WO2016145743A1 - 网络控制装置、智能家居系统及其控制方法 - Google Patents

网络控制装置、智能家居系统及其控制方法 Download PDF

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Publication number
WO2016145743A1
WO2016145743A1 PCT/CN2015/081980 CN2015081980W WO2016145743A1 WO 2016145743 A1 WO2016145743 A1 WO 2016145743A1 CN 2015081980 W CN2015081980 W CN 2015081980W WO 2016145743 A1 WO2016145743 A1 WO 2016145743A1
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Prior art keywords
smart home
wireless
control command
wireless communication
network control
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PCT/CN2015/081980
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English (en)
French (fr)
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张泽
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张泽
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Publication of WO2016145743A1 publication Critical patent/WO2016145743A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/28Data switching networks characterised by path configuration, e.g. LAN [Local Area Networks] or WAN [Wide Area Networks]

Definitions

  • the present invention relates to the field of smart homes, and in particular to a network control device, a smart home system and a control method thereof.
  • the smart home In the existing smart home system, the smart home is generally controlled through the Internet.
  • the inventor has found that some home devices in the prior art do not support the connection to the Internet, or the Internet devices are high and cannot be used.
  • the home device is set up as a networkable home device, and some home devices cannot be controlled through the Internet.
  • the embodiment of the invention provides a network control device, a smart home system and a control method thereof, so as to solve the problem that the home device cannot be controlled through the Internet in the prior art.
  • a network control apparatus includes: a first wireless transmission module, configured on the networking board, configured to perform wireless communication by using a first wireless communication protocol; and a second wireless transmission module, configured on the main control board, Performing wireless communication by using a second wireless communication protocol; the processor is disposed on the main control board, is connected to the second wireless transmission module, and is connected to the first wireless transmission module, and is configured to receive After the second wireless signal transmitted by the second wireless communication protocol, converting the second wireless signal into a first wireless signal transmitted by using the first wireless communication protocol; or receiving the first wireless communication protocol After the wireless signal, converting the first wireless signal to the second wireless signal transmitted by using a second wireless communication protocol, wherein the second wireless signal is transmitted by the second wireless transmission module, A wireless signal is transmitted by the first wireless transmission module.
  • the second wireless transmission module is further configured to communicate with a smart home device, and the first wireless transmission module is further configured to communicate with a server.
  • the network control device further includes a sensor board connected to the processor and configured with one or more sensors.
  • the senor comprises: a smoke detecting sensor, a temperature detecting sensor, a light sensor and a humidity sensor.
  • the sensor board is further provided with an infrared emitter connected to the processor for transmitting an infrared control command according to the indication of the processor.
  • the networking board comprises: a wired communication interface and a WIFI module; or a GPRS module and a 3G module.
  • the wired communication interface is an RJ45 interface.
  • the second wireless transmission module includes one or more of the following communication modules: a 433M communication module, a Bluetooth communication module, and a Zigbee communication module.
  • a control method of a smart home system includes: controlling the smart home device by using any one of the above network control devices, and the control method of the smart home system includes: receiving and controlling the use of the smart home device a first control command transmitted by the wireless communication protocol; converting the first control command to a second control command transmitted using the second wireless communication protocol; and transmitting the second control command to the smart home device to control the Smart home equipment.
  • the receiving, by the network control device, the first control command that controls the transmission by the first wireless communication protocol of the smart home device comprises: receiving the first control command from a server, where the first control command is received by the terminal Sent to the server.
  • the control method of the smart home system before receiving the first control command that controls the transmission of the smart home device by using the first wireless communication protocol, includes: acquiring a sensor in the network control device to detect the smart Parameter data of the home device; the processor in the network control device generates a control command for controlling the smart home device according to the parameter data; and using a control command for controlling the smart home device as the first control command.
  • sending the second control command to the smart home device to control the smart home device comprises: sending the first control command to the smart home device by using an infrared transmitter in the network control device .
  • a smart home system includes: a smart home device; any one of the above network control devices for controlling the smart a home device; a terminal, configured to send a control command for controlling the smart home device; a server, configured to receive the control command of the terminal, and send the control command to the network control device.
  • a first wireless transmission module is disposed on the network board for wireless communication using a first wireless communication protocol
  • a second wireless transmission module is disposed on the main control board for using the second wireless
  • the communication protocol performs wireless communication
  • the processor is disposed on the main control board, is connected to the second wireless transmission module, and is connected to the first wireless transmission module, and is configured to receive the second transmission by using the second wireless communication protocol After the wireless signal, converting the second wireless signal into the first wireless signal transmitted by using the first wireless communication protocol; or, after receiving the first wireless signal transmitted by using the first wireless communication protocol, converting the first wireless signal into a second wireless signal transmitted by using a second wireless communication protocol, wherein the second wireless signal is transmitted by the second wireless transmission module, and the first wireless signal is transmitted by the first wireless transmission module, and the different communication can be adopted by using the foregoing embodiment Communication between the protocol server and the smart home device, enabling the server to send to the smart home device Command system, thereby solving the problem can not control the smart home equipment due to different communication protocols
  • FIG. 1 is a schematic diagram of a smart home system in accordance with an embodiment of the present invention.
  • FIG. 2 is a schematic diagram of a network control apparatus according to an embodiment of the present invention.
  • FIG. 3 is a schematic diagram of controlling opening of a door lock by a network control device according to an embodiment of the present invention
  • FIG. 4 is a flow chart of a method of controlling a smart home system in accordance with an embodiment of the present invention.
  • the smart home system includes: a network control device 100, a terminal 200, a server 300, and a smart home device 400.
  • the terminal 200 may be a mobile device such as a tablet or a mobile phone, or may be a device such as a PC, and may send a control command for controlling the smart home device 400 to the server 300, and the server 300 sends a control command from the terminal 200 to the network control device 100.
  • the network control device 100 controls the smart home device 400 in accordance with a control command.
  • the network control device 100 can convert the control command from the server 300 and send the converted control command according to a communication protocol that the smart home device 400 can support to complete the control of the smart home device.
  • the smart home system can realize control of the smart home device through the network control device, and the network control device can implement the conversion of the received control command, and send the converted control command according to the communication protocol supported by the smart home device, thereby making the smart
  • the home equipment can receive the control command, that is, the use of the terminal to control the smart home device by using the Internet communication.
  • Embodiments of the present invention provide a network control apparatus.
  • the network control device can be used in a smart home system
  • FIG. 2 is a schematic diagram of a network control device according to an embodiment of the present invention.
  • the network control apparatus includes: a first wireless transmission module 102, a second wireless transmission module 104, and a processor 106.
  • the network board 10 and the main control board 20 are disposed on the base of the network control device.
  • the first wireless transmission module 102 is disposed on the networking board 10 for wireless communication using the first wireless communication protocol.
  • the second wireless transmission module 104 is disposed on the main control board 20 for wireless communication using the second wireless communication protocol.
  • the processor 106 is disposed on the main control board 20, is connected to the second wireless transmission module 104, and is connected to the first wireless transmission module 102 for receiving the second wireless signal transmitted by using the second wireless communication protocol. Converting the second wireless signal into the first wireless signal transmitted by using the first wireless communication protocol; or converting the first wireless signal to adopting the second after receiving the first wireless signal transmitted by using the first wireless communication protocol A second wireless signal transmitted by the wireless communication protocol, wherein the second wireless signal is transmitted by the second wireless transmission module 104, and the first wireless signal is transmitted by the first wireless transmission module 102.
  • the first wireless transmission module 102 and the second wireless transmission module 104 are respectively disposed on the main control board 20 and the networking board 10, and the processor 106 receives the first wireless transmission from the first wireless transmission module 102.
  • the wireless signal is converted and transmitted to the second wireless transmission module 104 through the second wireless communication protocol, that is, after the processor 106 receives the control command for controlling the smart home device, the control command is converted into the
  • the wireless signal transmitted by the wireless communication protocol supported by the controlled smart home device is sent to the smart home device through the first wireless transmission module 102 to control the smart home device.
  • the processor 106 After receiving the second wireless signal sent by the second wireless transmission module 104, the processor 106 converts the wireless signal, and converts the second wireless signal into a signal supported by the communication protocol used by the server, that is, from the smart The wireless signal of the home device is converted into a wireless signal sent to the server to return data to the server.
  • the second wireless transmission module 104 is further configured to communicate with the smart home device
  • the first wireless transmission module 102 is further configured to communicate with the server.
  • communication can be performed between the server and the smart home device adopting different communication protocols, so that the server can send control commands to the smart home device, thereby solving the problem that the smart home device cannot be caused by different communication protocols.
  • the problem of control has achieved the effect of controlling the smart home equipment.
  • the first wireless transmission module 102 comprises: a wired communication interface and a WIFI module; or a GPRS module and a 3G module.
  • the first wireless transmission module 102 needs to be connected to the server through the Internet.
  • the connection to the Internet may be a WIFI module, a GPRS module, a 3G module, and a wired communication interface, and the limited communication interface may be an RJ45 interface.
  • the first wireless output module 102 including different modules may be disposed on the networking board 10 according to the use environment.
  • the first wireless transmission module 102 adopts a wired communication interface and a WIFI module, and is in an environment capable of connecting a network such as a broadband.
  • the two modules are connected to the Internet; in an environment without a network such as a broadband, the first wireless network transmission module 102 including the GPRS module and the 3G module can be used for communication. Selecting any one of the above two types of first wireless transmission modules is set in the network control device according to an environment in which the network control device is located. The flexibility of choice for the network control device allows the network control device to be adapted to more network environments.
  • the first wireless network transmission module is a GPRS module and a 3G module
  • the module is provided with a card slot for setting a communication card such as a SIM card.
  • the second wireless transmission module comprises one or more of the following communication modules: a 433M communication module, a Bluetooth communication module, and a Zigbee communication module. Since the wireless communication methods used by different smart home devices may be different, one or more wireless communication modules may be disposed on the second wireless communication module 104. In order to save energy, the smart home device adopts a low power communication method. Therefore, the communication method adopted by the second wireless communication module 104 is also a low power consumption communication method.
  • the user sends a door open command to the server through a terminal such as a PC, a tablet, or a mobile phone.
  • a terminal such as a PC, a tablet, or a mobile phone.
  • the server sends a door opening command to the network control device via the Internet, wherein the server can be connected to the network control device through a router, or directly connected to the network control device, and can also be connected to the network control device through GPRS.
  • the network control device converts the open command sent by the server, and sends the converted command to the door lock according to the communication protocol supported by the door lock.
  • the communication between the network control device and the door lock may be a communication method such as Bluetooth or Zigbee.
  • the embodiment can also be used in the management system of the hotel.
  • the management system When the user stays at the hotel, the management system will set an unlock password to the hotel door lock through the network control device, and send the unlock password to the user's mobile phone through the short message. , the user can use this password to unlock.
  • the user sends an unlock request to the hotel management system through the app installed on the mobile phone, and the hotel management system sends the unlock command to the door lock through the network control device to open the door.
  • the door lock in this embodiment can also pass the password and the key. And swipe open.
  • the network control device further includes a sensor board 30 coupled to the processor 106 and having one or more sensors 108 (shown in FIG. 2).
  • the indoor parameter is detected by a sensor provided in the network control device, and the sensor on the sensor board 30 may be a smoke detecting sensor, a temperature detecting sensor, a light sensor, a humidity sensor, etc., and the above sensors are respectively used for detecting indoor smoke amount and indoor temperature. , indoor light and indoor humidity.
  • the smoke sensor provided in the network control device can detect whether the amount of smoke in the room exceeds the standard, and if it exceeds a certain value, an alarm can be issued. For example, when the amount of smoke caused by indoor fire is excessive, an alarm can be issued; when the amount of smoke caused by indoor smoking is excessive, the exhaust fan can be controlled to be turned on.
  • the light when the light needs to be turned off, the light can be directly turned off to the light, or the power-inserted indicator of the smart plug-in board can be turned off to turn off the light.
  • the light sensor set in the network control device can detect the light intensity in the room, and automatically adjust the brightness of the indoor light according to the detected light intensity result, so that the indoor light maintains a consistent level when the external light changes, and the indoor light can be automatically adjusted. Save electricity.
  • the air conditioner, the humidifier, etc. can be automatically adjusted and controlled according to the temperature sensor, the humidity sensor, etc., to maintain the indoor environment in a comfortable state, and at the same time, the power can be saved. Therefore, the automatic control of the home environment can be realized by the network control device of the present invention, which makes the indoor environment more comfortable and more energy-saving.
  • the sensor board 30 is further provided with an infrared emitter 110 connected to the processor 106 (shown in FIG. 2) for Instructs to emit an infrared control command.
  • the data detected by the sensor on the sensor board 30 can be stored in the memory, and the processor reads the detection data of the sensor such as the temperature sensor and the smoke sensor, and runs the control in the memory.
  • the program obtains a control result, and according to the control result, the infrared emitter is controlled to issue a control command to the corresponding smart home device.
  • the data detected by the temperature sensor is stored in the storage, and the processor determines whether it is necessary to adjust the room temperature by analyzing the temperature data stored in the storage.
  • the infrared transmitter is used to adjust the temperature to the air conditioner.
  • the heating command is sent to achieve automatic intelligent adjustment of the temperature.
  • the dehumidification function of the air conditioner can be turned on or the humidifier can be turned on.
  • the data detected by each sensor of the network control device can also be uploaded to the server through the first wireless communication protocol, and the server analyzes the temperature, humidity, light and other data detected by the sensor, obtains a control command, and passes the control command through the first
  • a wireless communication protocol is sent to the network control device, and the network control device further sends the control command to each smart home device through the second wireless communication protocol.
  • the server stores the data detected by the above sensors as monitoring data of the operation status of the smart home device, and can monitor and analyze the running condition and fault condition of the device through the data.
  • the network control device adjusts the indoor light to a preset comfortable and power-saving value by default, and adaptively adjusts the light according to the actual light intensity detected by the light sensor, when the light sensor detects the value and the preset value.
  • the lamp or the lamp control device can be considered to be malfunctioning.
  • the network control device is provided with a sensor and an infrared emitter, which can analyze the data detected by the sensor, and use the infrared emitter to send the analysis result to the corresponding smart home device to realize the control of the smart home device.
  • This embodiment also provides a control method of a smart home system.
  • the control method of the smart home system uses the above network control device to control the smart home device.
  • the control method of the smart home system includes:
  • Step S102 Receive a first control command for controlling the transmission of the smart home device by using the first wireless communication protocol.
  • Step S104 converting the first control command into a second control command transmitted by using the second wireless communication protocol.
  • Step S106 Send a second control command to the smart home device to control the smart home device.
  • the network control device After receiving the control command for controlling the smart home device, the network control device converts the control command into a wireless signal transmitted by the wireless communication protocol supported by the controlled smart home device, and sends the wireless signal to the smart home device through the network control device. Control the smart home devices. After receiving the second wireless signal sent from the network control device, the network control device converts the wireless signal, and converts the second wireless signal into a signal supported by a communication protocol used by the server, that is, from the smart home device. The wireless signal is converted to a wireless signal sent to the server to return data to the server.
  • communication can be performed between the server and the smart home device adopting different communication protocols, so that the server can send control commands to the smart home device, thereby solving the problem that the smart home device cannot be caused by different communication protocols.
  • the problem of control has achieved the effect of controlling the smart home equipment.
  • receiving the first control command for controlling the smart home device to transmit by using the first wireless communication protocol comprises: receiving a first control command from the server, wherein the first control command is sent by the terminal to the server.
  • the first control command is sent by the server to the network control device, and the first control command is sent by the user to the server through the terminal, that is, the purpose of the user to control the smart home by sending a control command to the network control device through the terminal.
  • the control method of the smart home system before receiving the first control command that controls the transmission of the smart home device by using the first wireless communication protocol, includes: acquiring parameters of the smart home device detected by the sensor in the network control device; and network control The processor in the device generates a control command for controlling the smart home device according to the parameter data; and the control command for controlling the smart home device is used as the first control command.
  • sending the second control command to the smart home device to control the smart home device comprises: transmitting, by the infrared transmitter in the network control device, the first control command to the smart home device.
  • the data detected by the network control device through the sensor on the sensor board can be stored in the storage, the processor reads the detection data of the sensor such as the temperature sensor and the smoke sensor, and runs the control program in the storage to obtain the control result, according to the The control result controls the infrared emitter to issue control commands to the corresponding smart home device.
  • the data detected by the temperature sensor is stored in the storage, and the processor determines whether it is necessary to adjust the room temperature by analyzing the temperature data stored in the storage.
  • the infrared transmitter is used to adjust the temperature to the air conditioner.
  • the heating command is sent to achieve automatic intelligent adjustment of the temperature.
  • the initial function of the air conditioner can be turned on or the humidifier can be turned on according to the monitoring result of the humidity sensor.
  • the data detected by each sensor of the network control device can be uploaded to the server through the first wireless communication protocol, and the server analyzes the temperature, humidity, light and other data detected by the sensor, obtains a control command, and passes the control command through the first
  • the wireless communication protocol is sent to the network control device, and the network control device further sends the control command to each smart home device through the second wireless communication protocol.
  • the server stores the data detected by the above sensors as monitoring data of the operation status of the smart home device, and can monitor and analyze the running condition and fault condition of the device through the data.
  • the network control device adjusts the indoor light to a preset comfortable and power-saving value by default, and adaptively adjusts the light according to the actual light intensity detected by the light sensor, when the light sensor detects the value and the preset value.
  • the lamp or the lamp control device can be considered to be malfunctioning.
  • the network control device is provided with a sensor and an infrared emitter, which can analyze the data detected by the sensor, and use the infrared emitter to send the analysis result to the corresponding smart home device to realize the control of the smart home device.
  • the disclosed apparatus may be implemented in other ways.
  • the device embodiments described above are merely illustrative.
  • the division of the unit is only a logical function division.
  • there may be another division manner for example, multiple units or components may be combined or may be Integrate into another system, or some features can be ignored or not executed.
  • the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, device or unit, and may be electrical or otherwise.
  • the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, may be located in one place, or may be distributed to multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of the embodiment.
  • each functional unit in each embodiment of the present invention may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
  • the above integrated unit can be implemented in the form of hardware or in the form of a software functional unit.
  • the integrated unit if implemented in the form of a software functional unit and sold or used as a standalone product, may be stored in a computer readable storage medium.
  • the technical solution of the present invention which is essential or contributes to the prior art, or all or part of the technical solution, may be embodied in the form of a software product stored in a storage medium.
  • a number of instructions are included to cause a computer device (which may be a personal computer, mobile terminal, server or network device, etc.) to perform all or part of the steps of the methods described in various embodiments of the present invention.
  • the foregoing storage medium includes: a U disk, a Read-Only Memory (ROM), a Random Access Memory (RAM), a removable hard disk, a magnetic disk, or an optical disk, and the like. .

Abstract

本发明公开了一种网络控制装置、智能家居系统及其控制方法。其中,该网络控制装置包括:第一无线传输模块,设置在联网板上,用于采用第一无线通信协议进行无线通信;第二无线传输模块,设置在主控板上,用于采用第二无线通信协议进行无线通信;处理器,设置在主控板上,用于在接收到采用第二无线通信协议传输的第二无线信号后,将第二无线信号转换为采用第一无线通信协议传输的第一无线信号;或者,在接收到采用第一无线通信协议传输的第一无线信号后,将第一无线信号转换为采用第二无线通信协议传输的第二无线信号。通过本发明,解决了由于通信协议不同所造成的无法对智能家居设备进行控制的问题,达到了对智能家居设备进行控制的效果。

Description

网络控制装置、智能家居系统及其控制方法 技术领域
本发明涉及智能家居领域,具体而言,涉及一种网络控制装置、智能家居系统及其控制方法。
背景技术
现有的智能家居系统中,一般情况下通过互联网对智能家居进行控制,但是,发明人发现,现有技术中部分家居设备不支持连接互联网,或者,互联网的设备成较高而导致无法将所有的家居设备设置为可联网的家居设备,而导致有些家居设备无法通过互联网进行控制。
针对现有技术中家居设备无法通过互联网进行控制的问题,目前尚未提出有效的解决方案。
发明内容
本发明实施例提供了一种网络控制装置、智能家居系统及其控制方法,以解决现有技术中家居设备无法通过互联网进行控制的问题。
根据本发明实施例的一个方面,提供了一种网络控制装置。根据本发明实施例的网络控制装置包括:第一无线传输模块,设置在联网板上,用于采用第一无线通信协议进行无线通信;第二无线传输模块,设置在主控板上,用于采用第二无线通信协议进行无线通信;处理器,设置在所述主控板上,与所述第二无线传输模块相连接,并且与所述第一无线传输模块相连接,用于在接收到采用第二无线通信协议传输的第二无线信号后,将所述第二无线信号转换为采用第一无线通信协议传输的第一无线信号;或者,在接收到采用第一无线通信协议传输的第一无线信号后,将所述第一无线信号转换为采用第二无线通信协议传输的所述第二无线信号,其中,所述第二无线信号由所述第二无线传输模块传输,所述第一无线信号由所述第一无线传输模块传输。
可选地,所述第二无线传输模块还用于与智能家居设备进行通信,所述第一无线传输模块还用于与服务器进行通信。
可选地,所述网络控制装置还包括传感器板,与所述处理器相连接,设置一个或多个传感器。
可选地,所述传感器包括:烟雾检测传感器、温度检测传感器、光线传感器和湿度传感器。
可选地,所述传感器板还设置有红外发射器,与所述处理器相连接,用于根据所述处理器的指示发射红外控制命令。
可选地,所述联网板包括:有线通信接口和WIFI模块;或者GPRS模块和3G模块。
可选地,所述有线通信接口为RJ45接口。
可选地,所述第二无线传输模块包括下述一种或多种通信模块:433M通信模块、蓝牙通信模块和Zigbee通信模块。
根据本发明实施例的另一方面,提供了一种智能家居系统的控制方法。根据本发明实施例的智能家居系统的控制方法包括:采用上述任一项网络控制装置对智能家居设备进行控制,所述智能家居系统的控制方法包括:接收控制所述智能家居设备的采用第一无线通信协议传输的第一控制命令;将所述第一控制命令转换为采用第二无线通信协议传输的第二控制命令;以及向所述智能家居设备发送所述第二控制命令以控制所述智能家居设备。
可选地,网络控制装置接收控制所述智能家居设备的采用第一无线通信协议传输的第一控制命令包括:接收来自服务器的所述第一控制命令,其中,所述第一控制命令由终端发送给所述服务器。
可选地,在接收控制所述智能家居设备的采用第一无线通信协议传输的第一控制命令之前,所述智能家居系统的控制方法包括:获取所述网络控制装置中的传感器检测所述智能家居设备的参数数据;所述网络控制装置中的处理器根据所述参数数据生成控制所述智能家居设备的控制命令;以及将控制所述智能家居设备的控制命令作为所述第一控制命令。
可选地,向所述智能家居设备发送所述第二控制命令以控制所述智能家居设备包括:通过所述网络控制装置中的红外发射器向所述智能家居设备发送所述第一控制命令。
根据本发明实施例的另一方面,提供了一种智能家居系统。根据本发明实施例的智能家居系统包括:智能家居设备;上述任意一项网络控制装置,用于控制所述智能 家居设备;终端,用于发送控制所述智能家居设备的控制命令;服务器,用于接收所述终端的所述控制命令,并且将所述控制命令发送给所述网络控制装置。
根据本发明实施例,采用第一无线传输模块,设置在联网板上,用于采用第一无线通信协议进行无线通信;第二无线传输模块,设置在主控板上,用于采用第二无线通信协议进行无线通信;处理器,设置在主控板上,与第二无线传输模块相连接,并且与第一无线传输模块相连接,用于在接收到采用第二无线通信协议传输的第二无线信号后,将第二无线信号转换为采用第一无线通信协议传输的第一无线信号;或者,在接收到采用第一无线通信协议传输的第一无线信号后,将第一无线信号转换为采用第二无线通信协议传输的第二无线信号,其中,第二无线信号由第二无线传输模块传输,第一无线信号由第一无线传输模块传输,通过上述实施例,能够在采用不同的通信协议的服务器和智能家居设备之间进行通信,从而使得服务器能够向智能家居设备发送控制命令,进而解决了由于通信协议不同所造成的无法对智能家居设备进行控制的问题,达到了对智能家居设备进行控制的效果。
附图说明
构成本申请的一部分的附图用来提供对本发明的进一步理解,本发明的示意性实施例及其说明用于解释本发明,并不构成对本发明的不当限定。在附图中:
图1是根据本发明实施例的智能家居系统的示意图;
图2是根据本发明实施例的网络控制装置的示意图;
图3是根据本发明实施例的通过网络控制装置控制打开门锁的示意图;以及
图4是根据本发明实施例的智能家居系统的控制方法的流程图。
具体实施方式
需要说明的是,在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互组合。下面将参考附图并结合实施例来详细说明本发明。
为了使本技术领域的人员更好地理解本发明方案,下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分的实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都应当属于本发明保护的范围。
需要说明的是,本发明的说明书和权利要求书及上述附图中的术语“第一”、“第二”等是用于区别类似的对象,而不必用于描述特定的顺序或先后次序。应该理解这样使用的数据在适当情况下可以互换,以便这里描述的本发明的实施例。此外,术语“包括”和“具有”以及他们的任何变形,意图在于覆盖不排他的包含,例如,包含了一系列步骤或单元的过程、方法、系统、产品或设备不必限于清楚地列出的那些步骤或单元,而是可包括没有清楚地列出的或对于这些过程、方法、产品或设备固有的其它步骤或单元。
本发明实施例提供了一种智能家居系统。如图1所示,该智能家居系统包括:网络控制装置100、终端200、服务器300和智能家居设备400。其中,终端200可以是平板、手机等移动设备,还可以是PC等设备,可以向服务器300发送控制智能家居设备400的控制命令,服务器300将来自终端200的控制命令发送给网络控制装置100,网络控制装置100按照控制命令对智能家居设备400进行控制。其中,网络控制装置100可以将来自服务器300的控制命令进行转换,并按照智能家居设备400能够支持的通信协议发送该转换后的控制命令,以完成对智能家居设备的控制。该智能家居系统能够通过网络控制装置实现对智能家居设备的控制,由于网络控制装置可以实现对接收到的控制命令转换,并按照智能家居设备支持的通信协议发送转换后的控制命令,从而使得智能家居设备都能接收到控制命令,即实现了利用终端采用互联网通信对智能家居设备进行控制。
本发明实施例提供了一种网络控制装置。该网络控制装置可以用在智能家居系统中,图2是根据本发明实施例的网络控制装置的示意图。如图2所示,该网络控制装置包括:第一无线传输模块102、第二无线传输模块104和处理器106。其中,该网络控制装置的基板上设置有联网板10和主控板20。第一无线传输模块102设置在联网板10上,用于采用第一无线通信协议进行无线通信。第二无线传输模块104设置在主控板20上,用于采用第二无线通信协议进行无线通信。处理器106设置在主控板20上,与第二无线传输模块104相连接,并且与第一无线传输模块102相连接,用于在接收到采用第二无线通信协议传输的第二无线信号后,将第二无线信号转换为采用第一无线通信协议传输的第一无线信号;或者,在接收到采用第一无线通信协议传输的第一无线信号后,将第一无线信号转换为采用第二无线通信协议传输的第二无线信号,其中,第二无线信号由第二无线传输模块104传输,第一无线信号由第一无线传输模块102传输。
如图2所示,第一无线传输模块102和第二无线传输模块104分别设置在主控板20和联网板10上,处理器106在接收到来自第一无线传输模块102发送的第一无线 信号后,对该无线信号进行转换,并通过第二无线通信协议传输给第二无线传输模块104,即处理器106接收到对智能家居设备进行控制的控制命令后,将该控制命令转换为被控制的智能家居设备所支持的无线通信协议传输的无线信号,并通过第一无线传输模块102发送给智能家居设备,以对智能家居设备进行控制。处理器106在将接收到来自第二无线传输模块104发送的第二无线信号后,对该无线信号进行转换,将第二无线信号转换为服务器所采用的通信协议所支持的信号,即将来自智能家居设备的无线信号转换为发送给服务器的无线信号,以向服务器返回数据。优选地,第二无线传输模块104还用于与智能家居设备进行通信,第一无线传输模块102还用于与服务器进行通信。
通过上述实施例,能够在采用不同的通信协议的服务器和智能家居设备之间进行通信,从而使得服务器能够向智能家居设备发送控制命令,进而解决了由于通信协议不同所造成的无法对智能家居设备进行控制的问题,达到了对智能家居设备进行控制的效果。
优选地,第一无线传输模块102包括:有线通信接口和WIFI模块;或者GPRS模块和3G模块。第一无线传输模块102需要通过互联网与服务器相连接,连接到互联网的方式可以有WIFI模块、GPRS模块、3G模块和有线通信接口,有限通信接口可以是RJ45接口。根据使用环境的不同,在联网板10上可以设置包括不同模块的第一无线输出模块102,例如,第一无线传输模块102采用有线通信接口和WIFI模块,在能够连接宽带等的网络的环境下通过这两个模块连接到互联网;在没有宽带等网络的环境中,可以采用包括GPRS模块和3G模块的第一无线网络传输模块102进行通信。根据该网络控制装置所处的环境选择上述两种第一无线传输模块中的任意一种模块设置在该网络控制装置中。为网络控制装置提供了选择的灵活性,使得该网络控制装置能适用更多的网络环境。在第一无线网络传输模块为GPRS模块和3G模块时,该模块上设置有卡槽,用于设置SIM卡等通讯卡。
优选地地,第二无线传输模块包括下述一种或多种通信模块:433M通信模块、蓝牙通信模块和Zigbee通信模块。由于不同的智能家居设备所采用的无线通信方式可能不同,因此,在第二无线通信模块104上可以设置一种或者多种无线通信模块,为了节约能源,智能家居设备采用低功耗的通讯方式,因此,第二无线通信模块104所采用的通信方式也为低功耗的通信方式。
以下以门锁为例对本实施例进行说明,如图3所示。
①用户通过PC、平板和手机等终端向服务器发送开门指令。
②服务器通过互联网向网络控制装置发送开门指令,其中,服务器可以通过路由器与该网络控制装置相连接,还可以直接与该网络控制装置相连接,还可以通过GPRS与网络控制装置相连接。
③网络控制装置将服务器发送的开门指令进行转换,并将转换后的指令按照门锁支持的通信协议发送给门锁。此时,网络控制装置与门锁的通信可以是蓝牙、Zigbee等通信方式。
需要说明的是,本实施例也可以用在酒店的管理系统中,用户入住酒店时,管理系统将通过网络控制装置向酒店门锁设置开锁密码,并将该开锁密码通过短信息发送到用户手机,用户可以使用该密码开锁。或者,用户通过手机上安装的app向酒店管理系统发送开锁请求,酒店管理系统将该开锁命令通过网络控制装置下发到门锁,实现开门,该实施例中的门锁也可以通过密码、钥匙和刷卡打开。
可选地,为了检测室内数据,该网络控制装置还包括传感器板30,与处理器106相连接,设置一个或多个传感器108(如图2所示)。通过网络控制装置中设置的传感器对室内的参数进行检测,传感器板30上的传感器可以为烟雾检测传感器、温度检测传感器、光线传感器和湿度传感器等,上述传感器分别用于检测室内烟雾量、室内温度、室内光线和室内湿度等。
例如,网络控制装置中设置的烟雾传感器可以检测室内的烟雾量是否超标,如果超出一定值,可以发出警报。例如,当室内失火所导致的烟雾量超标时,可以发出警报;当室内吸烟所导致的烟雾量超标时,可以控制开启排风扇。
例如,为了方便调节室内光线,需要关灯时,可以直接对灯具发出关灯指示,也可以对灯具所连接的智能插板发出断电指示,从而实现关灯。网络控制装置中设置的光线传感器可以探测室内的光线强度,根据探测到的光线强度结果自动调节室内照明灯的亮度,从而使室内光照在外界光线变化时保持一致的水平,室内光线的自动调节可以节省电力。同理可以根据温度传感器、湿度传感器等通过对空调、加湿器等进行自动调节控制,维持室内环境处于舒适状态,同时能够节省电力。因此,可以通过本发明的网络控制装置实现对家居环境的自动智能控制,使室内环境更加舒适,也更加省电。
可选地,为了根据传感器检测得到的数据对智能家居设备进行控制,传感器板30上还设置有红外发射器110,与处理器106(如图2所示)相连接,用于根据处理器的指示发射红外控制命令。通过传感器板30上的传感器检测到的数据可以存储在储存器中,处理器读取温度传感器、烟雾传感器等传感器的检测数据,并运行储存器中的控 制程序,得到控制结果,根据该控制结果控制红外发射器向相应的智能家居设备发出控制命令。
例如,温度传感器检测的数据存储在储存器中,处理器通过分析储存器中存储的温度的数据,判断是否需要对室温进行调节,当判断出室温较低需要升温时,通过红外发射器向空调发送加热指令,从而实现了温度的自动智能调节。同理,可以根据湿度传感器的监控结果选择开启空调的除湿功能或开启加湿器。
网络控制装置的各传感器检测到的数据,还可以通过第一无线通讯协议上传至服务器,由服务器对传感器检测到的温度、湿度、光线等数据进行分析,获得控制指令,并将控制指令通过第一无线通讯协议下发至网络控制装置,网络控制装置再进一步通过第二无线通讯协议将控制命令发送给各智能家居设备。
此外,服务器储存上述各传感器检测到的数据,作为智能家居设备运行情况的监控数据,可以通过这些数据对设备的运行情况、故障情况进行监控和分析。
例如:网络控制装置默认将室内光线调节为预先设置的舒适且省电的数值,根据光线传感器探测到的实际光照强度对灯光做自适应调节,当光线传感器探测到的值与预先设定的值一直存在差别时,可以认为灯或者灯控制装置故障。
同理,对于湿度、温度监控值,同样可以作为设备运行状态或故障情况分析的依据。
通过上述实施例,在采用不同的通信协议的服务器和智能家居设备之间进行通信,从而使得服务器能够向智能家居设备发送控制命令,进而解决了由于通信协议不同所造成的无法对智能家居设备进行控制的问题,达到了对智能家居设备进行控制的效果。同时,在网络控制装置上设置有传感器和红外发射器,能够对传感器检测的数据进行分析,并利用红外发射器将分析结果发送给相应的智能家居设备,以实现对智能家居设备进行控制。
本实施例还提供了一种智能家居系统的控制方法。该智能家居系统的控制方法采用上述的网络控制装置对智能家居设备进行控制,如图4所示,该智能家居系统的控制方法包括:
步骤S102,接收控制智能家居设备的采用第一无线通信协议传输的第一控制命令。
步骤S104,将第一控制命令转换为采用第二无线通信协议传输的第二控制命令。
步骤S106,向智能家居设备发送第二控制命令以控制智能家居设备。
网络控制装置接收到对智能家居设备进行控制的控制命令后,将该控制命令转换为被控制的智能家居设备所支持的无线通信协议传输的无线信号,并通过网络控制装置发送给智能家居设备,以对智能家居设备进行控制。网络控制装置在将接收到来自网络控制装置发送的第二无线信号后,对该无线信号进行转换,将第二无线信号转换为服务器所采用的通信协议所支持的信号,即将来自智能家居设备的无线信号转换为发送给服务器的无线信号,以向服务器返回数据。
通过上述实施例,能够在采用不同的通信协议的服务器和智能家居设备之间进行通信,从而使得服务器能够向智能家居设备发送控制命令,进而解决了由于通信协议不同所造成的无法对智能家居设备进行控制的问题,达到了对智能家居设备进行控制的效果。
优选地,接收控制智能家居设备的采用第一无线通信协议传输的第一控制命令包括:接收来自服务器的第一控制命令,其中,第一控制命令由终端发送给服务器。
第一控制命令是由服务器发送给网络控制装置的,该第一控制命令是用户通过终端发送给服务器的,即达到了用户通过终端向网络控制装置发送控制命令来控制智能家居的目的。
可选地,在接收控制智能家居设备的采用第一无线通信协议传输的第一控制命令之前,智能家居系统的控制方法包括:获取网络控制装置中的传感器检测智能家居设备的参数数据;网络控制装置中的处理器根据参数数据生成控制智能家居设备的控制命令;以及将控制智能家居设备的控制命令作为第一控制命令。
可选地,向智能家居设备发送第二控制命令以控制智能家居设备包括:通过网络控制装置中的红外发射器向智能家居设备发送第一控制命令。
网络控制装置通过传感器板上的传感器检测到的数据可以存储在储存器中,处理器读取温度传感器、烟雾传感器等传感器的检测数据,并运行储存器中的控制程序,得到控制结果,根据该控制结果控制红外发射器向相应的智能家居设备发出控制命令。
例如,温度传感器检测的数据存储在储存器中,处理器通过分析储存器中存储的温度的数据,判断是否需要对室温进行调节,当判断出室温较低需要升温时,通过红外发射器向空调发送加热指令,从而实现了温度的自动智能调节。同理,可以根据湿度传感器的监控结果选择开启空调的初始功能或开启加湿器。
网络控制装置的各传感器检测到的数据,可以通过第一无线通讯协议上传至服务器,由服务器对传感器检测到的温度、湿度、光线等数据进行分析,获得控制指令,并将控制指令通过第一无线通讯协议下发至网络控制装置,网络控制装置再进一步通过第二无线通讯协议将控制命令发送给各智能家居设备。
此外,服务器储存上述各传感器检测到的数据,作为智能家居设备运行情况的监控数据,可以通过这些数据对设备的运行情况、故障情况进行监控和分析。
例如:网络控制装置默认将室内光线调节为预先设置的舒适且省电的数值,根据光线传感器探测到的实际光照强度对灯光做自适应调节,当光线传感器探测到的值与预先设定的值一直存在差别时,可以认为灯或者灯控制装置故障。
同理,对于湿度、温度监控值,同样可以作为设备运行状态或故障情况分析的依据。
通过上述实施例,在采用不同的通信协议的服务器和智能家居设备之间进行通信,从而使得服务器能够向智能家居设备发送控制命令,进而解决了由于通信协议不同所造成的无法对智能家居设备进行控制的问题,达到了对智能家居设备进行控制的效果。同时,在网络控制装置上设置有传感器和红外发射器,能够对传感器检测的数据进行分析,并利用红外发射器将分析结果发送给相应的智能家居设备,以实现对智能家居设备进行控制。
需要说明的是,对于前述的各方法实施例,为了简单描述,故将其都表述为一系列的动作组合,但是本领域技术人员应该知悉,本发明并不受所描述的动作顺序的限制,因为依据本发明,某些步骤可以采用其他顺序或者同时进行。其次,本领域技术人员也应该知悉,说明书中所描述的实施例均属于优选实施例,所涉及的动作和模块并不一定是本发明所必须的。
在上述实施例中,对各个实施例的描述都各有侧重,某个实施例中没有详述的部分,可以参见其他实施例的相关描述。
在本申请所提供的几个实施例中,应该理解到,所揭露的装置,可通过其它的方式实现。例如,以上所描述的装置实施例仅仅是示意性的,例如所述单元的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个单元或组件可以结合或者可以集成到另一个系统,或一些特征可以忽略,或不执行。另一点,所显示或讨论的相互之间的耦合或直接耦合或通信连接可以是通过一些接口,装置或单元的间接耦合或通信连接,可以是电性或其它的形式。
所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部单元来实现本实施例方案的目的。
另外,在本发明各个实施例中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。上述集成的单元既可以采用硬件的形式实现,也可以采用软件功能单元的形式实现。
所述集成的单元如果以软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。基于这样的理解,本发明的技术方案本质上或者说对现有技术做出贡献的部分或者该技术方案的全部或部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可为个人计算机、移动终端、服务器或者网络设备等)执行本发明各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、只读存储器(ROM,Read-Only Memory)、随机存取存储器(RAM,Random Access Memory)、移动硬盘、磁碟或者光盘等各种可以存储程序代码的介质。
以上所述仅为本发明的优选实施例而已,并不用于限制本发明,对于本领域的技术人员来说,本发明可以有各种更改和变化。凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。

Claims (13)

  1. 一种网络控制装置,包括:
    第一无线传输模块,设置在联网板上,用于采用第一无线通信协议进行无线通信;
    第二无线传输模块,设置在主控板上,用于采用第二无线通信协议进行无线通信;
    处理器,设置在所述主控板上,与所述第二无线传输模块相连接,并且与所述第一无线传输模块相连接,用于在接收到采用第二无线通信协议传输的第二无线信号后,将所述第二无线信号转换为采用第一无线通信协议传输的第一无线信号;或者,在接收到采用第一无线通信协议传输的第一无线信号后,将所述第一无线信号转换为采用第二无线通信协议传输的所述第二无线信号,其中,所述第二无线信号由所述第二无线传输模块传输,所述第一无线信号由所述第一无线传输模块传输。
  2. 根据权利要求1所述的网络控制装置,其中,所述第二无线传输模块还用于与智能家居设备进行通信,所述第一无线传输模块还用于与服务器进行通信。
  3. 根据权利要求1或2所述的网络控制装置,其中,所述网络控制装置还包括传感器板,与所述处理器相连接,设置一个或多个传感器。
  4. 根据权利要求3所述的网络控制装置,其中,所述传感器包括:
    烟雾检测传感器、温度检测传感器、光线传感器和湿度传感器。
  5. 根据权利要求3所述的网络控制装置,其中,所述传感器板还设置有红外发射器,与所述处理器相连接,用于根据所述处理器的指示发射红外控制命令。
  6. 根据权利要求1所述的网络控制装置,其中,所述联网板包括:有线通信接口和WIFI模块;或者GPRS模块和3G模块。
  7. 根据权利要求6所述的网络控制装置,其中,所述有线通信接口为RJ45接口。
  8. 根据权利要求1所述的网络控制装置,其中,所述第二无线传输模块包括下述一种或多种通信模块:
    433M通信模块、蓝牙通信模块和Zigbee通信模块。
  9. 一种智能家居系统的控制方法,采用权利要求1至8中任一项所述的网络控制装置对智能家居设备进行控制,所述智能家居系统的控制方法包括:
    接收控制所述智能家居设备的采用第一无线通信协议传输的第一控制命令;
    将所述第一控制命令转换为采用第二无线通信协议传输的第二控制命令;以及
    向所述智能家居设备发送所述第二控制命令以控制所述智能家居设备。
  10. 根据权利要求9所述的智能家居系统的控制方法,其中,接收控制所述智能家居设备的采用第一无线通信协议传输的第一控制命令包括:
    接收来自服务器的所述第一控制命令,其中,所述第一控制命令由终端发送给所述服务器。
  11. 根据权利要求9所述的智能家居系统的控制方法,其中,在接收控制所述智能家居设备的采用第一无线通信协议传输的第一控制命令之前,所述智能家居系统的控制方法包括:
    获取所述网络控制装置中的传感器检测所述智能家居设备的参数数据;
    所述网络控制装置中的处理器根据所述参数数据生成控制所述智能家居设备的控制命令;以及
    将控制所述智能家居设备的控制命令作为所述第一控制命令。
  12. 根据权利要求11所述的智能家居系统的控制方法,其中,向所述智能家居设备发送所述第二控制命令以控制所述智能家居设备包括:
    通过所述网络控制装置中的红外发射器向所述智能家居设备发送所述第一控制命令。
  13. 一种智能家居系统,包括:
    智能家居设备;
    权利要求1-8中任一项所述的网络控制装置,用于控制所述智能家居设备;
    终端,用于发送控制所述智能家居设备的控制命令;
    服务器,用于接收所述终端的所述控制命令,并且将所述控制命令发送给所述网络控制装置。
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