7 at this time.
  • the HEMS terminal 7 determines whether or not a predetermined end operation (for example, an operation for selecting the confirmation button 1561 in FIG. 15C) has been performed on the input device 73 (S1420). If it is determined that a predetermined end operation has been performed (S1420: YES), the HEMS terminal 7 transmits the stored conversion information 752 to the adapter 10 via the HEMS network 5 (S1421). It should be noted that the process may proceed to S1421 upon completion of setting for all the properties of the property information received in S1413. If the HEMS terminal 7 determines that the predetermined end operation has not been performed (S1420: NO), the process returns to S1416, and the same process as described above is performed for the unset property.
  • a predetermined end operation for example, an operation for selecting the confirmation button 1561 in FIG. 15C
  • the adapter 10 When the adapter 10 receives the conversion information 752 from the HEMS terminal 7 (S1456), the adapter 10 stores the received conversion information 752 as the conversion information 50 (S1457).
  • FIG. 16 is a flowchart for explaining processing (hereinafter referred to as device control processing S1600) performed in the device control system 1 when the user operates the HEMS terminal 7 to control the non-compliant electric device 2.
  • the device control process S1600 will be described below with reference to FIG.
  • the HEMS terminal 7 displays a screen for controlling the non-compliant electric device 2 (for example, a screen provided with a button equivalent to the remote control device 3) (S1611), and inputs a control instruction for the non-compliant electric device 2 from the user. Is received (S1612).
  • the HEMS terminal 7 transmits a message in which the property code corresponding to the received control instruction is set to the adapter 10 via the HEMS network 5 (S1613).
  • the adapter 10 Upon receiving the message (S1651), the adapter 10 compares the property code set in the message with the conversion information 50 to obtain a remote control code corresponding to the property code (S1652). The remote control signal including it is transmitted (S1653).
  • the non-compliant electric device 2 When the non-compliant electric device 2 receives the remote control signal (S1671), it executes processing (setting, control, etc.) according to the received remote control signal (S1672).
  • FIG. 17 shows processing performed in the device control system 1 (hereinafter referred to as information notification processing) when a property code for requesting information on the non-compliant electric device 2 is set in the message transmitted from the HEMS terminal 7 to the adapter 10.
  • information notification processing a property code for requesting information on the non-compliant electric device 2 is set in the message transmitted from the HEMS terminal 7 to the adapter 10.
  • the non-compliant electric device 2 transmits a remote control signal including information (S1771), and the adapter 10 receives this (S1751).
  • the adapter 10 acquires the above information from the remote control signal (S1752), and the HEMS terminal 7 transmits the message in which the acquired information and the property code included in the message acquired in S1651 are set via the HEMS network 5. (S1753).
  • the HEMS terminal 7 When the HEMS terminal 7 receives the message (S1711), the HEMS terminal 7 acquires the information from the received message (S1712). For example, the HEMS terminal 7 displays the acquired information on the display device 74.
  • the device control system 1 includes the remote control signal transmitted from the remote control device 3 that controls the non-compliant electric device 2 and the non-compliant electric device 2 in the ECHONET Lite (registered trademark) standard.
  • Conversion information 50 which is information indicating the correspondence with the property code of the corresponding device object is generated, and the conversion information 50 is stored in the adapter 10.
  • the adapter 10 converts the property code into a remote control code based on the conversion information 50, and includes the converted remote control code in the remote control signal. To send.
  • the device control system 1 of the present embodiment it is possible to realize a mechanism for controlling the non-compliant electrical device 2 from the HEMS network 5 conforming to the above-mentioned standard. For this reason, for example, it is possible to easily control the existing non-compliant electric device 2 in a house or the like from the HEMS network 5.
  • the device control system 1 it is possible to realize a mechanism for transmitting the information included in the remote control signal transmitted from the non-compliant electric device 2 to the communication terminal 7 using the conversion information 50.
  • the remote control signal transmitted from the remote control device 3 is an infrared signal
  • the remote control signal may be another type of radio signal such as a 2.4 GHz band radio signal or a 920 MHz band radio signal. It may be.
  • the HEMS server 6, the HEMS terminal 7, and the adapter 10 do not necessarily have to be independent hardware.
  • all or some of the functions of the HEMS terminal 7 may be provided in the adapter 10.
  • the property information 6 does not necessarily have to be provided from the HEMS server 6, and may be stored in advance in the HEMS terminal 7 or the adapter 10, for example.
  • the conversion information 50 only needs to be accessible from the adapter 10, and the conversion information 50 may exist in a place other than the adapter 10.
  • the communication network 5 may conform to a standard other than the ECHONETCHOLite (registered trademark) standard.

Abstract

L'invention concerne un procédé de commande d'un système de commande d'appareil (1) qui comprend un adaptateur (10) et un terminal HEMS (7) destiné à la connexion à un réseau HEMS (5) conforme à la norme ECHONET Lite (marque déposée). L'adaptateur (10) reçoit un signal de commande à distance en provenance d'un dispositif de commande à distance (3) d'un appareil électrique (2) non pris en charge qui ne prend pas en charge la norme, l'adaptateur (10) acquérant un code de commande à distance et transmettant le code de commande à distance acquis au terminal HEMS (7). Le terminal HEMS (7) transmet des informations de conversion (752) indiquant une correspondance entre un code de propriété conforme à la norme et le code de commande à distance à l'adaptateur (10), l'adaptateur (10) stockant cette information (752) en tant qu'information de conversion (50). Lors de la réception d'un télégramme pour l'appareil électrique (2) non pris en charge par le biais du réseau HEMS (5), l'adaptateur (10) acquiert un code de commande à distance correspondant au code de propriété inclus dans le télégramme sur la base de l'information de conversion (50), transmet un signal de commande à distance contenant le code de commande à distance acquis, et commande l'appareil électrique (2) non pris en charge.
PCT/JP2015/068473 2015-06-26 2015-06-26 Procédé de commande d'un système de commande d'appareil, système de commande d'appareil, et adaptateur WO2016208054A1 (fr)

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JP2016538118A JP5996833B1 (ja) 2015-06-26 2015-06-26 機器制御システムの制御方法、機器制御システム、及びアダプタ
PCT/JP2015/068473 WO2016208054A1 (fr) 2015-06-26 2015-06-26 Procédé de commande d'un système de commande d'appareil, système de commande d'appareil, et adaptateur

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PCT/JP2015/068473 WO2016208054A1 (fr) 2015-06-26 2015-06-26 Procédé de commande d'un système de commande d'appareil, système de commande d'appareil, et adaptateur

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2019117587A (ja) * 2017-12-27 2019-07-18 パナソニックIpマネジメント株式会社 制御装置およびプログラム

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007164612A (ja) * 2005-12-15 2007-06-28 Matsushita Electric Works Ltd 遠隔制御システム
JP2008294637A (ja) * 2007-05-23 2008-12-04 Mitsubishi Electric Corp 集中コントローラ、設備機器制御システム
JP2012009935A (ja) * 2010-06-22 2012-01-12 Panasonic Electric Works Co Ltd リモートコントロール変換アダプタ装置
JP2013255108A (ja) * 2012-06-07 2013-12-19 Sharp Corp コントローラ、制御端末、遠隔制御システムおよび通信方法をプロセッサに実行させるためのプログラム
JP5739002B2 (ja) * 2013-03-08 2015-06-24 株式会社東芝 通信装置、及び通信システム

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007164612A (ja) * 2005-12-15 2007-06-28 Matsushita Electric Works Ltd 遠隔制御システム
JP2008294637A (ja) * 2007-05-23 2008-12-04 Mitsubishi Electric Corp 集中コントローラ、設備機器制御システム
JP2012009935A (ja) * 2010-06-22 2012-01-12 Panasonic Electric Works Co Ltd リモートコントロール変換アダプタ装置
JP2013255108A (ja) * 2012-06-07 2013-12-19 Sharp Corp コントローラ、制御端末、遠隔制御システムおよび通信方法をプロセッサに実行させるためのプログラム
JP5739002B2 (ja) * 2013-03-08 2015-06-24 株式会社東芝 通信装置、及び通信システム

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2019117587A (ja) * 2017-12-27 2019-07-18 パナソニックIpマネジメント株式会社 制御装置およびプログラム
JP7042439B2 (ja) 2017-12-27 2022-03-28 パナソニックIpマネジメント株式会社 制御装置およびプログラム

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