WO2013131497A1 - Procédé d'appariement, système de commande, et dispositif - Google Patents
Procédé d'appariement, système de commande, et dispositif Download PDFInfo
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- WO2013131497A1 WO2013131497A1 PCT/CN2013/072823 CN2013072823W WO2013131497A1 WO 2013131497 A1 WO2013131497 A1 WO 2013131497A1 CN 2013072823 W CN2013072823 W CN 2013072823W WO 2013131497 A1 WO2013131497 A1 WO 2013131497A1
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- identifier
- controlled
- button
- control device
- command
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Classifications
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- G—PHYSICS
- G08—SIGNALLING
- G08C—TRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
- G08C17/00—Arrangements for transmitting signals characterised by the use of a wireless electrical link
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L41/00—Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
-
- G—PHYSICS
- G08—SIGNALLING
- G08C—TRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
- G08C2201/00—Transmission systems of control signals via wireless link
- G08C2201/20—Binding and programming of remote control devices
Definitions
- the present invention relates to the field of communication technologies, and in particular, to a binding pairing method, a control system, and a device.
- Zigbee is a short-range wireless communication technology that can be applied to control systems such as wireless lighting.
- control devices and controlled devices are included, and the buttons on the control device need and be controlled.
- the control device performs binding pairing, the behavior or state of the controlled device can be controlled by triggering a button of the control device.
- the binding pairing refers to a process of controlling the state or behavior of a button or a group of controlled devices by a button on the control device, specifically, by issuing a button of the control device to issue an identification query (Identify Query) command. If there is a controlled device in the network in the Identify state, the control device issues an Add Group If Identify command or a Store Scene command to the controlled device, including the control device. logo. In this way, the controlled device can know the identification of the corresponding button of the control device, and execute the control command issued by operating the corresponding button on the control device, thereby realizing the binding of the corresponding button of the controlled device and the control device.
- Identify Query identification query
- the controlled device needs to be operated to enter the identification state, but when the controlled device enters the identification state for more than the preset time, the controlled device automatically exits the identification state. , causing the binding pairing between the control device and the controlled device to fail.
- the embodiments of the present invention provide a binding pairing method, a control system, and a device, which avoid the influence of the state of the controlled device on the binding pairing.
- the embodiment of the present invention provides a binding pairing method, which is used for binding and binding a control device in a control system with a controlled device, including:
- the embodiment of the present invention provides a binding pairing device, which is used for binding and binding a control device and a controlled device in a control system, including:
- a control acquisition unit configured to acquire a button identifier on a control device in the control system
- a controlled acquisition unit configured to acquire information of the controlled device in the control system
- the first binding determining unit is configured to determine that the key identifier acquired by the control acquiring unit corresponds to the first binding relationship of the at least one controlled device;
- the information sending unit is configured to send the ⁇ identifier to the corresponding controlled device according to the first binding relationship determined by the first binding determining unit.
- An embodiment of the present invention provides a control system, including a network management device, a control device, and a controlled device.
- the network management device is configured to acquire the identifier of the control device, and obtain information about the controlled device in the control system; and determine the button identifier corresponding button and the at least one controlled device The first binding relationship is sent to the corresponding controlled device according to the first binding relationship;
- the control device is configured to send a control command to the controlled device according to the information about the first binding relationship
- the controlled device is configured to execute a control command by corresponding pressing according to the button identifier.
- the control device and the controlled device are paired and paired by the network management device, and the controlled device does not need to be operated (for example, to enter the identification state), but the control system is directly acquired first.
- the button identifier of the button on the control device is used as a unique event trigger source, and then the controlled device that the source triggers the source control is selected, and the event trigger source is the button identifier corresponding button and at least one controlled device.
- the logical binding is performed, and finally, according to the established logical binding relationship, the ⁇ identifier is sent to the corresponding controlled device, thereby realizing the binding pairing between the control device and the controlled device.
- FIG. 1 is a schematic diagram showing the logical structure of a control system in an embodiment of the present invention
- FIG. 2 is a flowchart of a binding pairing method according to an embodiment of the present invention
- FIG. 3 is a flowchart of a method for acquiring an identifier of a ⁇ on a control device according to an embodiment of the present invention
- FIG. 4 is a flowchart of a binding pairing method in a control system of a Zigbee network in a specific application embodiment of the present invention
- FIG. 5 is a schematic structural diagram of a binding pairing device according to an embodiment of the present invention.
- FIG. 6 is a schematic structural diagram of another binding pairing device according to an embodiment of the present invention.
- FIG. 7 is a schematic structural diagram of another binding pairing device according to an embodiment of the present invention.
- the present invention provides a binding pairing method applied to the control system as shown in FIG. (such as a wireless lighting control system), the system includes a network management device, at least one control device (m control devices in FIG. 1), and at least one controlled device (n controlled devices in FIG. 1), wherein
- the network management device can manage the information of the control device and the controlled device in the system; there are generally multiple physical buttons on the control device, and the state or behavior of the controlled device can be controlled by operating the buttons of the control device, such as the control device.
- the controlled devices 1 and 2 are controlled, the control device 2 controls the controlled devices 1 and n, and the control device m controls the controlled device 1. And communication between devices in the system is performed using Zigbee protocol, Bluetooth, and the like.
- the network management device can perform binding binding on the control device and the controlled device.
- the flowchart is shown in FIG. 2, and includes:
- Step 101 Acquire the ⁇ identifier on the control device in the control system, and obtain information about the controlled device in the control system.
- the method of the embodiment is performed for a control device (such as a remote controller or a temperature controller) and a controlled device (such as a Zigbee dimmer or a Zigbee switch) that have been added to the control system.
- a control device such as a remote controller or a temperature controller
- a controlled device such as a Zigbee dimmer or a Zigbee switch
- Binding configuration The control device may include multiple physical buttons.
- the button identifier is obtained, the command that includes the ⁇ identifier may be sent by operating the control device.
- the network management device After the network management device receives the command, the network management device can obtain the corresponding command.
- the button identifier can uniquely identify the information of a button on the control device.
- the network management device can issue a search command to search all the controlled devices in the current control system, thereby obtaining information of each controlled device.
- Step 102 Determine a first binding relationship between the corresponding button of the button identifier and the at least one controlled device.
- a button on the control device corresponds to one or more controlled devices, and may also determine certain portions of a corresponding controlled device (such as in a Zigbee dimmer) Two). You can select the binding relationship between the device and the controlled device on the interface provided by the network management device.
- Step 103 Send the ⁇ identifier to the corresponding controlled device according to the first binding relationship.
- the network management device needs to send the identification to the corresponding controlled device for controlled setting.
- the identification of the button that controls it is known, and the control command issued by operating the corresponding button on the control device is processed.
- the network management device may further store the first correspondence between the identifier and the identifier of the at least one control device according to the first binding relationship, thereby facilitating management and query.
- steps 101 to 103 are a process of binding and pairing a certain button of a control device with at least one controlled device, and other buttons of the control device (or buttons of other control devices) and When the binding of the controlled device is paired, it can be performed according to the above steps 101 to 103.
- the control device and the controlled device are bound and paired by the network management device, and the controlled device does not need to be operated (for example, to enter the identification state), but directly obtains directly Controlling the button identifier of the button on the device in the control system, using it as a unique event trigger source, and then selecting the controlled device that the event trigger source desires to control, and the event trigger source is the button identifier corresponding button and at least one subject
- the control device performs logical binding, and sends the ⁇ identifier to the corresponding controlled device according to the established logical binding relationship, thereby implementing binding binding between the control device and the controlled device.
- the network management device may perform the following steps, including:
- Step 104 After receiving the identifier query command sent by the control device, generate an Identify Response command and return it to the control device, and perform step 105 or 106.
- the user can control the device to broadcast the identifier query command in the control system by operating the control device.
- the network management device receives the identifier query command, it is not required to check whether the control device enters the identifier state. , can directly generate an identity response command and return to the control device.
- buttons of the control device have two working modes, namely, a device (Scene) and a scene (Scene) working mode
- the control device may send the identifier by operation.
- Group command, network management device Step 105 is executed.
- the control device can control a group of controlled devices to be in the same state at the same time, for example, both are on or off; in the scene working mode, when the control device receives the identifier response command,
- the storage scenario command can be sent by operating the button, and the network management device performs step 105.
- the control device can control a group of controlled devices to be in different states at the same time, for example, some devices are in an open state, and another device is in an Close status, etc.
- Step 105 If the network management device receives the identifier join group command sent by the control device, the network management device learns the ⁇ identifier of the control device according to the group ID (Group ID) included in the group join command.
- the group ID included in the command to join the group is used to identify the group that the controlled device needs to join, and the button corresponding to the command to send the group to join the group.
- Step 106 If the network management device receives the storage scenario command sent by the control device, the network management device learns the identifier of the device on the control device according to the scene ID (Scene ID).
- the scene identifier included in the storage scenario command is used to identify the scenario that the controlled device needs to be added, and the button corresponding to the command to send the storage scenario is identified.
- the network management device may further determine a second binding relationship between the obtained button identifier corresponding button and the controlled information of the at least one controlled device in the control system, and according to The second binding relationship sends the controlled information to the corresponding controlled device.
- the controlled information refers to information such as status or behavior of the controlled device, such as an on or off state, or information such as reduced brightness; and since the first binding relationship has been determined in step 102, the control device is The button has a binding relationship with the controlled device, where the corresponding controlled device refers to the controlled device bound to the ⁇ 2 in the second binding relationship.
- the user may also select the binding relationship between the button and the controlled information of the controlled device on the interface provided by the network management device, and the network management device sends the controlled information to The controlled device, such that the controlled device receives the control command issued by operating the corresponding button, and is in a state corresponding to the controlled information or performs a behavior corresponding to the controlled information.
- the network management device may further store, according to the second binding relationship, a second correspondence between the identifier and the controlled information of the at least one control device.
- the user can operate the button of the control device, and the control device broadcasts a control command to the control system where the control device is located.
- the control device After the control device receives the control command, it finds that the button identifier (such as the group identifier or the scene identifier) in the control command is consistent with the button identifier acquired in the binding pairing process, and then executes the control command.
- the network management device can also send a Group Remove All command or a Scene Remove All command to the controlled device, so that the controlled device deletes the controlled device after receiving the clear group command or clearing the scene command.
- the key signature of the original record is a group remove All command or a Scene Remove All command.
- the user may update the first binding relationship and/or the second binding relationship through the network management device, specifically:
- the user can modify the controlled device corresponding to each button on the interface provided by the network management device, for example, changing the control device 2 and 3 of the button 1 to "the control of the button 1 is controlled.
- the devices 5 and 6 and according to the updated first binding relationship, send the identifier to the corresponding controlled device, for example, send the button identifier of the button 1 to the controlled devices 5 and 6, and tell the controlled device 5 and 6 is controlled by button 1.
- the user may modify the controlled information of the controlled device corresponding to a certain button on the interface provided by the network management device, and send the updated controlled information to the corresponding received device.
- the control device causes the controlled device to execute the control command according to the updated controlled information after receiving the control command issued by operating the button on the control device.
- the following describes a binding pairing method provided by an embodiment of the present invention by using a specific implementation embodiment.
- the method in this embodiment is applied to a lighting control system of a Zigbee network, and the structure diagram of the system may be as shown in FIG.
- the Zigbee network includes one control device, that is, a remote controller, and five controlled devices, that is, three Zigbee dimmers and two Zigbee switches.
- the flowchart of the method in this embodiment is as shown in FIG. 4, and includes:
- Step 201 the network management device can capture the button identifiers of the six buttons on the remote controller according to the method shown in FIG. 3, and the capture result is as shown in Table 1 below.
- Step 202 The network management device scans and discovers five controlled devices in the current Zigbee network, namely, Zigbee dimmers 3 to 5 and Zigbee switches 1 to 2, as shown in Table 2 below.
- Step 203 The network management device determines two scenarios as shown in Table 3 below, each of which includes five controlled devices and controlled information thereof, wherein the controlled information includes a selector state and a brightness. Percentage (the brightness percent), the results are shown in Table 3 below,
- Step 204 The network management device determines the correspondence between the button corresponding to the M-mark obtained in step 201 and the scene determined in step 203, and the button 1 controls the scene 1, and the triggering requires a short press (Short Press). Button 2 controls scene 2. As shown in Table 4 below: Table 4
- Step 205 The network management device may separately send the corresponding relationship between the ⁇ identifier of the ⁇ 1 and the controlled information of each controlled device in the scenario 1 to each controlled device.
- the control command is sent, and the identifier of the button 1 is included.
- the controlled device receives the control command, if the button 1 included in the control command is identified and acquired in step 205, If the button identifiers are consistent, the control commands can be executed according to the controlled information corresponding to the button identifiers. For example, the controlled device of 4-Crridor is at 80% brightness.
- the embodiment of the present invention further provides a binding pairing device, that is, a network management device in the system shown in FIG. 1, and a schematic structural diagram is shown in FIG. 5, which is used for binding a control device and a controlled device in the control system.
- Matching including:
- the control obtaining unit 10 is configured to acquire an extinction identifier of the control device in the control system
- the controlled acquisition unit 11 is configured to acquire information about the controlled device in the control system
- the first binding determining unit 12 is configured to determine a first binding relationship between the identifier corresponding button acquired by the control acquiring unit 10 and the at least one controlled device;
- the information sending unit 13 is configured to send the button identifier to the corresponding controlled device according to the first binding relationship determined by the first binding determining unit 12, where the information of the first binding relationship includes The button identifies the information of the controlled device acquired by the controlled acquisition unit 11 and the like.
- the information transmitting unit 13 needs to send the button identifier to the corresponding controlled device to The controlled device learns the identity of the button that controls it, and processes the control commands issued by operating the corresponding button on the control device.
- the control device and the controlled device are bound and paired by the network management device (that is, the binding pairing device), and the controlled device does not need to be operated (for example, to enter the identification state), and Firstly, by directly acquiring the button identifier of the button on the control device in the control system by using the control acquiring unit 10 in the binding pairing device, it is used as a unique event trigger source, and then the controlled device that the event trigger source desired to control is selected. And the first binding determining unit 12 logically binds the event trigger source, that is, the button identifier corresponding button, to the at least one controlled device, and finally the information sending unit 13 sends the identifier to the established logical binding relationship.
- the binding pairing device may include a first storage unit 14, a first updating unit 15, and a clearing unit, in addition to the structure shown in FIG. 16, and the control acquisition unit 10 may include a generation command transmitting unit 110 and an identification acquiring unit 111, where:
- the generating command sending unit 110 is configured to: after receiving the identifier query command sent by the control device, generate an identifier response command and return to the control device.
- the generation command sending unit 110 may not need to check whether the control device enters the identification state, but directly generates an identification response command and returns it to the control device.
- the identifier obtaining unit 111 is configured to receive an identifier join group command sent by the control device, and learn the button identifier of the button on the control device according to the group identifier included in the identifier join group command, where The group ID is the button identifier.
- the first storage unit 14 is configured to store a first correspondence between the button identifier and the identifier of the at least one control device according to the first binding relationship determined by the first binding determining unit 12, thereby facilitating management And query.
- the first updating unit 15 is configured to update the first binding relationship determined by the first binding determining unit 12, specifically, the first updating unit 15 may provide an interface to the user, so that the user may modify the interface.
- the controlled device corresponding to each button.
- the clearing unit 16 is configured to send a clear group command or a clear scene command to the controlled device, so that after the controlled device receives the clear group command or the clear scene command, the deleted device is deleted on the controlled device.
- the key identifier of the record is configured to update the first binding relationship determined by the first binding determining unit 12, specifically, the first updating unit 15 may provide an interface to the user, so that the user may modify the interface.
- the controlled device corresponding to each button.
- the clearing unit 16 is configured to send a clear group command or a clear scene command to the controlled device, so that after the controlled device receives the clear group command or the clear scene command, the deleted device is deleted on the controlled device.
- the key identifier of the record is configured to update the first binding relationship determined by the first binding determining unit 12,
- the icon may be sent by the operation button.
- the identifier obtaining unit 111 obtains the button identifier after receiving the identifier joining the group command.
- the first binding determining unit 12 determines the first binding relationship between the key identifier corresponding to the button and the control device, and the first storage unit 14 can store the first correspondence according to the first binding relationship.
- the clearing unit 16 deletes the key identification originally recorded on the controlled device.
- the first update unit 15 may update the first binding relationship, and the information sending unit 13 may send the key identifier and the first binding relationship not only after the first binding determining unit 12 determines the first binding relationship.
- the information may also be used to send the updated button identifier to the corresponding controlled device after the first update unit 15 updates the first binding relationship.
- the binding pairing device may include a second binding determining unit 17 and a controlled information sending unit 18 in addition to the structure shown in FIG. 5 .
- the second storage unit 19, the second update unit 20, and the clearing unit 16, and the control acquisition unit 10 may include a generation command transmitting unit 110 and an identification obtaining unit 111, where:
- the identifier obtaining unit 111 is configured to receive a storage scenario command sent by the control device, and learn, according to the scenario identifier included in the storage scenario command, a button identifier of a button on the control device, where the scenario identifier is a button Logo.
- the second binding determining unit 17 is configured to: when the identifier obtaining unit 111 receives the storage scenario command sent by the control device, determine the button identifier corresponding button and at least one controlled device in the control system The second binding relationship of the controlled information;
- the controlled information sending unit 18 is configured to send the controlled information to the corresponding controlled device according to the second binding relationship.
- the second storage unit 19 is configured to store, according to the second binding relationship, a second correspondence between the identifier and the controlled information of the at least one control device.
- the second updating unit 20 is configured to update the second binding relationship. Specifically, the second updating unit 20 may provide an interface to the user, so that the user modifies the controlled device corresponding to each button on the interface. Controlled information.
- the generation command sending unit 110 does not check whether the controlled device enters the identification state, but directly generates the identifier response command and returns to the control device, and then presses the button of the control device.
- the storage scenario command may be sent by using the operation button, and the identifier obtaining unit 111 obtains the identifier after receiving the storage scenario command.
- the second binding determining unit 17 in this embodiment may determine a second binding relationship between the corresponding button of the button identifier acquired by the identifier acquiring unit 111 and the controlled information of the control device, and the second storage unit 19 may be tied according to the second binding unit The relationship stores the second correspondence, and the clearing unit 16 deletes the key identifier originally recorded on the controlled device.
- the second update unit 20 may update the second binding relationship, and after the second binding unit 20 updates the second binding relationship by the controlled information sending unit 18, the second update unit 20 is updated.
- the controlled information of the control device is sent to the corresponding controlled device.
- the apparatus of this embodiment may also include the first storage unit 14 and the first update unit 15 as shown in FIG.
- the embodiment of the present invention further provides a control system.
- the schematic diagram of the logical structure can be as shown in FIG. 1 , including a network management device, a control device, and a controlled device, where:
- the network management device is configured to acquire the identifier of the control device, and obtain information about the controlled device in the control system; and determine the button identifier corresponding button and at least one of the controlled devices.
- the first binding relationship is sent to the corresponding controlled device according to the first binding relationship;
- the control device is configured to send a control command to the controlled device according to the information about the first binding relationship
- the controlled device is configured to execute a control command by corresponding pressing according to the button identifier.
- the network management device in this embodiment may be a binding pairing device as shown in any one of FIG. 5 to FIG. 7, and each unit of the network management device and the control device and the controlled device may be as shown in FIG. 2 and FIG. The method shown is for binding pairing and is not mentioned here.
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Abstract
Les modes de réalisation de la présente invention concernent le domaine de la technologie des télécommunications, et divulguent un procédé d'appariement, un système de commande et un dispositif. Dans le procédé des présents modes de réalisation, un dispositif de gestion de réseau obtient d'abord directement l'identifiant de bouton d'un bouton sur un dispositif de commande d'un système de commande et configure ledit identifiant de manière qu'il soit la seule source de déclenchement d'événement, et sélectionne le dispositif destiné à être commandé par la source de déclenchement d'événement, apparie logiquement la source de déclenchement d'événement, à savoir le bouton correspondant à l'identifiant de bouton, à au moins un dispositif à commander, et transmet l'identifiant de bouton au dispositif correspondant à commander en fonction de l'appariement logique établi, ce qui permet l'appariement physique entre le dispositif de commande et le dispositif à commander. Il n'est plus nécessaire de tenir compte des facteurs tels que l'effet de l'état et la période d'état d'identification du dispositif à commander pendant les processus d'appariement. De plus, aucune opération physique n'est nécessaire sur le dispositif de commande et le dispositif à commander si les informations d'appariement doivent être modifiées ultérieurement. Ainsi, les processus d'appariement sont simplifiés.
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