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WO2018121662A1 - Control system, method, and device based on wireless switch - Google Patents

Control system, method, and device based on wireless switch Download PDF

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Publication number
WO2018121662A1
WO2018121662A1 PCT/CN2017/119330 CN2017119330W WO2018121662A1 WO 2018121662 A1 WO2018121662 A1 WO 2018121662A1 CN 2017119330 W CN2017119330 W CN 2017119330W WO 2018121662 A1 WO2018121662 A1 WO 2018121662A1
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WO
WIPO (PCT)
Prior art keywords
wireless switch
control device
instruction
circuit
wireless
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
Application number
PCT/CN2017/119330
Other languages
French (fr)
Chinese (zh)
Inventor
程小科
兰弋洋
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Wuhan Linptech Co Ltd
Original Assignee
Wuhan Linptech Co Ltd
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 Wuhan Linptech Co Ltd filed Critical Wuhan Linptech Co Ltd
Publication of WO2018121662A1 publication Critical patent/WO2018121662A1/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/04Programme control other than numerical control, i.e. in sequence controllers or logic controllers
    • G05B19/042Programme control other than numerical control, i.e. in sequence controllers or logic controllers using digital processors
    • G05B19/0428Safety, monitoring
    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C17/00Arrangements for transmitting signals characterised by the use of a wireless electrical link
    • G08C17/02Arrangements for transmitting signals characterised by the use of a wireless electrical link using a radio link
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B2219/00Program-control systems
    • G05B2219/20Pc systems
    • G05B2219/26Pc applications
    • G05B2219/2642Domotique, domestic, home control, automation, smart house

Definitions

  • the present invention relates to the field of communications technologies, and in particular, to a wireless switch based control system, method and apparatus.
  • existing smart home products generally use wired or wireless methods for transmission control.
  • the wireless switch needs to cooperate with its associated control device to control the opening or closing of the corresponding controlled device.
  • the technical problem to be solved by the present invention is to provide a wireless switch-based control system, method and device.
  • the wireless switch and the intelligent terminal can simultaneously send instructions to the control device to control the controlled device more conveniently and quickly.
  • the first technical solution adopted by the present invention is to provide a wireless switch-based control system, including: a control device for coupling and receiving a control device; and a wireless switch capable of at least independently controlling the control
  • the device sends a first instruction to control the controlled device by using the control device;
  • the smart terminal is at least configured to send a second instruction to the control device to control the controlled device by using the control device, where
  • the control device, the wireless switch, and the intelligent terminal transmit the first instruction and the second instruction by using a networking manner.
  • the second technical solution adopted by the present invention is to provide a wireless switch, including: a processor, a memory, a communication circuit, and a human-machine circuit; the processor and the memory, the communication, respectively The circuit and the human-machine circuit are coupled; wherein the human-machine circuit is configured to generate a trigger signal, and the processor processes the trigger signal to obtain an instruction, and the instruction is sent to the control device by the communication circuit; The processor is further configured to establish a networking relationship with the control device and the smart terminal by using the communication circuit, where the memory is used to store information of the networking.
  • the third technical solution adopted by the present invention is to provide a control device that cooperates with a wireless switch, including: a processor, a memory, and a communication circuit; and the processor respectively communicates with the memory and the communication
  • the circuit is coupled to the circuit, wherein the processor is configured to establish a networking relationship with the wireless switch and the smart terminal by using the communication circuit, and at least receive and process an instruction of the wireless switch and/or an instruction of the smart terminal,
  • the processor is further configured to send the instruction to the controlled device to control the controlled device; the memory is configured to store the networking information.
  • the fourth technical solution adopted by the present invention is: an intelligent terminal that cooperates with a wireless switch, including: a processor, a memory, and a communication circuit; and the processor and the memory and the communication circuit respectively Coupling, wherein the processor is configured to establish networking information with the wireless switch and the control device by using the communication circuit, and send an instruction to the control device by using the communication circuit to control the controlled device by using the control device,
  • the memory is configured to store the networking information.
  • the fifth technical solution adopted by the present invention is: a wireless switch-based control method, the control method includes: the wireless switch establishes a networking relationship with a control device and an intelligent terminal; The trigger signal generated by the machine circuit is used to obtain an instruction; and the instruction is wirelessly transmitted to the control device through its communication circuit to control the controlled device through the control device.
  • the wireless switch-based control system of the present invention comprises a control device, a wireless switch and an intelligent terminal; wherein the control device is used to couple the control device; the wireless switch can be used at least for independent direction.
  • the control device sends the first instruction; the intelligent terminal is at least operable to send the second instruction to the control device.
  • the control device can receive the first instruction from the wireless switch and the second instruction from the smart terminal in a time-sharing or simultaneous manner to control the corresponding controlled device at the same time or in a time-sharing manner, so that the controlled device can be controlled more conveniently and quickly.
  • FIG. 1 is a schematic structural diagram of an embodiment of a wireless switch-based control system according to the present invention
  • FIG. 2 is a schematic structural view of a first embodiment of a wireless switch according to the present invention.
  • FIG. 3 is a schematic structural view of a second embodiment of the wireless switch of the present invention.
  • FIG. 4 is a schematic structural view of a third embodiment of the wireless switch of the present invention.
  • FIG. 5 is a schematic structural view of a fourth embodiment of a wireless switch according to the present invention.
  • FIG. 6 is a schematic structural diagram of an embodiment of a control device for a wireless switch according to the present invention.
  • FIG. 7 is a schematic structural diagram of an implementation manner of an intelligent terminal with a wireless switch according to the present invention.
  • FIG. 8 is a schematic flow chart of an embodiment of a method for controlling a wireless switch according to the present invention.
  • FIG. 9 is a schematic flow chart of another embodiment of a method for controlling a wireless switch according to the present invention.
  • FIG. 10 is a schematic structural diagram of an embodiment of an apparatus having a storage function according to the present invention.
  • the present invention provides a control system, method and device based on a wireless switch.
  • a control system method and device based on a wireless switch.
  • the control system based on the wireless switch of the present embodiment includes: a control device, a wireless switch, and an intelligent terminal; wherein the control device is configured to couple the control device, and the wireless switch can be used at least to independently send the first command to the control device to be controlled by the control device.
  • the controlled device; the smart terminal is at least operable to send a second instruction to the control device to control the controlled device by the control device.
  • control device is coupled to at least one controlled device, and can establish a wireless connection with the controlled device through a network, or establish a wired connection with the controlled device through a cable.
  • control device also establishes a wireless connection with the wireless switch and the smart terminal to receive a corresponding instruction to control the controlled device according to the received command.
  • FIG. 1 is a schematic structural diagram of an embodiment of a wireless switch based control system according to the present invention.
  • the wireless switch-based control system 10 of the present embodiment includes a wireless switch 101, a control device 102, and a smart terminal 103.
  • the control device 102 is configured to couple the plurality of controlled devices 11 to control the opening or closing or other operations of the corresponding controlled device 11 according to the received instructions.
  • the control device 102 and the controlled device 11 are wired connected by a cable.
  • the control device 102 and the controlled device 11 are wirelessly connected through a network.
  • the controlled device 11 is a smart device, such as a refrigerator, an air conditioner, a washing machine, a television, etc., and may also be other smart home devices, such as smart curtains, smart lights.
  • the wireless switch 101 can at least independently transmit a first command to the control device 102 to control the controlled device 11 through the control device 102; the smart terminal 103 can send at least the second command to the control device 102 to pass the control device 102 controls the controlled device 11.
  • the wireless switch 101, the control device 102, and the smart terminal 103 establish a networking relationship, so that the wireless switch 101 and the control device 102 transmit the first instruction through networking; the intelligent terminal 103 and the control device 102 transmit through the networking mode.
  • Two instructions For example, the control device 102, the wireless switch 101, and the smart terminal 103 have the MESH Bluetooth networking function, and the first instruction and the second instruction are correspondingly transmitted through the MESH Bluetooth networking mode.
  • the MESH network is a “wireless mesh network”, which is a “multi-hop” wireless network. It can communicate with each other based on a network of distributed wireless access points. It is a dynamic and continuously expanding network. Architecture, any two devices can maintain wireless connectivity.
  • the MESH network has the advantages of broadband high speed and high spectral efficiency, and has outstanding features such as dynamic self-organization, self-configuration, and self-maintenance. Then, the wireless switch 101, the control device 102, and the smart terminal 103 can implement the function of the ad hoc network to transmit information.
  • the wireless switch 101 does not require external power supply, and is a passive wireless switch. After the control device 102 establishes a networking relationship with the smart terminal 103, the wireless switch 101 generates power through the near field communication method and receives the MESH Bluetooth networking information from the smart terminal 103. At this time, the wireless switch 101, the control device 102, and the smart terminal 103 are successfully networked and have the same networking information.
  • the networking information of the wireless switch 101 may be changed according to the change of the networking information of the smart terminal 103, that is, the networking information of the wireless switch 101 may be changed, so that it may be networked with different smart terminals 103.
  • the wireless switch 101 and the smart terminal 103 implement near-field communication through electromagnetic induction coupling of the radio frequency portion in the spectrum.
  • electromagnetic induction coupling of the radio frequency portion in the spectrum not only electrical energy but also networking information can be acquired. It has achieved the effect of energy saving and environmental protection.
  • control device 102 is used in conjunction with the wireless switch 101, and is pre-configured with corresponding networking information, such as a Bluetooth MESH network name and a network access password.
  • networking information such as a Bluetooth MESH network name and a network access password.
  • the user can reset the Bluetooth MESH network name and the network access password through the smart terminal 103 to update the networking information of the smart terminal 103 and the control device 102.
  • the wireless switch 101 acquires the MESH Bluetooth networking information from the smart terminal 103 by means of near field communication, so that the same networking information is established between the three.
  • the wireless switch 101 can also establish communication with the control device 102 directly to obtain networking information.
  • the wireless switch 101 and the smart terminal 103 can respectively send commands to the control device 102 at different times; or can send commands to the control device 102 at the same time to simultaneously control the control device 102, thereby implementing the wireless switch 101 and the smart device.
  • the terminal 103 simultaneously controls the functions of the control device 102.
  • the control device 102 is coupled to at least two controlled devices 11, wherein one of the controlled devices 11 is an electric light, and the other controlled device 11 is an air conditioner.
  • the control device 102 simultaneously receives the first command of the wireless switch 101 to turn on the electric light
  • the smart terminal 103 turns on the second command of the air conditioner
  • the control device 102 simultaneously controls the opening of the electric light and the opening of the air conditioner.
  • the wireless switch-based control system of the present embodiment includes a control device, a wireless switch, and an intelligent terminal; wherein the control device is configured to be coupled to the control device; and the wireless switch is configured to send the first command to the control device independently
  • the smart terminal can be used at least to send a second command to the control device.
  • the control device can receive the first instruction from the wireless switch and the second instruction from the smart terminal in a time-sharing or simultaneous manner to control the corresponding controlled device at the same time or in a time-sharing manner, so that the controlled device can be controlled more conveniently and quickly.
  • FIG. 2 is a schematic structural view of a first embodiment of a wireless switch according to the present invention.
  • the wireless switch 20 of the present embodiment includes a human-machine circuit 201, a processor 202, a communication circuit 203, and a memory 204.
  • the processor 202 is a Bluetooth IC having only the MESH transmission function or a Bluetooth IC having both the MESH transmission function and the MESH reception function, or other processors having the MESH function.
  • the processor 202 is coupled to the human machine circuit 201, the communication circuit 203, and the memory 204, respectively.
  • the human machine circuit 201 is configured to generate a trigger signal
  • the processor 202 processes the trigger signal to obtain an instruction, and wirelessly sends an instruction to the control device through the communication circuit 203;
  • the processor 202 is further configured to use the communication circuit 203 and the control device.
  • the intelligent terminal establishes a networking relationship
  • the storage 204 is configured to store networking information.
  • the communication circuit 203 includes a first wireless circuit 2031 and a second wireless circuit 2032, wherein the first wireless circuit 2031 includes near field communication (Near Field)
  • the communication (NFC) circuit is configured to receive networking information from the smart terminal;
  • the second wireless circuit 2032 includes a Bluetooth circuit and is coupled to the processor 202.
  • the Bluetooth circuit is a Bluetooth antenna circuit and a peripheral circuit designed in cooperation with the Bluetooth IC.
  • the memory 204 is an EEPROM (Electrically-Erasable) Programmable Read-Only Memory, electronic erasable rewritable read-only memory).
  • memory 204 can be other memory having similar functionality, such as flash memory or the like.
  • the memory 204 has an NFC read/write function and an MCU read/write function. Therefore, the first wireless circuit 203 can perform read and write operations on the memory 204, and the processor 202 can also perform read and write operations on the memory 204.
  • the memory 204 includes a first communication port 2041 supporting an NFC read/write function and a second communication port 2042 supporting an MCU read/write function. The first communication port 2041 is coupled to the first wireless circuit 2031 and the second communication port 2042.
  • the processor 202 is coupled.
  • the power port 2043 is obtained, and the power port 2043 is coupled to the first wireless circuit 2031 to obtain the electrical energy generated by the first wireless circuit 2031.
  • the first wireless circuit 2031 can generate electrical energy through a communication signal when communicating with the smart terminal, and the memory 204 acquires electrical energy through the power port 2043.
  • the processor 202 reads the networking information from the memory 204 in response to the trigger signal generated by the human-machine circuit, and generates a first instruction according to the networking information; and then sends the second instruction to the control device through the second wireless circuit 2032. First instruction.
  • the first wireless circuit 2031 is not coupled to the processor 202, and is further coupled to the second wireless circuit 2032 to further provide power to the second wireless circuit 2032 when the wireless switch 20 communicates with the smart terminal, and The second command from the smart terminal is sent to the control device by the first wireless circuit 2031 and the second wireless circuit 2032.
  • the smart terminal controls the device through the second wireless circuit 2032 of the wireless switch 20 with the second command.
  • the wireless switch 20 is equivalent to a network node through which the intelligent terminal transmits a second command to the control device.
  • the wireless switch 20 includes a power generation component (not shown) coupled to the processor 202, the second wireless circuit 2032, and the memory 204 to provide power to the processor 202, the second wireless circuit 2032, and the memory 204.
  • a power generation component (not shown) coupled to the processor 202, the second wireless circuit 2032, and the memory 204 to provide power to the processor 202, the second wireless circuit 2032, and the memory 204.
  • the wireless switch 20 of the present embodiment further includes an energy storage circuit (not shown) coupled to the power generation component. And between the processor 202, the second wireless circuit 2032, and the memory 204.
  • FIG. 3 is a schematic structural diagram of a second embodiment of the wireless switch of the present invention.
  • the wireless switch 30 of the present embodiment is basically the same as the basic structure of the wireless switch of the first embodiment and the communication between the control device and the intelligent terminal, and the difference lies in the specific structure of the human-machine circuit and the human-machine circuit and the power generation component. The connection between the two.
  • the wireless switch 30 of the present embodiment includes a human machine circuit 301, a power generation component 302, a tank circuit 303, a processor 304, a memory 305, a first wireless circuit 306, and a second wireless circuit 307.
  • the power generating component 302 is coupled to the energy storage circuit 303, and the energy storage circuit 303 is coupled to the processor 304, the second wireless circuit 307, and the memory 305, respectively.
  • the power generation component 302 is a push-type power generation component that converts received mechanical energy into electrical energy.
  • the human-machine circuit 301 includes a plurality of buttons 3011, and the number of the buttons 3011 can be designed according to actual conditions.
  • Each button 3011 is coupled to the processor 304 for receiving a trigger signal.
  • At least one button 3011 corresponds to the power generating component 302. When a certain button 3011 is pressed, the power generating component 302 is pressed against the top and pressed to generate electric energy, and the energy storage circuit 303 is used to store the power and supply the processor 304 and the second.
  • the wireless circuit 307 and the memory 305 are powered.
  • a trigger signal is generated correspondingly, and the processor 304 receives and processes the trigger signal to obtain an instruction, and further sends the signal to the control device through the second wireless circuit 307.
  • a trigger signal is generated correspondingly
  • the processor 304 receives the trigger signal, a corresponding command is generated according to the trigger signal.
  • the correspondence between the button 3011 and the command generated by the processor 304 can be:
  • Pressing a different button 3011 generates a different command, for example, pressing one of the buttons 3011 to generate an instruction to turn on the first light; pressing another button 3011 to generate an instruction to turn off the first light.
  • Pressing different positions of the same button 3011 generates different commands, for example, pressing the upper end of a button 3011 to generate an instruction to turn off the first lamp; pressing the lower end of the button 3011 to generate an instruction to turn on the first lamp.
  • buttons 3011 may also generate different commands, for example, pressing the button 3011 for the first time, generating an instruction to turn on the first lamp; and pressing the button 3011 for the second time, generating an instruction to turn off the first lamp; The button 3011 is pressed three times to generate an instruction to turn on the first lamp (ie, the cycle switch mode).
  • the correspondence between the push button 3011 and the command generated by the processor 304 can be adjusted accordingly.
  • FIG. 4 is a schematic structural view of a third embodiment of the wireless switch of the present invention.
  • the wireless switch 40 of the present embodiment is basically the same as the basic structure of the wireless switch of the first embodiment and the communication between the control device and the intelligent terminal, and the difference lies in the specific structure of the human-machine circuit and the human-machine circuit and the power generation component.
  • the connection relationship between the two is different from the wireless switch of the second embodiment in the connection relationship between the human-machine circuit and the power generation component.
  • the human-machine circuit 401 of the wireless switch 40 of the present embodiment includes a first button 4011 and a plurality of second buttons 4012.
  • the first button 4011 corresponds to the power generating component 402.
  • the top button 4011 is pressed against the top button.
  • the power generation component 402 in turn, generates electrical energy.
  • a trigger signal is generated correspondingly, and the processor 304 receives and processes the trigger signal to obtain an instruction, and further sends the command to the control device through the second wireless circuit.
  • the wireless switch of the present embodiment separately sets a button for generating electricity.
  • the button can be pressed frequently to generate power, and the control is not interfered with any controlled
  • the state of the device avoids the situation of repeatedly turning on or off a controlled device.
  • FIG. 5 is a schematic structural diagram of a fourth embodiment of the wireless switch of the present invention.
  • the wireless switch 50 of the present embodiment is basically the same as the basic structure of the wireless switch of the first embodiment and the communication between the control device and the intelligent terminal, and the difference lies in the specific structure of the human-machine circuit and the power-generating component;
  • the wireless switch of the third embodiment differs in the specific configuration of the power generating component.
  • the power generating component of the wireless switch 50 of the present embodiment specifically includes a solar module 501.
  • the solar module 501 When the wireless switch 50 is exposed to light, the solar module 501 generates power and stores the generated electrical energy in a storage circuit for the processor, the memory, and the second wireless. Circuit power supply.
  • the power generating component of the wireless switch 50 specifically includes a sloshing power generating component that triggers the sloshing power generating component to generate power when the wireless switch 50 is shaken.
  • the power generating component of the wireless switch 50 can also include the solar component 501 and the sloshing power generating component.
  • the power generation component can also be other power generation units.
  • the wireless switch of the present embodiment adopts a method of generating electricity by solar power or sloshing, and can effectively utilize resources, and can generate power without triggering a button, thereby reducing power generation operation of the user. , improved user experience.
  • the wireless switch of the present embodiment can establish a networking relationship with the control device and the intelligent terminal, and send corresponding instructions to the control device according to the trigger signal to ensure simultaneous or timed control of the smart terminal and the wireless switch.
  • the corresponding controlled device makes it easier and faster to control the controlled device.
  • FIG. 6 is a schematic structural diagram of an embodiment of a control device for a wireless switch according to the present invention.
  • the control device 60 of the present embodiment is configured to couple the control device and control the corresponding controlled device according to the received command.
  • the control device 60 includes a memory 601, a processor 602, and a communication circuit 603.
  • the processor 602 is coupled to the memory 601 and the communication circuit 603, respectively.
  • Processor 602 is a Bluetooth IC with MESH network functionality or other processor with MESH network functionality.
  • the processor 602 is configured to establish a networking relationship with the wireless switch and the smart terminal through the communication circuit 603, and at least receive and process the instruction of the wireless switch and/or the instruction of the intelligent terminal, and the processor 602 is further configured to
  • the controlled device sends an instruction to control the controlled device; the memory 601 is used to store the networking information.
  • the communication circuit 603 includes a Bluetooth antenna circuit
  • the control device 60 establishes a networking relationship with the intelligent terminal through the communication circuit 603, and the wireless switch communicates with the intelligent terminal to obtain corresponding networking information or the wireless switch communicates with the control device 60 to obtain Corresponding networking information ensures that the control device 60, the wireless switch, and the intelligent terminal have the same networking information.
  • the control device 60 of the present embodiment can separately receive and process the commands of the wireless switch and the commands of the intelligent terminal at different times, and can simultaneously receive and process the wireless at the same time.
  • the instructions of the switch and the instructions of the intelligent terminal that is, the control device 60 can respond to the instructions of the different master devices in a time-sharing or simultaneous manner.
  • control device of the present embodiment can establish a networking relationship with the wireless switch and the smart terminal, and simultaneously respond to the instructions of the intelligent terminal and the wireless switch in time to ensure that the smart terminal and the wireless switch are simultaneously or time-sharing. Controlling the corresponding controlled device makes it easier and faster to control the controlled device.
  • FIG. 7 is a schematic structural diagram of an implementation manner of an intelligent terminal with a wireless switch according to the present invention.
  • the smart terminal 70 of the present embodiment includes a memory 701, a processor 702, and a communication circuit 703.
  • the processor 702 is coupled to the memory 701 and the communication circuit 703, respectively.
  • the processor 702 may specifically be a Bluetooth IC or a Bluetooth IC having a MESH network function, or another processor having a MESH network function.
  • the smart terminal 70 includes a smart phone, a tablet computer, a personal digital assistant, and a smart wearable device.
  • the processor 702 is configured to establish a networking relationship with the wireless switch and the control through the communication circuit 703, and send a command to the control device through the communication circuit 703 to control the control device to be controlled by the control device.
  • the device 701 is configured to store networking information.
  • the communication circuit 703 includes a first wireless circuit and a second wireless circuit, wherein the first wireless circuit specifically includes an NFC circuit, the second wireless circuit includes a Bluetooth antenna circuit, and the smart terminal 70 establishes a group with the control device by using the second wireless circuit.
  • the network relationship is stored and the corresponding networking information is stored in the memory 701.
  • the smart terminal 70 establishes a communication link with the wireless switch through the first wireless circuit to transmit the networking information to the wireless switch, so that the smart terminal 70, the control device, and the wireless switch establish the same networking information.
  • the smart terminal 70 of the present embodiment can send an instruction to the control device to control the corresponding controlled device when the wireless switch does not send an instruction to the control device;
  • the wireless switch sends an instruction to the control device while sending an instruction to the control device to implement the function of the control device in a time-sharing manner or at the same time.
  • the smart terminal of the present embodiment can establish a networking relationship with the wireless switch and the control device, so that the wireless switch or the smart terminal sends commands to the control device simultaneously or in a timely manner to ensure the intelligent terminal and the wireless switch. Controlling the corresponding controlled device at the same time or in a timely manner can control the controlled device more conveniently and quickly.
  • FIG. 8 is a schematic flowchart of an embodiment of a method for controlling a wireless switch according to the present invention.
  • the control method of the present embodiment is based on the perspective of a wireless switch.
  • the wireless switch-based control method according to the present embodiment is applied to the wireless switch of any of the above embodiments.
  • the wireless switch establishes a networking relationship with the control device and the intelligent terminal.
  • the wireless switch After the smart terminal establishes a networking relationship with the control device, the corresponding networking information is stored in the memory.
  • the wireless switch When the wireless switch establishes a communication connection with the intelligent terminal, the wireless switch can receive the group from the child terminal. Web information.
  • the wireless switch is a passive wireless switch and the wireless switch has a MESH transmission network function, and the wireless switch establishes a connection with the intelligent terminal through the first wireless circuit to receive and store the networking information from the intelligent terminal, and the control device. Establish a networking relationship, so that the wireless switch establishes a networking relationship with the control device and the intelligent terminal.
  • the NFC circuit of the wireless switch establishes communication with the NFC circuit of the smart terminal to generate electrical energy for the wireless switch to work, and acquires networking information through the communication loop established by the NFC circuit, and stores the acquired networking information on the memory thereof.
  • the wireless switch acquires an external power source through the transmission line during the pairing process.
  • the wireless switch includes a USB interface, and the communication circuit of the wireless switch acquires power through the USB interface, so that it can receive the signal, thereby receiving the networking information sent by the intelligent terminal, and the control device and the The intelligent terminal establishes a networking relationship and stores the networking information in a memory. Subsequent to actual use, external power supply is not required, but power generation is performed by its power generation component, and then the networking information is read from the memory, and the command is sent through the communication circuit.
  • the human-machine circuit of the wireless switch when the human-machine circuit of the wireless switch is triggered, the human-machine circuit generates a corresponding trigger signal to the processor of the wireless switch, and the wireless switch
  • the processor processes the trigger signal, acquires networking information on the memory, and generates a corresponding control instruction according to the networking information and the trigger signal.
  • 803 wirelessly transmits an instruction to the control device through its communication circuit to control the controlled device through the control device.
  • the wireless switch transmits an instruction to the control device through its communication circuit to control the controlled device through the control device.
  • the wireless switch transmits an instruction to the control device through its second wireless circuit, wherein the second wireless circuit includes a Bluetooth circuit, that is, the wireless switch transmits an instruction to the control device via the Bluetooth technology to control the controlled device through the control device.
  • the wireless switch can establish a networking relationship with the control device and the intelligent terminal, and send corresponding instructions to the control device according to the trigger signal to ensure the intelligent terminal and the wireless device. Switching on the control device corresponding to the simultaneous or time-sharing control makes it easier and faster to control the controlled device.
  • FIG. 9 is a schematic flow chart of another embodiment of a method for controlling a wireless switch according to the present invention.
  • the control method of the present embodiment is derived from the perspective of the control device.
  • the wireless switch-based control method of the present embodiment is applied to the control device of any of the above embodiments.
  • the control device establishes a networking relationship with the smart terminal and the wireless switch.
  • control device includes a memory, a processor, and a communication circuit.
  • the processor is coupled to the memory and the communication circuit, respectively.
  • the processor is a Bluetooth IC with MESH network function or other processor with MESH network function.
  • control device establishes a networking relationship with the wireless switch and the smart terminal through the communication circuit.
  • the communication circuit includes a Bluetooth antenna circuit
  • the control device establishes a networking relationship with the intelligent terminal through the communication circuit
  • the wireless switch communicates with the intelligent terminal to obtain corresponding networking information or the wireless switch communicates with the control device to obtain a corresponding networking.
  • Information ensures that the control device, wireless switch, and smart terminal have the same networking information. And store the networking information in the memory.
  • the control device receives and processes at least an instruction of the wireless switch and/or an instruction of the smart terminal.
  • the control device receives and processes at least the command of the wireless switch and/or the instruction of the smart terminal. Specifically, after the network is successfully connected to the wireless switch and the smart terminal, the control device can receive and process at different times.
  • the instructions of the wireless switch and the instructions of the intelligent terminal can simultaneously receive and process the commands of the wireless switch and the instructions of the intelligent terminal at the same time, that is, the control device can respond to the commands of different master devices in a time-sharing or simultaneous manner.
  • control device is coupled to a plurality of controlled devices, and the control device sends instructions to the controlled device coupled thereto to control the controlled device.
  • the control device can establish a networking relationship with the wireless switch and the intelligent terminal, and simultaneously respond to the instructions of the intelligent terminal and the wireless switch in time to ensure the intelligent terminal.
  • the wireless switch can control the corresponding controlled device at the same time or in a time-sharing manner, which can control the controlled device more conveniently and quickly.
  • FIG. 10 is a schematic structural diagram of an embodiment of a device having a storage function according to the present invention.
  • the device 12 having the storage function of the present embodiment stores a computer program 121 that can be executed to implement the wireless switch-based control method according to any of the above embodiments.
  • the device 12 having the storage function may be a storage terminal in a smart terminal, a wireless switch or a control device, a hard disk or a portable hard disk or other readable and writable storage tools such as a USB flash drive or an optical disk, and may also be a server or the like. Make specific limits.
  • the wireless switch can establish a networking relationship with the control device and the intelligent terminal, and send corresponding instructions to the control device according to the trigger signal to ensure the intelligent terminal and the wireless device. Switching on the control device corresponding to the simultaneous or time-sharing control makes it easier and faster to control the controlled device.

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Abstract

A control system (10), method, and device based on a wireless switch (101). The control system (10) based on the wireless switch (101) comprises: a control device (102) used for coupling a controlled device (11); the wireless switch (101) at least applicable in transmitting a first instruction to the control device (102) so as to control the controlled device (11) via the control device (102); and a smart terminal (103) at least applicable in transmitting a second instruction to the control device (102) so as to control the controlled device (11) via the control device (102), where the control device (102), the wireless switch (101), and the smart terminal (103) transmit the first instruction and the second instruction by means of networking. In the control system (10), the wireless switch (101) and the smart terminal (103) can simultaneously transmit instructions to the control device (102), thus allowing convenient and quick control of the controlled device (11).

Description

基于无线开关的控制系统、方法及装置 Wireless switch based control system, method and device

【技术领域】[Technical Field]

本发明涉及通信技术领域,尤其涉及一种基于无线开关的控制系统、方法及装置。The present invention relates to the field of communications technologies, and in particular, to a wireless switch based control system, method and apparatus.

【背景技术】 【Background technique】

随着通信技术的发展,人们的日常生活以及工作越来越趋于智能化,例如,为了提升家居的安全性、便利性以及舒适性,智能家居系统已经逐步渗透到人们生活的方方面面。With the development of communication technology, people's daily life and work are becoming more and more intelligent. For example, in order to improve the safety, convenience and comfort of home, smart home systems have gradually penetrated into every aspect of people's lives.

目前,现有的智能家居产品一般采用有线或无线这两种方式来进行传输控制。例如,采用无线开关控制受控装置,无线开关在使用时需要和与其配套的控制设备相配合,以控制对应受控装置的开或关。At present, existing smart home products generally use wired or wireless methods for transmission control. For example, using a wireless switch to control a controlled device, the wireless switch needs to cooperate with its associated control device to control the opening or closing of the corresponding controlled device.

【发明内容】 [Summary of the Invention]

本发明主要解决的技术问题是提供了一种基于无线开关的控制系统、方法及装置,无线开关与智能终端可同时向控制设备发送指令,以更方便、更快捷地控制受控设备。The technical problem to be solved by the present invention is to provide a wireless switch-based control system, method and device. The wireless switch and the intelligent terminal can simultaneously send instructions to the control device to control the controlled device more conveniently and quickly.

为解决上述技术问题,本发明采用的第一个技术方案是:提供一种基于无线开关的控制系统,包括:控制设备,用于耦接受控设备;无线开关,至少可用于独立向所述控制设备发送第一指令,以通过所述控制设备控制所述受控设备;智能终端,至少可用于向所述控制设备发送第二指令,以通过所述控制设备控制所述受控设备,其中,所述控制设备、所述无线开关及所述智能终端通过组网方式传输所述第一指令、第二指令。In order to solve the above technical problem, the first technical solution adopted by the present invention is to provide a wireless switch-based control system, including: a control device for coupling and receiving a control device; and a wireless switch capable of at least independently controlling the control The device sends a first instruction to control the controlled device by using the control device; the smart terminal is at least configured to send a second instruction to the control device to control the controlled device by using the control device, where The control device, the wireless switch, and the intelligent terminal transmit the first instruction and the second instruction by using a networking manner.

为解决上述技术问题,本发明采用的第二个技术方案是:提供一种无线开关,包括:处理器、存储器、通信电路以及人机电路;所述处理器分别与所述存储器、所述通信电路以及所述人机电路耦接;其中,所述人机电路用于生成触发信号,所述处理器处理所述触发信号进而得到指令,通过所述通信电路无线向控制设备发送所述指令;所述处理器进一步用于通过所述通信电路与所述控制设备、智能终端建立组网关系,所述存储器用于存储所述组网的信息。In order to solve the above technical problem, the second technical solution adopted by the present invention is to provide a wireless switch, including: a processor, a memory, a communication circuit, and a human-machine circuit; the processor and the memory, the communication, respectively The circuit and the human-machine circuit are coupled; wherein the human-machine circuit is configured to generate a trigger signal, and the processor processes the trigger signal to obtain an instruction, and the instruction is sent to the control device by the communication circuit; The processor is further configured to establish a networking relationship with the control device and the smart terminal by using the communication circuit, where the memory is used to store information of the networking.

为解决上述技术问题,本发明采用的第三个技术方案是:提供一种配合无线开关的控制设备,包括:处理器、存储器、通信电路;所述处理器分别与所述存储器、所述通信电路耦接;其中,所述处理器用于通过所述通信电路与无线开关、智能终端建立组网关系,并至少接收并处理所述无线开关的指令和/或所述智能终端的指令,所述处理器进一步用于向受控设备发送所述指令,以控制所述受控设备;所述存储器用于存储所述组网信息。In order to solve the above technical problem, the third technical solution adopted by the present invention is to provide a control device that cooperates with a wireless switch, including: a processor, a memory, and a communication circuit; and the processor respectively communicates with the memory and the communication The circuit is coupled to the circuit, wherein the processor is configured to establish a networking relationship with the wireless switch and the smart terminal by using the communication circuit, and at least receive and process an instruction of the wireless switch and/or an instruction of the smart terminal, The processor is further configured to send the instruction to the controlled device to control the controlled device; the memory is configured to store the networking information.

为解决上述技术问题,本发明采用的第四个技术方案是:一种配合无线开关的智能终端,包括:处理器、存储器、通信电路;所述处理器分别与所述存储器、所述通信电路耦接;其中,所述处理器用于通过所述通信电路与无线开关、控制设备建立组网信息,并通过所述通信电路无线向控制设备发送指令,以通过所述控制设备控制受控设备,所述存储器用于存储所述组网信息。In order to solve the above technical problem, the fourth technical solution adopted by the present invention is: an intelligent terminal that cooperates with a wireless switch, including: a processor, a memory, and a communication circuit; and the processor and the memory and the communication circuit respectively Coupling, wherein the processor is configured to establish networking information with the wireless switch and the control device by using the communication circuit, and send an instruction to the control device by using the communication circuit to control the controlled device by using the control device, The memory is configured to store the networking information.

为解决上述技术问题,本发明采用的第五个技术方案是:一种基于无线开关的控制方法,所述控制方法包括:所述无线开关与控制设备、智能终端建立组网关系;处理其人机电路所生成的触发信号以得到指令;并通过其通信电路无线向控制设备发送所述指令,以通过所述控制设备控制受控设备。In order to solve the above technical problem, the fifth technical solution adopted by the present invention is: a wireless switch-based control method, the control method includes: the wireless switch establishes a networking relationship with a control device and an intelligent terminal; The trigger signal generated by the machine circuit is used to obtain an instruction; and the instruction is wirelessly transmitted to the control device through its communication circuit to control the controlled device through the control device.

本发明的有益效果是:区别于现有技术,本发明的基于无线开关的控制系统包括控制设备、无线开关以及智能终端;其中,控制设备用于耦接受控设备;无线开关至少可用于独立向控制设备发送第一指令;智能终端至少可用于向控制设备发送第二指令。控制设备可分时或同时接收到来自无线开关的第一指令和来自智能终端的第二指令,以同时或分时控制对应的受控设备,可更方便、更快捷地控制受控设备。The invention has the beneficial effects that the wireless switch-based control system of the present invention comprises a control device, a wireless switch and an intelligent terminal; wherein the control device is used to couple the control device; the wireless switch can be used at least for independent direction. The control device sends the first instruction; the intelligent terminal is at least operable to send the second instruction to the control device. The control device can receive the first instruction from the wireless switch and the second instruction from the smart terminal in a time-sharing or simultaneous manner to control the corresponding controlled device at the same time or in a time-sharing manner, so that the controlled device can be controlled more conveniently and quickly.

【附图说明】 [Description of the Drawings]

图1是本发明基于无线开关的控制系统一实施方式的结构示意图;1 is a schematic structural diagram of an embodiment of a wireless switch-based control system according to the present invention;

图2是本发明无线开关第一实施方式的结构示意图;2 is a schematic structural view of a first embodiment of a wireless switch according to the present invention;

图3是本发明无线开关第二实施方式的结构示意图;3 is a schematic structural view of a second embodiment of the wireless switch of the present invention;

图4是本发明无线开关第三实施方式的结构示意图;4 is a schematic structural view of a third embodiment of the wireless switch of the present invention;

图5是本发明无线开关第四实施方式的结构示意图;5 is a schematic structural view of a fourth embodiment of a wireless switch according to the present invention;

图6是本发明配合无线开关的控制设备一实施方式的结构示意图;6 is a schematic structural diagram of an embodiment of a control device for a wireless switch according to the present invention;

图7是本发明配合无线开关的智能终端一实施方式的结构示意图;7 is a schematic structural diagram of an implementation manner of an intelligent terminal with a wireless switch according to the present invention;

图8是本发明基于无线开关的控制方法一实施方式的流程示意图;8 is a schematic flow chart of an embodiment of a method for controlling a wireless switch according to the present invention;

图9是本发明基于无线开关的控制方法另一实施方式的流程示意图;9 is a schematic flow chart of another embodiment of a method for controlling a wireless switch according to the present invention;

图10是本发明具有存储功能的装置一实施方式的结构示意图。FIG. 10 is a schematic structural diagram of an embodiment of an apparatus having a storage function according to the present invention.

【具体实施方式】【detailed description】

本发明提供一种基于无线开关的控制系统、方法及装置,为使本发明的目的、技术方案和技术效果更加明确、清楚,以下对本发明进一步详细说明,应当理解此处所描述的具体实施条例仅用于解释本发明,并不用于限定本发明。The present invention provides a control system, method and device based on a wireless switch. In order to make the objects, technical solutions and technical effects of the present invention more clear and clear, the following further describes the present invention. It should be understood that the specific implementation regulations described herein are only It is intended to explain the invention and is not intended to limit the invention.

本实施方式基于无线开关的控制系统包括:控制设备、无线开关以及智能终端;其中,控制设备用于耦接受控设备,无线开关至少可用于独立向控制设备发送第一指令,以通过控制设备控制受控设备;智能终端至少可用于向控制设备发送第二指令,以通过控制设备控制受控设备。The control system based on the wireless switch of the present embodiment includes: a control device, a wireless switch, and an intelligent terminal; wherein the control device is configured to couple the control device, and the wireless switch can be used at least to independently send the first command to the control device to be controlled by the control device. The controlled device; the smart terminal is at least operable to send a second instruction to the control device to control the controlled device by the control device.

在本实施方式中,控制设备至少耦接有一个受控设备,可通过网络与受控设备建立无线连接,也可通过电缆与受控设备建立有线连接。同时,控制设备还与无线开关以及智能终端建立无线连接,以接收对应的指令,从而根据接收到的指令控制受控设备。In this embodiment, the control device is coupled to at least one controlled device, and can establish a wireless connection with the controlled device through a network, or establish a wired connection with the controlled device through a cable. At the same time, the control device also establishes a wireless connection with the wireless switch and the smart terminal to receive a corresponding instruction to control the controlled device according to the received command.

为了清楚的说明上述实施方式的控制系统,请参阅图1,图1是本发明基于无线开关的控制系统一实施方式的结构示意图。In order to clearly illustrate the control system of the above embodiment, please refer to FIG. 1. FIG. 1 is a schematic structural diagram of an embodiment of a wireless switch based control system according to the present invention.

如图1所示,本实施方式的基于无线开关的控制系统10包括无线开关101、控制设备102以及智能终端103。其中,控制设备102用于耦接若干受控设备11,以根据接收到的指令控制对应受控设备11的开或关或其他操作。另外,控制设备102与受控设备11是通过电缆建立有线连接的。为了避免复杂的布线设计,在另一个实施方式中控制设备102与受控设备11是通过网络建立无线连接的。As shown in FIG. 1, the wireless switch-based control system 10 of the present embodiment includes a wireless switch 101, a control device 102, and a smart terminal 103. The control device 102 is configured to couple the plurality of controlled devices 11 to control the opening or closing or other operations of the corresponding controlled device 11 according to the received instructions. In addition, the control device 102 and the controlled device 11 are wired connected by a cable. In order to avoid complicated wiring design, in another embodiment the control device 102 and the controlled device 11 are wirelessly connected through a network.

在其中的一个实施方式中,受控设备11为智能电器,例如电冰箱、空调、洗衣机以及电视等,也可以为其他智能家居设备,如,智能窗帘、智能电灯。In one embodiment, the controlled device 11 is a smart device, such as a refrigerator, an air conditioner, a washing machine, a television, etc., and may also be other smart home devices, such as smart curtains, smart lights.

在本实施方式中,无线开关101至少可独立向控制设备102发送第一指令,以通过控制设备102控制受控设备11;智能终端103至少可向控制设备102发送第二指令,以通过控制设备102控制受控设备11。In the present embodiment, the wireless switch 101 can at least independently transmit a first command to the control device 102 to control the controlled device 11 through the control device 102; the smart terminal 103 can send at least the second command to the control device 102 to pass the control device 102 controls the controlled device 11.

具体地,无线开关101、控制设备102以及智能终端103建立组网关系,以使无线开关101与控制设备102通过组网方式传输第一指令;智能终端103与控制设备102通过组网方式传输第二指令。例如,控制设备102、无线开关101以及智能终端103具有MESH蓝牙组网功能,通过MESH蓝牙组网方式对应传输第一指令、第二指令。Specifically, the wireless switch 101, the control device 102, and the smart terminal 103 establish a networking relationship, so that the wireless switch 101 and the control device 102 transmit the first instruction through networking; the intelligent terminal 103 and the control device 102 transmit through the networking mode. Two instructions. For example, the control device 102, the wireless switch 101, and the smart terminal 103 have the MESH Bluetooth networking function, and the first instruction and the second instruction are correspondingly transmitted through the MESH Bluetooth networking mode.

其中,MESH网络即“无线网格网络”,是“多跳(multi-hop)”无线网络,基于呈网状分布的众多无线接入点间可相互协同通信,是一个动态的不断扩展的网络架构,任意的两设备均可以保持无线互联。同时,MESH网络具有宽带高速和高频谱效率的优势,并且具有动态自组织、自配置、自维护等突出特点。则,无线开关101、控制设备102以及智能终端103可实现自组网的功能,以传输信息。Among them, the MESH network is a “wireless mesh network”, which is a “multi-hop” wireless network. It can communicate with each other based on a network of distributed wireless access points. It is a dynamic and continuously expanding network. Architecture, any two devices can maintain wireless connectivity. At the same time, the MESH network has the advantages of broadband high speed and high spectral efficiency, and has outstanding features such as dynamic self-organization, self-configuration, and self-maintenance. Then, the wireless switch 101, the control device 102, and the smart terminal 103 can implement the function of the ad hoc network to transmit information.

另外,在本实施方式中,为了节能环保,无线开关101不需要外部电源供电,为无源无线开关。控制设备102与智能终端103建立组网关系后,无线开关101通过近场通讯方式产生电能并接收来自智能终端103的MESH蓝牙组网信息。此时,无线开关101、控制设备102与智能终端103组网成功,且具有相同的组网信息。Further, in the present embodiment, in order to save energy and environmental protection, the wireless switch 101 does not require external power supply, and is a passive wireless switch. After the control device 102 establishes a networking relationship with the smart terminal 103, the wireless switch 101 generates power through the near field communication method and receives the MESH Bluetooth networking information from the smart terminal 103. At this time, the wireless switch 101, the control device 102, and the smart terminal 103 are successfully networked and have the same networking information.

进一步地,无线开关101的组网信息可以随着智能终端103的组网信息的改变而改变,即,无线开关101的组网信息是可以改变,从而可以与不同的智能终端103组网。Further, the networking information of the wireless switch 101 may be changed according to the change of the networking information of the smart terminal 103, that is, the networking information of the wireless switch 101 may be changed, so that it may be networked with different smart terminals 103.

在本实施方式中,无线开关101与智能终端103是通过频谱中无线频率部分的电磁感应耦合方式来实现近场通讯的,在此过程中,不仅可以产生电能,还可以获取组网信息,从而达到了节能环保的效果。In the present embodiment, the wireless switch 101 and the smart terminal 103 implement near-field communication through electromagnetic induction coupling of the radio frequency portion in the spectrum. In this process, not only electrical energy but also networking information can be acquired. It has achieved the effect of energy saving and environmental protection.

在一个具体的应用场景中,控制设备102与无线开关101是配套使用的,且在出厂时即预设有相应的组网信息,例如预设有蓝牙MESH网络名称以及网络访问密码。在智能终端103开启相应的应用程序后,智能终端103会自动搜索附近的控制设备102,也可以手动匹配,再通过对应的蓝牙MESH网络名称以及网络访问密码即可与控制设备102建立组网关系。In a specific application scenario, the control device 102 is used in conjunction with the wireless switch 101, and is pre-configured with corresponding networking information, such as a Bluetooth MESH network name and a network access password. After the smart terminal 103 starts the corresponding application, the smart terminal 103 automatically searches for the nearby control device 102, and can also manually match, and then establish a networking relationship with the control device 102 through the corresponding Bluetooth MESH network name and network access password. .

另外,为了方便记录组网信息以及保证组网信息的安全,用户可以通过智能终端103重新设置蓝牙MESH网络名称以及网络访问密码,以更新智能终端103以及控制设备102的组网信息。In addition, in order to facilitate the recording of the networking information and the security of the networking information, the user can reset the Bluetooth MESH network name and the network access password through the smart terminal 103 to update the networking information of the smart terminal 103 and the control device 102.

然后,无线开关101通过近场通讯方式获取来自智能终端103的MESH蓝牙组网信息,以使三者之间建立相同的组网信息。在另一个实施方式中,无线开关101也可直接与控制设备102建立通信,以获取组网信息。Then, the wireless switch 101 acquires the MESH Bluetooth networking information from the smart terminal 103 by means of near field communication, so that the same networking information is established between the three. In another embodiment, the wireless switch 101 can also establish communication with the control device 102 directly to obtain networking information.

工作时,无线开关101和智能终端103可在不同时刻分别发送指令给控制设备102;也可在同一时刻发送指令给控制设备102,以同时对控制设备102进行控制,从而实现无线开关101和智能终端103同时控制控制设备102的功能。例如,控制设备102耦接有至少两个受控设备11,其中一个受控设备11为电灯,另一个受控设备11为空调,当控制设备102同时接收到无线开关101开启电灯的第一指令以及智能终端103开启空调的第二指令时,控制设备102同时控制电灯的开启以及空调的开启。During operation, the wireless switch 101 and the smart terminal 103 can respectively send commands to the control device 102 at different times; or can send commands to the control device 102 at the same time to simultaneously control the control device 102, thereby implementing the wireless switch 101 and the smart device. The terminal 103 simultaneously controls the functions of the control device 102. For example, the control device 102 is coupled to at least two controlled devices 11, wherein one of the controlled devices 11 is an electric light, and the other controlled device 11 is an air conditioner. When the control device 102 simultaneously receives the first command of the wireless switch 101 to turn on the electric light, And when the smart terminal 103 turns on the second command of the air conditioner, the control device 102 simultaneously controls the opening of the electric light and the opening of the air conditioner.

区别与现有技术,本实施方式的基于无线开关的控制系统包括控制设备、无线开关以及智能终端;其中,控制设备用于耦接受控设备;无线开关至少可用于独立向控制设备发送第一指令;智能终端至少可用于向控制设备发送第二指令。控制设备可分时或同时接收到来自无线开关的第一指令和来自智能终端的第二指令,以同时或分时控制对应的受控设备,可更方便、更快捷地控制受控设备。Different from the prior art, the wireless switch-based control system of the present embodiment includes a control device, a wireless switch, and an intelligent terminal; wherein the control device is configured to be coupled to the control device; and the wireless switch is configured to send the first command to the control device independently The smart terminal can be used at least to send a second command to the control device. The control device can receive the first instruction from the wireless switch and the second instruction from the smart terminal in a time-sharing or simultaneous manner to control the corresponding controlled device at the same time or in a time-sharing manner, so that the controlled device can be controlled more conveniently and quickly.

参阅图2,图2是本发明无线开关第一实施方式的结构示意图。本实施方式的无线开关20包括人机电路201、处理器202、通信电路203以及存储器204。处理器202为仅具有MESH发射功能的蓝牙IC或同时具有MESH发射功能和MESH接收功能的蓝牙IC,或者其他具有MESH功能的处理器。Referring to FIG. 2, FIG. 2 is a schematic structural view of a first embodiment of a wireless switch according to the present invention. The wireless switch 20 of the present embodiment includes a human-machine circuit 201, a processor 202, a communication circuit 203, and a memory 204. The processor 202 is a Bluetooth IC having only the MESH transmission function or a Bluetooth IC having both the MESH transmission function and the MESH reception function, or other processors having the MESH function.

其中,处理器202分别与人机电路201、通信电路203以及存储器204耦接。在本实施方式中,人机电路201用于生成触发信号,处理器202处理触发信号进而得到指令,通过通信电路203无线向控制设备发送指令;处理器202进一步用于通过通信电路203与控制设备、智能终端建立组网关系,存储器204用于存储组网信息。The processor 202 is coupled to the human machine circuit 201, the communication circuit 203, and the memory 204, respectively. In this embodiment, the human machine circuit 201 is configured to generate a trigger signal, the processor 202 processes the trigger signal to obtain an instruction, and wirelessly sends an instruction to the control device through the communication circuit 203; the processor 202 is further configured to use the communication circuit 203 and the control device. The intelligent terminal establishes a networking relationship, and the storage 204 is configured to store networking information.

具体地,通信电路203包括第一无线电路2031以及第二无线电路2032,其中,第一无线电路2031包括近场通信(Near Field Communication,NFC)电路,用于接收来自智能终端的组网信息;第二无线电路2032包括蓝牙电路,并与处理器202耦接。例如,当处理器202出蓝牙IC时,蓝牙电路为蓝牙天线电路以及与蓝牙IC配合设计的外围电路。Specifically, the communication circuit 203 includes a first wireless circuit 2031 and a second wireless circuit 2032, wherein the first wireless circuit 2031 includes near field communication (Near Field) The communication (NFC) circuit is configured to receive networking information from the smart terminal; the second wireless circuit 2032 includes a Bluetooth circuit and is coupled to the processor 202. For example, when the processor 202 outputs a Bluetooth IC, the Bluetooth circuit is a Bluetooth antenna circuit and a peripheral circuit designed in cooperation with the Bluetooth IC.

在本实施方式中,存储器204为EEPROM (Electrically-Erasable Programmable Read-Only Memory,电子抹除式可复写只读存储器)。在其它实施方式中,存储器204可以为具有类似功能的其它存储器,如闪存等。In the present embodiment, the memory 204 is an EEPROM (Electrically-Erasable) Programmable Read-Only Memory, electronic erasable rewritable read-only memory). In other embodiments, memory 204 can be other memory having similar functionality, such as flash memory or the like.

具体地,存储器204具有NFC读写功能和MCU读写功能,因此第一无线电路203可以对存储器204进行读写操作,处理器202也可以对存储器204进行读写操作。具体地,存储器204包括支持NFC读写功能的第一通信端口2041及支持MCU读写功能的第二通信端口2042,其中,第一通信端口2041耦接第一无线电路2031、第二通信端口2042耦接处理器202。Specifically, the memory 204 has an NFC read/write function and an MCU read/write function. Therefore, the first wireless circuit 203 can perform read and write operations on the memory 204, and the processor 202 can also perform read and write operations on the memory 204. Specifically, the memory 204 includes a first communication port 2041 supporting an NFC read/write function and a second communication port 2042 supporting an MCU read/write function. The first communication port 2041 is coupled to the first wireless circuit 2031 and the second communication port 2042. The processor 202 is coupled.

同时还包括获取电源的电源端口2043,该电源端口2043耦接第一无线电路2031,以获取第一无线电路2031所产生的电能。第一无线电路2031在与智能终端通信时能通过通信信号产生电能,存储器204通过电源端口2043获取电能。At the same time, the power port 2043 is obtained, and the power port 2043 is coupled to the first wireless circuit 2031 to obtain the electrical energy generated by the first wireless circuit 2031. The first wireless circuit 2031 can generate electrical energy through a communication signal when communicating with the smart terminal, and the memory 204 acquires electrical energy through the power port 2043.

在本实施方式中,处理器202响应人机电路所生成的触发信号,从存储器204读出组网信息,并根据组网信息生成第一指令;然后,通过第二无线电路2032向控制设备发送第一指令。In this embodiment, the processor 202 reads the networking information from the memory 204 in response to the trigger signal generated by the human-machine circuit, and generates a first instruction according to the networking information; and then sends the second instruction to the control device through the second wireless circuit 2032. First instruction.

在另一个实施方式中,第一无线电路2031不耦接处理器202,且进一步耦接第二无线电路2032,以在无线开关20与智能终端通信时进一步提供电能给第二无线电路2032,并通过第一无线电路2031、第二无线电路2032将来自智能终端的第二指令发给控制设备。In another embodiment, the first wireless circuit 2031 is not coupled to the processor 202, and is further coupled to the second wireless circuit 2032 to further provide power to the second wireless circuit 2032 when the wireless switch 20 communicates with the smart terminal, and The second command from the smart terminal is sent to the control device by the first wireless circuit 2031 and the second wireless circuit 2032.

也就是说,智能终端将第二指令通过无线开关20的第二无线电路2032控制设备。在此过程中,无线开关20相当于是一个网络节点,智能终端通过该网络节点传输第二指令给控制设备。That is, the smart terminal controls the device through the second wireless circuit 2032 of the wireless switch 20 with the second command. In this process, the wireless switch 20 is equivalent to a network node through which the intelligent terminal transmits a second command to the control device.

进一步地,无线开关20包括发电组件(图中未示出),该发电组件耦接处理器202、第二无线电路2032及存储器204,提供电能给处理器202、第二无线电路2032及存储器204工作,以使得处理器202响应触发信号,从存储器204读出组网信息,并根据组网的信息生成指令,最后通过第二无线电路2032向控制设备发送第一指令。Further, the wireless switch 20 includes a power generation component (not shown) coupled to the processor 202, the second wireless circuit 2032, and the memory 204 to provide power to the processor 202, the second wireless circuit 2032, and the memory 204. Working, so that the processor 202 reads the networking information from the memory 204 in response to the trigger signal, generates an instruction according to the information of the networking, and finally transmits the first instruction to the control device through the second wireless circuit 2032.

另外,发电组件所产生的电能会有富余,为了存储发电组件所产生的电能,本实施方式的无线开关20还包括储能电路(图中未示出),该储能电路耦接于发电组件及处理器202、第二无线电路2032及存储器204之间。In addition, the power generated by the power generation component has a surplus. In order to store the power generated by the power generation component, the wireless switch 20 of the present embodiment further includes an energy storage circuit (not shown) coupled to the power generation component. And between the processor 202, the second wireless circuit 2032, and the memory 204.

请参阅图3,图3是本发明无线开关第二实施方式的结构示意图。本实施方式的无线开关30相较于第一实施方式的无线开关的基本结构以及与控制设备、智能终端间通信的工作原理基本相同,区别在于人机电路的具体构造以及人机电路与发电组件之间的连接关系。Please refer to FIG. 3. FIG. 3 is a schematic structural diagram of a second embodiment of the wireless switch of the present invention. The wireless switch 30 of the present embodiment is basically the same as the basic structure of the wireless switch of the first embodiment and the communication between the control device and the intelligent terminal, and the difference lies in the specific structure of the human-machine circuit and the human-machine circuit and the power generation component. The connection between the two.

在此,重点说明本实施方式的无线开关30产生电能的具体过程以及人机电路生成触发信号的方式。 Here, a specific process of generating electric energy by the wireless switch 30 of the present embodiment and a manner of generating a trigger signal by the human-machine circuit will be mainly described.

本实施方式的无线开关30包括人机电路301、发电组件302、储能电路303、处理器304、存储器305、第一无线电路306以及第二无线电路307。其中,发电组件302与储能电路303耦接,储能电路303分别与处理器304、第二无线电路307以及存储器305耦接。The wireless switch 30 of the present embodiment includes a human machine circuit 301, a power generation component 302, a tank circuit 303, a processor 304, a memory 305, a first wireless circuit 306, and a second wireless circuit 307. The power generating component 302 is coupled to the energy storage circuit 303, and the energy storage circuit 303 is coupled to the processor 304, the second wireless circuit 307, and the memory 305, respectively.

在本实施方式中,发电组件302为按压式发电组件,可将接收到的机械能转换为电能。其中,人机电路301包括若干按键3011,按键3011的数量可根据实际情况设计。每一按键3011均与处理器304耦接,用于接收触发信号。且至少有一个按键3011与发电组件302对应,当某一按键3011被按下时,抵顶并按压发电组件302,进而产生电能,储能电路303用于存储电能并给处理器304、第二无线电路307以及存储器305供电。In the present embodiment, the power generation component 302 is a push-type power generation component that converts received mechanical energy into electrical energy. The human-machine circuit 301 includes a plurality of buttons 3011, and the number of the buttons 3011 can be designed according to actual conditions. Each button 3011 is coupled to the processor 304 for receiving a trigger signal. At least one button 3011 corresponds to the power generating component 302. When a certain button 3011 is pressed, the power generating component 302 is pressed against the top and pressed to generate electric energy, and the energy storage circuit 303 is used to store the power and supply the processor 304 and the second. The wireless circuit 307 and the memory 305 are powered.

同时,任一按键3011被按下时,会对应生成触发信号,处理器304会接收并处理触发信号进而得到指令,进一步通过第二无线电路307发送给控制设备。At the same time, when any button 3011 is pressed, a trigger signal is generated correspondingly, and the processor 304 receives and processes the trigger signal to obtain an instruction, and further sends the signal to the control device through the second wireless circuit 307.

具体地,当人机电路301的某一按键3011受到按压时,会对应生成触发信号,当处理器304接收到触发信号时根据该触发信号生成相应的指令。按键3011与处理器304生成的指令的对应关系可以为:Specifically, when a certain button 3011 of the human-machine circuit 301 is pressed, a trigger signal is generated correspondingly, and when the processor 304 receives the trigger signal, a corresponding command is generated according to the trigger signal. The correspondence between the button 3011 and the command generated by the processor 304 can be:

(1)按压不同的按键3011会生成不同的指令,例如,按压其中一个按键3011生成开启第一电灯的指令;按压另一个按键3011生成关闭第一电灯的指令。(1) Pressing a different button 3011 generates a different command, for example, pressing one of the buttons 3011 to generate an instruction to turn on the first light; pressing another button 3011 to generate an instruction to turn off the first light.

(2)按压同一按键3011不同的位置会生成不同的指令,例如,按压一按键3011的上端,生成关闭第一电灯的指令;按压该按键3011的下端,生成开启第一电灯的指令。(2) Pressing different positions of the same button 3011 generates different commands, for example, pressing the upper end of a button 3011 to generate an instruction to turn off the first lamp; pressing the lower end of the button 3011 to generate an instruction to turn on the first lamp.

(3)按压同一按键3011的不同次数也会产生不同的指令,例如,第一次按压按键3011,生成开启第一电灯的指令;第二次按压按键3011,生成关闭第一电灯的指令;第三次按压按键3011,生成开启第一电灯的指令(即循环开关模式)。(3) different times of pressing the same button 3011 may also generate different commands, for example, pressing the button 3011 for the first time, generating an instruction to turn on the first lamp; and pressing the button 3011 for the second time, generating an instruction to turn off the first lamp; The button 3011 is pressed three times to generate an instruction to turn on the first lamp (ie, the cycle switch mode).

在其它实施方式中,按压按键3011与处理器其304生成的指令的对应关系可以根据实际情况进行相应调整。In other embodiments, the correspondence between the push button 3011 and the command generated by the processor 304 can be adjusted accordingly.

继续参阅图4,图4是本发明无线开关第三实施方式的结构示意图。本实施方式的无线开关40相较于第一实施方式的无线开关的基本结构以及与控制设备、智能终端间通信的工作原理基本相同,区别在于人机电路的具体构造以及人机电路与发电组件之间的连接关系;相较于第二实施方式的无线开关区别在于,人机电路与发电组件之间的连接关系。With continued reference to FIG. 4, FIG. 4 is a schematic structural view of a third embodiment of the wireless switch of the present invention. The wireless switch 40 of the present embodiment is basically the same as the basic structure of the wireless switch of the first embodiment and the communication between the control device and the intelligent terminal, and the difference lies in the specific structure of the human-machine circuit and the human-machine circuit and the power generation component. The connection relationship between the two is different from the wireless switch of the second embodiment in the connection relationship between the human-machine circuit and the power generation component.

在此,重点说明本实施方式的无线开关40的人机电路401与发电组件402之间的连接关系。Here, the connection relationship between the human-machine circuit 401 of the wireless switch 40 of the present embodiment and the power generation unit 402 will be mainly described.

本实施方式的无线开关40的人机电路401包括第一按键4011以及若干第二按键4012,其中,第一按键4011与发电组件402对应,当第一按键4011被按下时,抵顶并按压发电组件402,进而产生电能。The human-machine circuit 401 of the wireless switch 40 of the present embodiment includes a first button 4011 and a plurality of second buttons 4012. The first button 4011 corresponds to the power generating component 402. When the first button 4011 is pressed, the top button 4011 is pressed against the top button. The power generation component 402, in turn, generates electrical energy.

当任一按键4011被按下时,会对应生成触发信号,处理器304会接收并处理触发信号进而得到指令,进一步通过第二无线电路发送给控制设备。When any button 4011 is pressed, a trigger signal is generated correspondingly, and the processor 304 receives and processes the trigger signal to obtain an instruction, and further sends the command to the control device through the second wireless circuit.

区别于第二实施方式的无线开关,本实施方式的无线开关单独设置一个按键用以发电,在无线开关电量不足的情况下,可频繁按下按键以发电,同时也不会干扰任一受控设备的状态,避免了重复开或关某个受控设备的情况。Different from the wireless switch of the second embodiment, the wireless switch of the present embodiment separately sets a button for generating electricity. When the wireless switch has insufficient power, the button can be pressed frequently to generate power, and the control is not interfered with any controlled The state of the device avoids the situation of repeatedly turning on or off a controlled device.

进一步,参阅图5,图5是本发明无线开关第四实施方式的结构示意图。本实施方式的无线开关50相较于第一实施方式的无线开关的基本结构以及与控制设备、智能终端间通信的工作原理基本相同,区别在于人机电路、发电组件的具体构造;相较于第三实施方式的无线开关区别在于,发电组件的具体构造。Further, referring to FIG. 5, FIG. 5 is a schematic structural diagram of a fourth embodiment of the wireless switch of the present invention. The wireless switch 50 of the present embodiment is basically the same as the basic structure of the wireless switch of the first embodiment and the communication between the control device and the intelligent terminal, and the difference lies in the specific structure of the human-machine circuit and the power-generating component; The wireless switch of the third embodiment differs in the specific configuration of the power generating component.

在此,重点说明本实施方式无线开关50的发电组件的具体构造。Here, a specific configuration of the power generating unit of the wireless switch 50 of the present embodiment will be mainly described.

本实施方式的无线开关50的发电组件具体包括太阳能组件501,当无线开关50受到光照时,太阳能组件501发电,并将产生的电能存储在存储电路中,以给处理器、存储器以及第二无线电路供电。The power generating component of the wireless switch 50 of the present embodiment specifically includes a solar module 501. When the wireless switch 50 is exposed to light, the solar module 501 generates power and stores the generated electrical energy in a storage circuit for the processor, the memory, and the second wireless. Circuit power supply.

在另一个实施方式中,无线开关50的发电组件具体包括晃动发电组件,当无线开关50被晃动时,触发晃动发电组件发电。同时,无线开关50的发电组件也可同时包括太阳能组件501和晃动发电组件。在其他实施方式中发电组件也可以为其他的发电单元。In another embodiment, the power generating component of the wireless switch 50 specifically includes a sloshing power generating component that triggers the sloshing power generating component to generate power when the wireless switch 50 is shaken. At the same time, the power generating component of the wireless switch 50 can also include the solar component 501 and the sloshing power generating component. In other embodiments, the power generation component can also be other power generation units.

区别于第二实施方式以及第三实施方式的无线开关,本实施方式的无线开关采用太阳能发电或晃动发电的方式,可有效利用资源,而不必须触发按键就可以发电,减少了用户的发电操作,提高了用户体验。Different from the wireless switch of the second embodiment and the third embodiment, the wireless switch of the present embodiment adopts a method of generating electricity by solar power or sloshing, and can effectively utilize resources, and can generate power without triggering a button, thereby reducing power generation operation of the user. , improved user experience.

在此,需要说明的是,上述第二实施方式、第三实施方式以及第四实施方式的发电组件的具体构造是可相互结合的,以保证能够从多个维度获取电能,满足不同用户的需求。Here, it should be noted that the specific configurations of the power generation components of the second embodiment, the third embodiment, and the fourth embodiment described above can be combined with each other to ensure that electrical energy can be obtained from multiple dimensions to meet the needs of different users. .

区别于现有技术,本实施方式的无线开关可与控制设备以及智能终端建立组网关系,并根据触发信号发送相应的指令给控制设备,以保证了智能终端和无线开关了同时或分时控制对应的受控设备,可更方便、更快捷地控制受控设备。Different from the prior art, the wireless switch of the present embodiment can establish a networking relationship with the control device and the intelligent terminal, and send corresponding instructions to the control device according to the trigger signal to ensure simultaneous or timed control of the smart terminal and the wireless switch. The corresponding controlled device makes it easier and faster to control the controlled device.

参阅图6,图6是本发明配合无线开关的控制设备一实施方式的结构示意图。Referring to FIG. 6, FIG. 6 is a schematic structural diagram of an embodiment of a control device for a wireless switch according to the present invention.

本实施方式的控制设备60用于耦接受控设备,并根据接收到的指令控制对应的受控设备。The control device 60 of the present embodiment is configured to couple the control device and control the corresponding controlled device according to the received command.

其中,控制设备60包括存储器601、处理器602以及通信电路603。处理器602分别与存储器601以及通信电路603耦接。处理器602为具有MESH网络功能的蓝牙IC或者其他具有MESH网络功能的处理器。The control device 60 includes a memory 601, a processor 602, and a communication circuit 603. The processor 602 is coupled to the memory 601 and the communication circuit 603, respectively. Processor 602 is a Bluetooth IC with MESH network functionality or other processor with MESH network functionality.

在本实施方式中,处理器602用于通过通信电路603与无线开关、智能终端建立组网关系,并至少接收并处理无线开关的指令和/或智能终端的指令,处理器602进一步用于向受控设备发送指令,以控制受控设备;存储器601用于存储组网信息。In this embodiment, the processor 602 is configured to establish a networking relationship with the wireless switch and the smart terminal through the communication circuit 603, and at least receive and process the instruction of the wireless switch and/or the instruction of the intelligent terminal, and the processor 602 is further configured to The controlled device sends an instruction to control the controlled device; the memory 601 is used to store the networking information.

具体地,通信电路603包括蓝牙天线电路,控制设备60通过该通信电路603与智能终端建立组网关系,无线开关与智能终端通信以获取对应的组网信息或者无线开关与控制设备60通信以获取对应的组网信息,保证控制设备60、无线开关以及智能终端具有同一组网信息。Specifically, the communication circuit 603 includes a Bluetooth antenna circuit, and the control device 60 establishes a networking relationship with the intelligent terminal through the communication circuit 603, and the wireless switch communicates with the intelligent terminal to obtain corresponding networking information or the wireless switch communicates with the control device 60 to obtain Corresponding networking information ensures that the control device 60, the wireless switch, and the intelligent terminal have the same networking information.

本实施方式的控制设备60在与无线开关以及智能终端组网成功后,可在不同时刻分别接收并处理无线开关的指令和智能终端的指令,另一方面也可在同一时刻同时接收并处理无线开关的指令和智能终端的指令,即,控制设备60可分时或同时响应不同主控设备的指令。After successfully setting up the wireless switch and the intelligent terminal, the control device 60 of the present embodiment can separately receive and process the commands of the wireless switch and the commands of the intelligent terminal at different times, and can simultaneously receive and process the wireless at the same time. The instructions of the switch and the instructions of the intelligent terminal, that is, the control device 60 can respond to the instructions of the different master devices in a time-sharing or simultaneous manner.

区别于现有技术,本实施方式的控制设备可与无线开关以及智能终端建立组网关系,同时或分时响应智能终端和无线开关的指令,以保证了智能终端和无线开关了同时或分时控制对应的受控设备,可更方便、更快捷地控制受控设备。Different from the prior art, the control device of the present embodiment can establish a networking relationship with the wireless switch and the smart terminal, and simultaneously respond to the instructions of the intelligent terminal and the wireless switch in time to ensure that the smart terminal and the wireless switch are simultaneously or time-sharing. Controlling the corresponding controlled device makes it easier and faster to control the controlled device.

参阅图7,图7是本发明配合无线开关的智能终端一实施方式的结构示意图。Referring to FIG. 7, FIG. 7 is a schematic structural diagram of an implementation manner of an intelligent terminal with a wireless switch according to the present invention.

本实施方式的智能终端70包括存储器701、处理器702以及通信电路703。处理器702分别与存储器701以及通信电路703耦接。处理器702具体可为蓝牙IC或具有MESH网络功能的蓝牙IC,或者其他具有MESH网络功能的处理器。The smart terminal 70 of the present embodiment includes a memory 701, a processor 702, and a communication circuit 703. The processor 702 is coupled to the memory 701 and the communication circuit 703, respectively. The processor 702 may specifically be a Bluetooth IC or a Bluetooth IC having a MESH network function, or another processor having a MESH network function.

其中,智能终端70包括智能手机、平板电脑、个人数字助理及智能穿戴式设备。The smart terminal 70 includes a smart phone, a tablet computer, a personal digital assistant, and a smart wearable device.

在本实施方式中,处理器702用于通过通信电路703与无线开关、控制建立组网关系,并通过通信电路703无线向控制设备发送指令,以通过控制设备控制与控制设备耦接的受控设备,存储器701用于存储组网信息。In this embodiment, the processor 702 is configured to establish a networking relationship with the wireless switch and the control through the communication circuit 703, and send a command to the control device through the communication circuit 703 to control the control device to be controlled by the control device. The device 701 is configured to store networking information.

具体地,通信电路703包括第一无线电路以及第二无线电路,其中,第一无线电路具体包括NFC电路,第二无线电路包括蓝牙天线电路,智能终端70通过第二无线电路与控制设备建立组网关系,并存储对应的组网信息至存储器701。智能终端70通过第一无线电路与无线开关建立通信链路,以传输组网信息给无线开关,从而使智能终端70、控制设备以及无线开关建立具有同一组网信息。Specifically, the communication circuit 703 includes a first wireless circuit and a second wireless circuit, wherein the first wireless circuit specifically includes an NFC circuit, the second wireless circuit includes a Bluetooth antenna circuit, and the smart terminal 70 establishes a group with the control device by using the second wireless circuit. The network relationship is stored and the corresponding networking information is stored in the memory 701. The smart terminal 70 establishes a communication link with the wireless switch through the first wireless circuit to transmit the networking information to the wireless switch, so that the smart terminal 70, the control device, and the wireless switch establish the same networking information.

本实施方式的智能终端70在与无线开关以及控制设备组网成功后,在无线开关未向控制设备发送指令时,能终端70向控制设备发送指令以控制对应的受控设备;同时,也可以在无线开关向控制设备发送指令的同时向控制设备发送指令,以实现分时或同时控制控制设备的功能。After the wireless terminal and the control device are successfully networked, the smart terminal 70 of the present embodiment can send an instruction to the control device to control the corresponding controlled device when the wireless switch does not send an instruction to the control device; The wireless switch sends an instruction to the control device while sending an instruction to the control device to implement the function of the control device in a time-sharing manner or at the same time.

区别于现有技术,本实施方式的智能终端可与无线开关以及控制设备建立组网关系,以使无线开关或智能终端同时或分时向控制设备发送指令,以保证了智能终端和无线开关了同时或分时控制对应的受控设备,可更方便、更快捷地控制受控设备。Different from the prior art, the smart terminal of the present embodiment can establish a networking relationship with the wireless switch and the control device, so that the wireless switch or the smart terminal sends commands to the control device simultaneously or in a timely manner to ensure the intelligent terminal and the wireless switch. Controlling the corresponding controlled device at the same time or in a timely manner can control the controlled device more conveniently and quickly.

参阅图8,图8是本发明基于无线开关的控制方法一实施方式的流程示意图。结合图1所示的基于无线开关的控制系统,本实施方式的控制方法是从无线开关的角度出发的。本实施方式的基于无线开关的控制方法适用于上述任一实施方式的无线开关。Referring to FIG. 8, FIG. 8 is a schematic flowchart of an embodiment of a method for controlling a wireless switch according to the present invention. In conjunction with the wireless switch-based control system shown in FIG. 1, the control method of the present embodiment is based on the perspective of a wireless switch. The wireless switch-based control method according to the present embodiment is applied to the wireless switch of any of the above embodiments.

801:无线开关与控制设备、智能终端建立组网关系。801: The wireless switch establishes a networking relationship with the control device and the intelligent terminal.

在本实施方式中,智能终端与控制设备建立组网关系后,会将对应的组网信息存储至其存储器上,当无线开关与智能终端建立通信连接后,无线开关可接收来自稚嫩终端的组网信息。In this embodiment, after the smart terminal establishes a networking relationship with the control device, the corresponding networking information is stored in the memory. When the wireless switch establishes a communication connection with the intelligent terminal, the wireless switch can receive the group from the child terminal. Web information.

在本实施方式中,无线开关为无源无线开关且无线开关具有MESH发射网络功能,无线开关通过第一无线电路与智能终端建立连接,以接收并存储来自智能终端的组网信息,与控制设备建立组网关系,从而使无线开关与控制设备、智能终端建立组网关系。具体地,无线开关的NFC电路与智能终端的NFC电路建立通信以产生电能供无线开关工作,并通过NFC电路建立的通信回路获取组网信息,并将获取到的组网信息存储至其存储器上。In this embodiment, the wireless switch is a passive wireless switch and the wireless switch has a MESH transmission network function, and the wireless switch establishes a connection with the intelligent terminal through the first wireless circuit to receive and store the networking information from the intelligent terminal, and the control device. Establish a networking relationship, so that the wireless switch establishes a networking relationship with the control device and the intelligent terminal. Specifically, the NFC circuit of the wireless switch establishes communication with the NFC circuit of the smart terminal to generate electrical energy for the wireless switch to work, and acquires networking information through the communication loop established by the NFC circuit, and stores the acquired networking information on the memory thereof. .

在另一个实施方式中,无线开关在配对的过程中,通过传输线获取外部电源。在其中的一个实施方式中,无线开关包括USB接口,无线开关的通信电路通过USB接口获取电源,使其能够接收信号,从而接收智能终端所发送的组网信息,以与所述控制设备、所述智能终端建立组网关系,并将该组网信息存储至存储器上。后续在实际使用过程中,不需要外部供电,而通过其发电组件进行发电,然后从存储器上读取组网信息,通过通信电路发送指令。In another embodiment, the wireless switch acquires an external power source through the transmission line during the pairing process. In one embodiment, the wireless switch includes a USB interface, and the communication circuit of the wireless switch acquires power through the USB interface, so that it can receive the signal, thereby receiving the networking information sent by the intelligent terminal, and the control device and the The intelligent terminal establishes a networking relationship and stores the networking information in a memory. Subsequent to actual use, external power supply is not required, but power generation is performed by its power generation component, and then the networking information is read from the memory, and the command is sent through the communication circuit.

802:处理其人机电路所生成的触发信号以得到指令。802: Processing a trigger signal generated by a human-machine circuit to obtain an instruction.

在本实施方式中,无线开关、控制设备以及智能终端建立组网关系后,当无线开关的人机电路被触发后,人机电路会生成对应的触发信号给到无线开关的处理器,无线开关的处理器处理该触发信号,并获取存储器上的组网信息,根据组网信息以及触发信号生成对应的控制指令In this embodiment, after the wireless switch, the control device, and the intelligent terminal establish a networking relationship, when the human-machine circuit of the wireless switch is triggered, the human-machine circuit generates a corresponding trigger signal to the processor of the wireless switch, and the wireless switch The processor processes the trigger signal, acquires networking information on the memory, and generates a corresponding control instruction according to the networking information and the trigger signal.

803:并通过其通信电路无线向控制设备发送指令,以通过控制设备控制受控设备。803: wirelessly transmits an instruction to the control device through its communication circuit to control the controlled device through the control device.

在本实施方式中,无线开关通过其通信电路向控制设备发送指令,以通过控制设备控制受控设备。In the present embodiment, the wireless switch transmits an instruction to the control device through its communication circuit to control the controlled device through the control device.

具体地,无线开关通过其第二无线电路向控制设备发送指令,其中,第二无线电路包括蓝牙电路,即,无线开关通过蓝牙技术传输指令给到控制设备,以通过控制设备控制受控设备。Specifically, the wireless switch transmits an instruction to the control device through its second wireless circuit, wherein the second wireless circuit includes a Bluetooth circuit, that is, the wireless switch transmits an instruction to the control device via the Bluetooth technology to control the controlled device through the control device.

区别于现有技术,本实施方式的基于无线开关的控制方法,无线开关可与控制设备以及智能终端建立组网关系,并根据触发信号发送相应的指令给控制设备,以保证了智能终端和无线开关了同时或分时控制对应的受控设备,可更方便、更快捷地控制受控设备。Different from the prior art, in the wireless switch-based control method of the present embodiment, the wireless switch can establish a networking relationship with the control device and the intelligent terminal, and send corresponding instructions to the control device according to the trigger signal to ensure the intelligent terminal and the wireless device. Switching on the control device corresponding to the simultaneous or time-sharing control makes it easier and faster to control the controlled device.

参阅图9,图9是本发明基于无线开关的控制方法另一实施方式的流程示意图。结合图1所示的基于无线开关的控制系统,本实施方式的控制方法是从控制设备的角度出发的。本实施方式的基于无线开关的控制方法适用于上述任一实施方式的控制设备。Referring to FIG. 9, FIG. 9 is a schematic flow chart of another embodiment of a method for controlling a wireless switch according to the present invention. In conjunction with the wireless switch-based control system shown in FIG. 1, the control method of the present embodiment is derived from the perspective of the control device. The wireless switch-based control method of the present embodiment is applied to the control device of any of the above embodiments.

901:控制设备与智能终端、无线开关建立组网关系。901: The control device establishes a networking relationship with the smart terminal and the wireless switch.

在本实施方式中,控制设备包括存储器、处理器以及通信电路。处理器分别与存储器以及通信电路耦接。处理器为具有MESH网络功能的蓝牙IC或者其他具有MESH网络功能的处理器。In the present embodiment, the control device includes a memory, a processor, and a communication circuit. The processor is coupled to the memory and the communication circuit, respectively. The processor is a Bluetooth IC with MESH network function or other processor with MESH network function.

在本实施方式中,控制设备通过通信电路与无线开关、智能终端建立组网关系。In this embodiment, the control device establishes a networking relationship with the wireless switch and the smart terminal through the communication circuit.

具体地,通信电路包括蓝牙天线电路,控制设备通过该通信电路与智能终端建立组网关系,无线开关与智能终端通信以获取对应的组网信息或者无线开关与控制设备通信以获取对应的组网信息,保证控制设备、无线开关以及智能终端具有同一组网信息。并将该组网信息存储至存储器中。Specifically, the communication circuit includes a Bluetooth antenna circuit, and the control device establishes a networking relationship with the intelligent terminal through the communication circuit, and the wireless switch communicates with the intelligent terminal to obtain corresponding networking information or the wireless switch communicates with the control device to obtain a corresponding networking. Information ensures that the control device, wireless switch, and smart terminal have the same networking information. And store the networking information in the memory.

902:控制设备至少接收并处理无线开关的指令和/或智能终端的指令。902: The control device receives and processes at least an instruction of the wireless switch and/or an instruction of the smart terminal.

在本实施方式中,控制设备并至少接收并处理无线开关的指令和/或智能终端的指令,具体地,控制设备在与无线开关以及智能终端组网成功后,可在不同时刻分别接收并处理无线开关的指令和智能终端的指令,另一方面也可在同一时刻同时接收并处理无线开关的指令和智能终端的指令,即,控制设备可分时或同时响应不同主控设备的指令。In this embodiment, the control device receives and processes at least the command of the wireless switch and/or the instruction of the smart terminal. Specifically, after the network is successfully connected to the wireless switch and the smart terminal, the control device can receive and process at different times. The instructions of the wireless switch and the instructions of the intelligent terminal, on the other hand, can simultaneously receive and process the commands of the wireless switch and the instructions of the intelligent terminal at the same time, that is, the control device can respond to the commands of different master devices in a time-sharing or simultaneous manner.

903:向与其耦接的受控设备发送指令,以控制受控设备。903: Send an instruction to a controlled device coupled thereto to control the controlled device.

在本实施方式中,控制设备耦接有若干受控设备,控制设备向与其耦接的受控设备发送指令,以控制受控设备。In this embodiment, the control device is coupled to a plurality of controlled devices, and the control device sends instructions to the controlled device coupled thereto to control the controlled device.

区别于现有技术,本实施方式的基于无线开关的控制方法中,控制设备可与无线开关以及智能终端建立组网关系,同时或分时响应智能终端和无线开关的指令,以保证了智能终端和无线开关了同时或分时控制对应的受控设备,可更方便、更快捷地控制受控设备。Different from the prior art, in the wireless switch-based control method of the present embodiment, the control device can establish a networking relationship with the wireless switch and the intelligent terminal, and simultaneously respond to the instructions of the intelligent terminal and the wireless switch in time to ensure the intelligent terminal. And the wireless switch can control the corresponding controlled device at the same time or in a time-sharing manner, which can control the controlled device more conveniently and quickly.

参阅图10,图10是本发明具有存储功能的装置一实施方式的结构示意图。本实施方式的具有存储功能的装置12上存储有计算机程序121,该程序121能够被执行,实现如上述任一实施方式的基于无线开关的控制方法。Referring to FIG. 10, FIG. 10 is a schematic structural diagram of an embodiment of a device having a storage function according to the present invention. The device 12 having the storage function of the present embodiment stores a computer program 121 that can be executed to implement the wireless switch-based control method according to any of the above embodiments.

其中,具有存储功能的装置12可以是智能终端、无线开关或控制设备中的存储芯片、硬盘或者是移动硬盘或者优盘、光盘等其他可读写存储的工具,还可以是服务器等,在此不做具体限定。The device 12 having the storage function may be a storage terminal in a smart terminal, a wireless switch or a control device, a hard disk or a portable hard disk or other readable and writable storage tools such as a USB flash drive or an optical disk, and may also be a server or the like. Make specific limits.

关于基于无线开关的控制方法前述已详尽描述,在此不做具体说明。The wireless switch-based control method has been described in detail above and will not be specifically described herein.

区别于现有技术,本实施方式的基于无线开关的控制方法,无线开关可与控制设备以及智能终端建立组网关系,并根据触发信号发送相应的指令给控制设备,以保证了智能终端和无线开关了同时或分时控制对应的受控设备,可更方便、更快捷地控制受控设备。Different from the prior art, in the wireless switch-based control method of the present embodiment, the wireless switch can establish a networking relationship with the control device and the intelligent terminal, and send corresponding instructions to the control device according to the trigger signal to ensure the intelligent terminal and the wireless device. Switching on the control device corresponding to the simultaneous or time-sharing control makes it easier and faster to control the controlled device.

以上所述仅为本发明的实施方式,并非因此限制本发明的专利保护范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。The above is only the embodiment of the present invention, and thus does not limit the scope of the patent protection of the present invention, and the equivalent structure or equivalent process transformation made by using the description of the present invention and the contents of the drawings, or directly or indirectly applied to other related The technical field is equally included in the scope of patent protection of the present invention.

Claims (22)

一种基于无线开关的控制系统,其特征在于,包括:A wireless switch based control system, comprising: 控制设备,用于耦接受控设备;a control device for coupling the control device; 无线开关,至少可用于独立向所述控制设备发送第一指令,以通过所述控制设备控制所述受控设备;a wireless switch, at least for independently transmitting a first instruction to the control device to control the controlled device by the control device; 智能终端,至少可用于向所述控制设备发送第二指令,以通过所述控制设备控制所述受控设备;The intelligent terminal is configured to send at least a second instruction to the control device to control the controlled device by using the control device; 其中,所述控制设备、所述无线开关及所述智能终端通过组网方式传输所述第一指令、第二指令。The control device, the wireless switch, and the intelligent terminal transmit the first instruction and the second instruction by using a networking manner. 根据权利要求1所述的控制系统,其特征在于,The control system of claim 1 wherein: 所述控制设备、所述无线开关及所述智能终端通过MESH蓝牙组网方式传输所述第一指令、第二指令。The control device, the wireless switch, and the intelligent terminal transmit the first instruction and the second instruction by using a MESH Bluetooth networking mode. 根据权利要求2所述的控制系统,其特征在于,所述无线开关通过近场通讯方式接收来自所述智能终端的MESH蓝牙组网信息,以通过组网方式传输所述第一指令。The control system according to claim 2, wherein the wireless switch receives the MESH Bluetooth networking information from the intelligent terminal by means of near field communication to transmit the first instruction by networking. 根据权利要求1所述的控制系统,其特征在于,所述无线开关为无源无线开关。The control system of claim 1 wherein said wireless switch is a passive wireless switch. 一种无线开关,其特征在于,包括:A wireless switch, comprising: 处理器、存储器、通信电路以及人机电路;a processor, a memory, a communication circuit, and a human machine circuit; 所述处理器分别与所述存储器、所述通信电路以及所述人机电路耦接;The processor is coupled to the memory, the communication circuit, and the human machine circuit, respectively; 其中,所述人机电路用于生成触发信号,所述处理器处理所述触发信号进而得到指令,通过所述通信电路无线向控制设备发送所述指令;所述处理器进一步用于通过所述通信电路与所述控制设备、所述智能终端建立组网关系,所述存储器用于存储所述组网信息。The human-machine circuit is configured to generate a trigger signal, the processor processes the trigger signal to obtain an instruction, and the instruction is sent by the communication circuit to the control device, and the processor is further configured to pass the The communication circuit establishes a networking relationship with the control device and the smart terminal, and the memory is used to store the networking information. 根据权利要求5所述的无线开关,其特征在于,还包括USB接口,所述通信电路通过所述USB接口获取电源,使其能够接收信号,从而接收智能终端所发送的组网信息,以与所述控制设备、所述智能终端建立组网关系,并将该组网信息存储至存储器上。The wireless switch according to claim 5, further comprising a USB interface, wherein the communication circuit obtains power through the USB interface to enable it to receive signals, thereby receiving networking information sent by the intelligent terminal, to The control device and the smart terminal establish a networking relationship, and store the networking information on a memory. 根据权利要求5所述的无线开关,其特征在于,The wireless switch of claim 5 wherein: 所述通信电路包括第一无线电路及第二无线电路,所述第一无线电路用于接收来自所述智能终端的所述组网信息,所述组网信息存入所述存储器,所述第二无线电路与所述处理器耦接;The communication circuit includes a first wireless circuit and a second wireless circuit, the first wireless circuit is configured to receive the networking information from the smart terminal, and the networking information is stored in the memory, where the Two wireless circuits coupled to the processor; 其中,所述处理器处理所述触发信号进而得到指令包括:所述处理器响应所述触发信号,从所述存储器读出所述组网信息,并根据所述组网信息生成第一指令;所述处理器通过所述通信电路无线向控制设备发送所述指令包括:通过所述第二无线电路向控制设备发送所述第一指令。The processor processing the trigger signal to obtain an instruction includes: the processor reading the networking information from the memory in response to the trigger signal, and generating a first instruction according to the networking information; The wirelessly transmitting, by the communication circuit, the instruction to the control device by the communication circuit comprises: transmitting, by the second wireless circuit, the first instruction to a control device. 根据权利要求7所述的无线开关,其特征在于,The wireless switch of claim 7 wherein: 所述第一无线电路包括近场通信电路,所述无线开关通过所述近场通信电路接收来自所述智能终端的所述组网信息。The first wireless circuit includes a near field communication circuit, and the wireless switch receives the networking information from the smart terminal through the near field communication circuit. 根据权利要求7所述的无线开关,其特征在于,所述第二无线电路包括蓝牙电路,所述处理器通过MESH蓝牙组网方式向控制设备发送所述第一指令。The wireless switch according to claim 7, wherein said second wireless circuit comprises a Bluetooth circuit, and said processor transmits said first instruction to said control device via a MESH Bluetooth networking mode. 根据权利要求7所述的无线开关,其特征在于,The wireless switch of claim 7 wherein: 所述存储器包括耦接所述第一无线电路的第一通信端口、耦接所述处理器的第二通信端口。The memory includes a first communication port coupled to the first wireless circuit and a second communication port coupled to the processor. 根据权利要求5所述的无线开关,其特征在于,所述无线开关为无源无线开关。The wireless switch of claim 5 wherein said wireless switch is a passive wireless switch. 根据权利要求11所述的无线开关,其特征在于,所述无源无线开关包括发电组件,所述发电组件耦接所述处理器、所述通信电路及所述存储器,提供电能给所述处理器、所述通信电路及所述存储器工作,以使得所述处理器响应所述触发信号,从所述存储器读出所述组网信息,并根据所述组网信息生成所述指令,最后通过所述通信电路向控制设备发送所述第一指令。The wireless switch of claim 11 wherein said passive wireless switch comprises a power generation component coupled to said processor, said communication circuit and said memory to provide electrical energy to said processing The communication circuit and the memory operate to cause the processor to read the networking information from the memory in response to the trigger signal, and generate the instruction according to the networking information, and finally pass The communication circuit transmits the first instruction to a control device. 根据权利要求12所述的无线开关,其特征在于,The wireless switch of claim 12, wherein 包括储能电路,所述储能电路耦接于所述发电组件及所述处理器、所述第二无线电路及所述存储器之间。The energy storage circuit is coupled to the power generation component and the processor, the second wireless circuit, and the memory. 根据权利要求12所述的无线开关,其特征在于,The wireless switch of claim 12, wherein 所述发电组件是按压式发电组件,所述人机电路包括按键,所述按键被按下时抵顶并按压所述按压式发电组件,进而产生所述电能。The power generation component is a push-type power generation component, and the human-machine circuit includes a button, and when the button is pressed, it abuts against the push-type power generation component, thereby generating the electrical energy. 根据权利要求14所述的无线开关,其特征在于,The wireless switch of claim 14 wherein: 所述按键数量至少为二,每个所述按键产生对应的所述触发信号及第一指令,以控制对应的所述受控设备。The number of the buttons is at least two, and each of the buttons generates a corresponding trigger signal and a first instruction to control the corresponding controlled device. 一种配合无线开关的控制设备,其特征在于,包括:A control device for supporting a wireless switch, comprising: 处理器、存储器、通信电路;Processor, memory, communication circuit; 所述处理器分别与所述存储器、所述通信电路耦接;The processor is coupled to the memory and the communication circuit respectively; 其中,所述处理器用于通过所述通信电路与无线开关、智能终端建立组网关系,并至少接收并处理所述无线开关的指令和/或所述智能终端的指令,所述处理器进一步用于向受控设备发送所述指令,以控制所述受控设备;所述存储器用于存储所述组网信息。The processor is configured to establish a networking relationship with the wireless switch and the smart terminal by using the communication circuit, and receive and process at least an instruction of the wireless switch and/or an instruction of the smart terminal, where the processor further uses The instruction is sent to the controlled device to control the controlled device; the memory is configured to store the networking information. 一种配合无线开关的智能终端,其特征在于,包括:An intelligent terminal with a wireless switch, comprising: 处理器、存储器、通信电路;Processor, memory, communication circuit; 所述处理器分别与所述存储器、所述通信电路耦接;The processor is coupled to the memory and the communication circuit respectively; 其中,所述处理器用于通过所述通信电路与无线开关、控制设备建立组网信息,并通过所述通信电路无线向控制设备发送指令,以通过所述控制设备控制受控设备,所述存储器用于存储所述组网信息。The processor is configured to establish networking information with the wireless switch and the control device by using the communication circuit, and send an instruction wirelessly to the control device by using the communication circuit to control the controlled device by using the control device, where the memory Used to store the networking information. 一种基于无线开关的控制方法,其特征在于,所述控制方法包括:A wireless switch-based control method, characterized in that the control method comprises: 所述无线开关与控制设备、智能终端建立组网关系;The wireless switch establishes a networking relationship with the control device and the intelligent terminal; 处理其人机电路所生成的触发信号以得到指令;Processing a trigger signal generated by the human machine circuit to obtain an instruction; 并通过其通信电路无线向控制设备发送所述指令,以通过所述控制设备控制受控设备。And transmitting the instruction wirelessly to the control device through its communication circuit to control the controlled device through the control device. 根据权利要求18所述的控制方法,其特征在于,所述无线开关具有蓝牙mesh网络功能。The control method according to claim 18, wherein the wireless switch has a Bluetooth mesh network function. 根据权利要求18所述的控制方法,其特征在于,所述无线开关与控制设备、智能终端建立组网关系的步骤具体包括:The control method according to claim 18, wherein the step of establishing a networking relationship between the wireless switch and the control device and the smart terminal comprises: 所述无线开关通过近场通讯方式接收并存储来自智能终端的组网信息,以与所述控制设备、所述智能终端建立组网关系。The wireless switch receives and stores the networking information from the smart terminal in a near field communication manner to establish a networking relationship with the control device and the smart terminal. 根据权利要求18所述的控制方法,其特征在于,所述无线开关与控制设备、智能终端建立组网关系的步骤具体包括:The control method according to claim 18, wherein the step of establishing a networking relationship between the wireless switch and the control device and the smart terminal comprises: 所述无线开关过USB接口获取电源,使其能够接收信号,从而接收智能终端所发送的组网信息,以与所述控制设备、所述智能终端建立组网关系,并将该组网信息存储至存储器上。The wireless switch acquires a power source through the USB interface, so that it can receive a signal, thereby receiving the networking information sent by the smart terminal, establishing a networking relationship with the control device and the smart terminal, and storing the network information. To the memory. 根据权利要求18所述的控制方法,其特征在于,所述无线开关为无源无线开关。The control method according to claim 18, wherein said wireless switch is a passive wireless switch.
PCT/CN2017/119330 2016-12-31 2017-12-28 Control system, method, and device based on wireless switch Ceased WO2018121662A1 (en)

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