WO2018103623A1 - 终端控制方法和装置、终端系统 - Google Patents

终端控制方法和装置、终端系统 Download PDF

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Publication number
WO2018103623A1
WO2018103623A1 PCT/CN2017/114566 CN2017114566W WO2018103623A1 WO 2018103623 A1 WO2018103623 A1 WO 2018103623A1 CN 2017114566 W CN2017114566 W CN 2017114566W WO 2018103623 A1 WO2018103623 A1 WO 2018103623A1
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terminal
control
port
function
control function
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PCT/CN2017/114566
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English (en)
French (fr)
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刘国华
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深圳市国华识别科技开发有限公司
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Publication of WO2018103623A1 publication Critical patent/WO2018103623A1/zh

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    • 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

Definitions

  • the present invention relates to the field of intelligent control technologies, and in particular, to a terminal control method and apparatus, and a terminal system.
  • a terminal control method for controlling, by a first terminal having a target control function, a second terminal that does not have the target control function includes: utilizing a location of the first terminal
  • the target control function receives the control signal; converts the control signal into a control command recognizable by the second terminal; and outputs the control command to the second terminal to control the second terminal.
  • the target control function includes at least one of a voice control function, a face recognition control function, and a gesture recognition control function.
  • the second terminal is provided with a system debugging port or a remote control port; the step of converting the control signal into a control command recognizable by the second terminal is: Converting to a control command that can be recognized by the system debug port or the remote control port of the second terminal; the step of outputting the control command to the second terminal is to pass the control command to the second The system debug port or the remote control port of the terminal is sent to the second terminal.
  • the system debug port includes a virtual system debug port.
  • the control command in the step of outputting the control command to the second terminal, is output to the second terminal by using wired or wireless communication.
  • a control device for a terminal configured to control, by a first terminal having a target control function, a second terminal that does not have the target control function, the control device comprising: a receiving module, configured to utilize the first terminal The target control function receives a control signal; the conversion module is configured to convert the control signal into a control command recognizable by the second terminal; and the sending module is configured to output the control command to the second terminal To control the second terminal.
  • the receiving module receives the control signal by using at least one of a voice control function, a face recognition control function, and a gesture recognition control function of the first terminal.
  • the second terminal is provided with a system debugging port or a remote control port; the conversion module is configured to convert the control signal into a system debugging port or a remote control port of the second terminal.
  • the sending module is configured to send the control command to the second terminal by using a system debugging port or a remote port of the second terminal.
  • the sending module is a wireless communication module or a wired communication module.
  • a terminal system comprising: a first terminal having a target control function and a second terminal not having the target control function; further comprising the control device according to any of the above embodiments; the control device passing the first terminal Controlling the second terminal.
  • the control method of the terminal controls the second terminal that does not have the target control function through the first terminal having the target control function, and realizes the traditional non-intelligent control terminals such as a washing machine, a refrigerator, an air conditioner, a lamp, and a speaker. Intelligent control to meet the user's need for traditional terminals that do not have intelligent control.
  • FIG. 1 is a flowchart of a method for controlling a terminal in an embodiment
  • FIG. 2 is a schematic diagram of control of a method for controlling a terminal in a specific embodiment
  • Fig. 3 is a block diagram showing the structure of a control device for a terminal in an embodiment.
  • the control method of the terminal is for controlling a second terminal that does not have the target control function by using a first terminal having a target control function.
  • the target control function may be an intelligent control function such as a voice control function, a face recognition control function, and a gesture recognition control function, or may be a conventional remote control function, a photoelectric control function, or the like.
  • the first terminal and the second terminal may each be an electric device such as a television, a washing machine, a refrigerator, an air conditioner, a lamp, a speaker, and a set top box. It is only required that the first terminal has a control function that is not available to the second terminal.
  • a method for controlling a terminal includes the following steps:
  • S110 Receive a control signal by using a target control function of the first terminal.
  • the target control function of the first terminal includes at least one of a voice control function, a face recognition control function, and a gesture recognition target control function.
  • the control signals may be voice control signals, face control signals, and gesture control signals.
  • the first terminal receives at least one of a voice control signal, a face control signal, and a gesture control signal.
  • the voice control function of the first terminal is capable of receiving a voice signal, thereby matching the received voice signal with a control command in the database, thereby identifying the voice signal as a control signal corresponding to the voice content.
  • the processor converts the control signal recognized by the first terminal into a control command that the second terminal can recognize.
  • the processor can be integrated into the first terminal or can function as a separate processing device. In this embodiment, the processor is integrated within the first terminal. Specifically, an instruction format recognizable by the second terminal is acquired, and then the control signal is converted into a control instruction having the instruction format.
  • the instruction format that the second terminal can recognize can be stored in the processor in advance, or can be directly obtained according to the control process.
  • the second terminal is provided with a system debugging port or a remote control port.
  • the first terminal converts the control signal into a system debugging port of the second terminal or a control that can be recognized by the remote control port
  • the instruction is sent to the second terminal through the system debugging port of the second terminal or the remote control port.
  • the system debugging port of the second terminal may be a virtual system debugging port.
  • the first terminal sends a control command to the second terminal through the virtual system debug port.
  • the control command may be output to the second control port by using a wired communication method or a wireless communication method.
  • connection mode supported by the second terminal may be acquired first, and then the first terminal is connected to the second terminal according to the connection mode.
  • the connection mode attempt sequence may also be set in advance, so that when the control command needs to be output, the connection between the first terminal and the second terminal is attempted in accordance with a preset connection manner until the connection is successful. After the two connections are successful, the control command can be output to the second terminal, thereby implementing control of the second terminal.
  • the control method of the terminal controls the second terminal that does not have the target control function through the first terminal having the target control function, and realizes the traditional non-intelligent control terminals such as a washing machine, a refrigerator, an air conditioner, a lamp, and a speaker. Intelligent control to meet the user's need for traditional terminals that do not have intelligent control.
  • the control signal is the voice signal 210
  • the first terminal is the smart TV 220
  • the second terminal includes the set top box 230.
  • the smart TV 220 receives the voice signal 210 using its own voice input device.
  • the smart TV 220 converts the voice signal 210 into a corresponding control signal through a database built in the internal voice recognition program to implement input of the voice control signal.
  • the smart TV 220 converts the input voice control signal into a control command having the command format according to an instruction format that the set top box 230 can recognize. After the smart TV 220 is connected to the set top box 230, a control command is sent to the set top box 230 to control the set top box 230.
  • the smart TV 220 can connect to the set top box 230 according to the connection mode by obtaining the connection mode supported by the set top box 230 in advance. In another embodiment, the smart TV 220 may also attempt to establish a connection between the smart TV 220 and the set top box 230 according to a preset connection manner until the two connections are successful.
  • the connection manner of the smart TV 220 and the set top box 230 may include at least three types: first, connecting through a system debugging port; second, connecting through a remote control port; and third, connecting through a virtual system debugging port.
  • the system debug port can be selected according to the system installed in the set top box 230. Use different debugging connections.
  • the set top box 230 adopts an Android system, so it can be connected through an adb (Android Debug Bridge) connection mode. When connected by this connection method, the set top box 230 needs to turn on the adb debugging function.
  • the set top box 230 After the set top box 230 turns on the adb debugging function, the set top box 230 will perform monitoring of the adb connection on the system debugging port such as the port 5555. Smart TV 220 and set top box 230 establish a socket connection through the port. The content transmitted on the socket follows the standard adb control protocol, that is, the control command after the conversion of the smart TV 220 needs to follow the standard adb control protocol.
  • the smart TV 220 sends control commands to the set top box 230 through the system debug port to simulate corresponding control events to effect control of the set top box 230.
  • the system debugging port is port 5555
  • the control command is a button control command. That is, the smart TV 220 converts the received control signal into a control command for simulating a button event and outputs it to the set top box 230 through the system debug port to implement the original button control function of the set top box 230 through the voice control function of the smart television 220.
  • the voice control of the set top box 230 is implemented using the voice control function of the smart TV 220.
  • the voice signal 210 When the smart TV 220 receives the voice signal 210 of the “increase volume”, the voice signal 210 is converted into a volume button control command that is up-regulated by the analog volume, and then sent to the set-top box 230, so that the set-top box 230 performs an increase in volume according to the volume button control command. Operation.
  • the first terminal when the control signal is used to operate an application within the set top box 230, the first terminal converts the received control signal to an am (android activity manager) control command.
  • Smart TV 220 sends an am control command to set top box 230 via port 5555 to simulate opening an application event.
  • the set top box 230 starts the am control command corresponding to the activity component of the application, thereby opening the application. Therefore, the set top box 230 can directly open the corresponding application on the set top box 230 after receiving the am control command.
  • the smart TV 220 can be connected to the set top box 230 according to a remote control protocol provided by the set top box 230. Specifically, the smart TV 220 converts the control signal into a control command having an instruction format adopted by the remote control protocol followed by the remote control port, and then transmits the control command to the set top box 230 through the remote control port.
  • the remote control protocol can be a private remote control protocol.
  • the set top box 230 can transmit control commands through the remote control port when the adb debugging function is turned off.
  • the set top box 230 adopts a remote control protocol for the TCP/IP protocol, that is, its remote control protocol.
  • the data is included as a TCP/IP packet.
  • the smart TV 220 can capture the TCP/IP data packet through the bottom layer of the network, and then analyze the composition of the remote control protocol data packet, thereby constructing a control data packet conforming to the TCP/IP protocol according to the generated control command and corresponding to the remote control protocol.
  • the port is output to the set top box 230, and thus the operation control of the direction, volume, and mouse of the set top box 230 can be realized.
  • the system debug port includes a virtual system debug port.
  • the connection method for connecting through the virtual system debug port is for the set top box 230 that has neither a private remote control protocol nor a system debugging function.
  • the connection method needs to first install the background resident server on the set top box 230.
  • the background resident server listens to a network port that is connected to the smart TV 220. This network port acts as a virtual system debug port.
  • the background resident server listens to the virtual system debug port and receives the control command sent by the smart TV 220. After receiving the control command and obtaining the system permission of the set top box 230, the background resident server calls the adb simulation system to simulate the button event of the set top box 230 and open the TV application event.
  • the smart TV 220 acts as a control center to connect to the set top box 230 of the same local area network by any of the above connection methods, converts the received voice signal 210 into a control command recognizable by the set top box 230, and sends the control command to the set top box 230.
  • voice control of the set top box 230 that does not support voice signal input is implemented.
  • the second terminal may further include a lamp 270, a refrigerator 250, an air conditioner 260, and the like.
  • the smart TV 220 can be connected to the set top box 230 by wireless communication or connected to the set top box 230 by wired communication.
  • the wireless communication method includes a wifi connection method, a Bluetooth connection method, and the like.
  • the wired communication method includes a wired telecommunication connection method and the like.
  • the smart TV 220 is connected to the second terminal by using a wireless communication method, and the recognized control command is transmitted to the lamp 270, the refrigerator 250, and the air conditioner 260 through the wifi-to-infrared transmitter 240.
  • the wifi to infrared transmitter 240 and the smart TV 220 are in the same local area network.
  • the wifi-to-infrared transmitter 240 listens to a virtual system debug port, and the smart TV 220 establishes a network connection with the wifi-to-infrared transmitter 240 through the virtual system debug port.
  • the smart TV 220 converts the received voice signal 210 into a control command and forwards it to the wifi-to-infrared transmitter 240.
  • the wifi-to-infrared transmitter 240 prestores a plurality of infrared code tables corresponding to the home appliances such as the lamp 270, the refrigerator 250, and the air conditioner 260, and has a corresponding relationship between the control command and the infrared code.
  • the wifi-to-infrared transmitter 240 can obtain the corresponding infrared code from the received control command, and The infrared emitter is used to generate infrared rays carrying the infrared code to complete the control of the target home appliance, thereby realizing an intelligent home experience.
  • Fig. 3 is a block diagram showing the structure of a control device for a terminal in an embodiment.
  • the control device of the terminal is configured to control the second terminal not having the target control function by the first terminal having the target control function.
  • the target control function may be an intelligent control function such as a voice control function, a face recognition control function, and a gesture recognition control function, or may be a conventional remote control function, a photoelectric control function, or the like.
  • the first terminal and the second terminal may each be an electric device such as a television, a washing machine, a refrigerator, an air conditioner, a lamp, a speaker, and a set top box. It is only required that the first terminal has a control function that is not available to the second terminal.
  • a control device of a terminal includes a receiving module 310, a converting module 320, and a transmitting module 330.
  • the receiving module 310 is configured to receive a control signal by using a target control function of the first terminal.
  • the target control function of the first terminal includes at least one of a voice control function, a face recognition control function, and a gesture recognition target control function.
  • the control signal may be a voice control signal, a face recognition signal control signal, and a gesture recognition signal control signal.
  • the first terminal of the smart television receives at least one of a voice control signal, a face control recognition signal, and a gesture recognition signal control signal.
  • the voice control function of the first terminal is capable of receiving a voice signal, thereby matching the received voice signal with a control command in the database, thereby identifying the voice signal as a control signal corresponding to the voice content.
  • the conversion module 320 is configured to convert the control signal into a control command recognizable by the second terminal.
  • the conversion module 320 functions as a processor to convert the control signal recognized by the first terminal into a control command recognizable by the second terminal.
  • the conversion module 320 can be integrated within the first terminal or can function as a separate processing device. In this embodiment, the conversion module 320 is integrated in the first terminal. Specifically, an instruction format recognizable by the second terminal is acquired, and then converted into a control instruction having the instruction format according to the control signal.
  • the instruction format that the second terminal can recognize can be stored in the processor in advance, or can be directly obtained according to the control process.
  • the sending module 330 is configured to output a control command to the second terminal to control the second terminal.
  • the second terminal is provided with a system debugging port or a remote control port.
  • the first terminal converts the control signal into a system debugging port of the second terminal or a control finger recognizable by the remote control port And sending the control command to the second terminal through the system debugging port of the second terminal or the remote control port.
  • the system debugging port of the second terminal may be a virtual system debugging port.
  • the first terminal sends a control command to the second terminal through the virtual system debug port.
  • the control command may be output to the second control port by using a wired communication method or a wireless communication method.
  • the connection mode supported by the second terminal may be acquired first, and then the first terminal is connected to the second terminal according to the connection mode.
  • the connection mode attempt sequence may be preset, so that when the control command needs to be output, the connection between the first terminal and the second terminal is attempted according to a preset connection manner, until two. The connection is successful. After the two connections are successful, the control command can be output to the second terminal, thereby implementing control of the second terminal.
  • the control device of the terminal controls the second terminal that does not have the target control function through the first terminal having the target control function, thereby realizing the traditional non-intelligent control terminals such as a washing machine, a refrigerator, an air conditioner, a lamp, and a speaker. Intelligent control to meet the user's need for traditional terminals that do not have intelligent control.
  • a terminal system includes a first terminal having a target control function and a second terminal not having a target control function, and further includes a control device of the terminal described in any of the above embodiments.
  • the terminal control device controls the second terminal by using the first terminal.

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Abstract

一种终端系统及终端控制方法及装置,包括,利用第一终端的目标控制功能接收控制信号(S110);将控制信号转换为第二终端能够识别的控制指令(S120);将控制指令输出给第二终端,以对第二终端进行控制(S130),实现对传统的不具备智能控制的终端的智能控制。

Description

终端控制方法和装置、终端系统 技术领域
本发明涉及智能控制技术领域,特别是涉及一种终端控制方法和装置、终端系统。
背景技术
近年来,随着智能控制技术的进步,越来越多的新智能终端集成了语音控制功能、人脸识别控制功能或者手势识别控制功能等,以满足用户在各种场景下的使用需求。传统的终端如洗衣机、冰箱、空调、灯以及音箱等均不具备这些智能控制功能,从而无法满足用户的使用需求。
发明内容
基于此,有必要提供一种能够利用具有目标控制功能的终端去控制另一不具备该目标控制功能的终端的控制方法和装置,还提供一种终端系统。
一种终端的控制方法,用于通过具有目标控制功能的第一终端对不具备所述目标控制功能的第二终端进行控制,其特征在于,所述方法包括:利用所述第一终端的所述目标控制功能接收控制信号;将所述控制信号转换为所述第二终端能够识别的控制指令;将所述控制指令输出给所述第二终端,以对所述第二终端进行控制。
在其中一个实施例中,所述目标控制功能包括语音控制功能、人脸识别控制功能和手势识别控制功能中的至少一种。
在其中一个实施例中,所述第二终端设置有系统调试端口或者遥控控制端口;所述将所述控制信号转换为所述第二终端能够识别的控制指令的步骤为,将所述控制信号转换为所述第二终端的系统调试端口或者遥控控制端口所能识别的控制指令;所述将所述控制指令输出给所述第二终端的步骤为,将所述控制指令通过所述第二终端的系统调试端口或者遥控端口发送给所述第二终端。
在其中一个实施例中,所述系统调试端口包括虚拟系统调试端口。
在其中一个实施例中,所述将所述控制指令输出给所述第二终端的步骤中,利用有线或者无线通信方式将所述控制指令输出给所述第二终端。
一种终端的控制装置,用于通过具有目标控制功能的第一终端对不具备所述目标控制功能的第二终端进行控制,所述控制装置包括:接收模块,用于利用所述第一终端的所述目标控制功能接收控制信号;转换模块,用于将所述控制信号转换为所述第二终端能够识别的控制指令;发送模块,用于将所述控制指令输出给所述第二终端,以对所述第二终端进行控制。
在其中一个实施例中,所述接收模块利用所述第一终端的语音控制功能、人脸识别控制功能和手势识别控制功能中的至少一种接收控制信号。
在其中一个实施例中,所述第二终端设置有系统调试端口或者遥控控制端口;所述转换模块用于将所述控制信号转换为所述第二终端的系统调试端口或者遥控控制端口所能识别的控制指令;所述发送模块用于将所述控制指令通过所述第二终端的系统调试端口或者遥控端口发送给所述第二终端。
在其中一个实施例中,所述发送模块为无线通信模块或者有线通信模块。
一种终端系统,包括具有目标控制功能的第一终端以及不具备所述目标控制功能的第二终端;还包括上述任一实施例所述的控制装置;所述控制装置通过所述第一终端对所述第二终端进行控制。
上述终端的控制方法,通过具有目标控制功能的第一终端对不具备目标控制功能的第二终端进行控制,实现对传统的不具备智能控制的终端如洗衣机、冰箱、空调、灯以及音箱等的智能控制,满足用户对传统不具备智能控制的终端的使用需求。
附图说明
图1为一实施例中的终端的控制方法的流程图;
图2为一具体实施例中的终端的控制方法的控制示意图;
图3为一实施例中的终端的控制装置的结构框图。
具体实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
图1为一实施例中的终端的控制方法的流程图。该终端的控制方法用于通过具有目标控制功能的第一终端对不具备所述目标控制功能的第二终端进行控制。目标控制功能可以为语音控制功能、人脸识别控制功能和手势识别控制功能等智能控制功能,也可以为传统的例如遥控控制功能、光电控制功能等。第一终端和第二终端均可以为电视机、洗衣机、冰箱、空调、灯、音箱以及机顶盒等电器设备。只需要第一终端具有第二终端所没有的一种控制功能即可。
如图1所示,一种终端的控制方法包括以下步骤:
S110,利用第一终端的目标控制功能接收控制信号。
在本实施例中,第一终端的目标控制功能包括语音控制功能、人脸识别控制功能和手势识别目标控制功能中的至少一种。相应的,控制信号可以为语音控制信号、人脸控制信号以及手势控制信号。第一终端接收语音控制信号、人脸控制信号以及手势控制信号中至少一种控制信号。具体地,第一终端的语音控制功能能够接收语音信号,从而将接收到的语音信号与数据库内的控制指令进行匹配,从而将语音信号识别为与该语音内容对应的控制信号。
S120,将控制信号转换为第二终端能够识别的控制指令。
处理器将第一终端识别到的控制信号转换为第二终端所能够识别的控制指令。处理器可以集成在第一终端内,也可以作为独立的处理设备来执行功能。在本实施例中,处理器集成在第一终端内。具体地,获取第二终端所能够识别的指令格式,然后将控制信号转换为具有该指令格式的控制指令。第二终端所能识别的指令格式可以预先存储在处理器内,也可以根据在控制过程中直接获取。
S130,将控制指令输出给第二终端,以对第二终端进行控制。
在本实施例中,第二终端设有系统调试端口或者遥控控制端口。第一终端将控制信号转换为第二终端的系统调试端口或者遥控控制端口所能识别的控制 指令,并将该控制指令通过第二终端的系统调试端口或者遥控控制端口发送给第二终端。其中,第二终端的系统调试端口可以为虚拟系统调试端口。第一终端通过虚拟系统调试端口将控制指令发送到第二终端。第一终端将控制指令输出给第二终端时,还可以利用有线通信方式或者无线通信方式将控制指令输出给第二控制端口。
在与第二终端的连接过程中,可以先获取第二终端所支持的连接方式,然后根据该连接方式控制第一终端与第二终端进行连接。也可以预先设定连接方式尝试顺序,从而在需要输出控制指令时,根据预先设定的连接方式顺序去尝试建立第一终端和第二终端之间的连接,直至二者连接成功为止。当二者连接成功后,即可将该控制指令输出给第二终端,从而实现对第二终端的控制。
上述终端的控制方法,通过具有目标控制功能的第一终端对不具备目标控制功能的第二终端进行控制,实现对传统的不具备智能控制的终端如洗衣机、冰箱、空调、灯以及音箱等的智能控制,满足用户对传统不具备智能控制的终端的使用需求。
图2为一具体实施例中的终端的控制方法的控制示意图。在本实施例中,控制信号为语音信号210,第一终端为智能电视220,第二终端包括机顶盒230。智能电视220利用自身配备的语音输入设备,接收语音信号210。智能电视220通过内部语音识别程序内置的数据库,将语音信号210转换为对应的控制信号,实现语音控制信号的输入。智能电视220根据机顶盒230所能识别的指令格式,将输入语音控制信号转换为具有该指令格式的控制指令。智能电视220连接机顶盒230后,将控制指令发送到机顶盒230,从而对机顶盒230进行控制。
智能电视220可以通过预先获取机顶盒230所支持的连接方式,然后根据该连接方式与机顶盒230进行连接。在另一实施例中,智能电视220内也可以根据预先设定的连接方式去尝试建立智能电视220和机顶盒230之间的连接,直至二者连接成功为止。
智能电视220和机顶盒230的连接方式可以包括至少三种:第一,通过系统调试端口进行连接;第二通过遥控控制端口进行连接;第三,通过虚拟系统调试端口进行连接。系统调试端口可以根据机顶盒230所安装系统的不同而采 用不同的调试连接方式。在本实施例中,机顶盒230采用安卓系统,因此其可以通过adb(Android Debug Bridge安卓调试桥)连接方式进行连接。在通过该连接方式进行连接时,机顶盒230需要打开adb调试功能。机顶盒230打开adb调试功能后,机顶盒230会在系统调试端口如5555端口做adb连接的监听。智能电视220和机顶盒230通过该端口建立socket连接。socket上传输的内容遵循标准的adb控制协议,也即此时智能电视220转换后的控制指令需要遵循标准的adb控制协议。
智能电视220通过系统调试端口发送控制指令给机顶盒230,模拟相应的控制事件以实现对机顶盒230的控制。在本实施例中,系统调试端口为5555端口,控制指令为按键控制指令。也即,智能电视220将接收到的控制信号转换为模拟按键事件的控制指令并通过系统调试端口输出给机顶盒230从而通过智能电视机220的语音控制功能来实现机顶盒230的原按键控制功能,进而利用智能电视220的语音控制功能来实现对机顶盒230的语音控制。如智能电视220接收“增大音量”的语音信号210时,该语音信号210转换成模拟音量上调的音量按键控制指令后发送给机顶盒230,从而使得机顶盒230根据该音量按键控制指令执行增大音量的操作。
在其他实施例中,当控制信号用于对机顶盒230内的应用程序进行操作时,第一终端会将接收到的控制信号转换为am(android activity manager)控制指令。智能电视220通过5555端口发送am控制指令给机顶盒230以模拟打开应用程序事件。具体的,机顶盒230接收到am控制指令后,开启am控制指令对应应用程序的activity组件,从而开启该应用程序。因此,机顶盒230接收到am控制指令后可实现直接打开机顶盒230上对应的应用程序。
智能电视220可以根据机顶盒230所具备的遥控控制协议与机顶盒230进行连接。具体地,智能电视220将控制信号转换为具有遥控控制端口所遵循的遥控控制协议所采用的指令格式的控制指令,然后将该控制指令通过遥控控制端口发送控制指令给机顶盒230。遥控控制协议可以为私有遥控控制协议。机顶盒230在关闭adb调试功能的情况下,可以通过遥控控制端口来传输控制指令。在本实施例中,机顶盒230采用遥控控制协议为TCP/IP协议,也即其遥控协议 数据包括为TCP/IP数据包。因此,智能电视220可以通过网络底层抓取TCP/IP数据包,然后分析遥控协议数据包构成,从而根据生成的控制指令构建出符合TCP/IP协议的控制数据包并通过该遥控控制协议对应的端口输出给机顶盒230,进而可以实现对机顶盒230的方向、音量以及鼠标等操作控制。
在一实施例中,系统调试端口包括虚拟系统调试端口。通过虚拟系统调试端口进行连接的连接方式是针对既没有私有遥控协议,也无法打开系统调试功能的机顶盒230。该连接方式需要先在机顶盒230上安装后台常驻服务器。后台常驻服务器会监听一个网络端口,该网络端口与智能电视220连接。该网络端口作为虚拟系统调试端口。后台常驻服务器监听该虚拟系统调试端口并接收智能电视220发送的控制指令。后台常驻服务器接收到控制指令,并获取到机顶盒230系统权限后,调用adb模拟系统模拟机顶盒230的按键事件及打开电视应用程序事件等。
综上所述,智能电视220作为控制中心通过上述任一连接方式连接同一局域网的机顶盒230,将接收到的语音信号210转换为机顶盒230能够识别的控制指令,并将该控制指令发送给机顶盒230,以对机顶盒230进行控制,实现对不支持语音信号输入的机顶盒230的语音操控。
参见图2,第二终端还可以包括灯270、冰箱250以及空调260等。智能电视220可以通过无线通信方式与机顶盒230进行连接,或者通过有线通信方式与机顶盒230进行连接。无线通信方式包括wifi连接方式、蓝牙连接方式等。有线通信方式包括有线电信连接方式等。在本实施例中,智能电视220采用无线通信方式与第二终端进行连接,通过wifi转红外发射器240将识别到的控制指令发送给灯270、冰箱250以及空调260等家电。具体地,wifi转红外发射器240和智能电视220处于同一局域网。wifi转红外发射器240监听一个虚拟系统调试端口,智能电视220通过该虚拟系统调试端口与wifi转红外发射器240建立网络连接。智能电视220将接收到的语音信号210转换成控制指令后转发给wifi转红外发射器240。wifi转红外发射器240内预存多种对应于灯270、冰箱250以及空调260等家电设备的红外码表,并内置了控制指令和红外码的对应关系。因此,wifi转红外发射器240可将接收到的控制指令获取对应的红外码,并 通过红外发射器生成携带有该红外码的红外线来完成对目标家电的控制,实现智能化家居体验。
图3为一实施例中的终端的控制装置的结构框图。该终端的控制装置用于通过具有目标控制功能的第一终端对不具备所述目标控制功能的第二终端进行控制。目标控制功能可以为语音控制功能、人脸识别控制功能和手势识别控制功能等智能控制功能,也可以为传统的例如遥控控制功能、光电控制功能等。第一终端和第二终端均可以为电视机、洗衣机、冰箱、空调、灯、音箱以及机顶盒等电器设备。只需要第一终端具有第二终端所没有的一种控制功能即可。
如图3所示,一种终端的控制装置包括接收模块310、转换模块320和发送模块330。
接收模块310用于利用第一终端的目标控制功能接收控制信号。第一终端的目标控制功能包括语音控制功能、人脸识别控制功能和手势识别目标控制功能中的至少一种。相应的,控制信号可以为包括语音控制信号、人脸识别信号控制信号以及手势识别信号控制信号。智能电视第一终端接收语音控制信号、人脸控制识别信号以及手势识别信号控制信号中至少一种控制信号。具体地,第一终端的语音控制功能能够接收语音信号,从而将接收到的语音信号与数据库内的控制指令进行匹配,从而将语音信号识别为与该语音内容对应的控制信号。
转换模块320用于将控制信号转换为第二终端能够识别的控制指令。转换模块320作为处理器,将第一终端识别到的控制信号转换为第二终端所能够识别的控制指令。转换模块320可以集成在第一终端内,也可以作为独立的处理设备来执行功能。在本实施例中,转换模块320集成在第一终端内。具体地,获取第二终端所能够识别的指令格式,然后根据将控制信号转换为具有该指令格式的控制指令。第二终端所能识别的指令格式可以预先存储在处理器内,也可以根据在控制过程中直接获取。
发送模块330用于将控制指令输出给第二终端,以对第二终端进行控制。在本实施例中,第二终端设有系统调试端口或者遥控控制端口。第一终端将控制信号转换为第二终端的系统调试端口或者遥控控制端口所能识别的控制指 令,并将该控制指令通过第二终端的系统调试端口或者遥控控制端口发送给第二终端。其中,第二终端的系统调试端口可以为虚拟系统调试端口。第一终端通过虚拟系统调试端口将控制指令发送到第二终端。第一终端将控制指令输出给第二终端时,还可以利用有线通信方式或者无线通信方式将控制指令输出给第二控制端口。
在一实施例中在与第二终端的连接过程中,可以先获取第二终端所支持的连接方式,然后根据该连接方式控制第一终端与第二终端进行连接。在另一实施例中,也可以预先设定连接方式尝试顺序,从而在需要输出控制指令时,根据预先设定的连接方式顺序去尝试建立第一终端和第二终端之间的连接,直至二者连接成功为止。当二者连接成功后,即可将该控制指令输出给第二终端,从而实现对第二终端的控制。上述终端的控制装置,通过具有目标控制功能的第一终端对不具备目标控制功能的第二终端进行控制,实现对传统的不具备智能控制的终端如洗衣机、冰箱、空调、灯以及音箱等的智能控制,满足用户对传统不具备智能控制的终端的使用需求。
一种终端系统,包括具有目标控制功能的第一终端以及不具备目标控制功能的第二终端,还包括上述任一实施例中所述的终端的控制装置。所述的终端控制装置通过第一终端对第二终端进行控制。
以上所述实施例的各技术特征可以进行任意的组合,为使描述简洁,未对上述实施例中的各个技术特征所有可能的组合都进行描述,然而,只要这些技术特征的组合不存在矛盾,都应当认为是本说明书记载的范围。
以上所述实施例仅表达了本发明的几种实施方式,其描述较为具体和详细,但并不能因此而理解为对发明专利范围的限制。应当指出的是,对于本领域的普通技术人员来说,在不脱离本发明构思的前提下,还可以做出若干变形和改进,这些都属于本发明的保护范围。因此,本发明专利的保护范围应以所附权利要求为准。

Claims (10)

  1. 一种终端的控制方法,用于通过具有目标控制功能的第一终端对不具备所述目标控制功能的第二终端进行控制,其特征在于,所述方法包括:
    利用所述第一终端的所述目标控制功能接收控制信号;
    将所述控制信号转换为所述第二终端能够识别的控制指令;
    将所述控制指令输出给所述第二终端,以对所述第二终端进行控制。
  2. 根据权利要求1所述的控制方法,其特征在于,所述目标控制功能包括语音控制功能、人脸识别控制功能和手势识别控制功能中的至少一种。
  3. 根据权利要求1所述的控制方法,其特征在于,所述第二终端设置有系统调试端口或者遥控控制端口;所述将所述控制信号转换为所述第二终端能够识别的控制指令的步骤为,将所述控制信号转换为所述第二终端的系统调试端口或者遥控控制端口所能识别的控制指令;
    所述将所述控制指令输出给所述第二终端的步骤为,将所述控制指令通过所述第二终端的系统调试端口或者遥控端口发送给所述第二终端。
  4. 根据权利要求3所述的控制方法,其特征在于,所述系统调试端口包括虚拟系统调试端口。
  5. 根据权利要求1所述的控制方法,其特征在于,所述将所述控制指令输出给所述第二终端的步骤中,利用有线或者无线通信方式将所述控制指令输出给所述第二终端。
  6. 一种终端的控制装置,用于通过具有目标控制功能的第一终端对不具备所述目标控制功能的第二终端进行控制,其特征在于,所述控制装置包括:
    接收模块,用于利用所述第一终端的所述目标控制功能接收控制信号;
    转换模块,用于将所述控制信号转换为所述第二终端能够识别的控制指令;
    发送模块,用于将所述控制指令输出给所述第二终端,以对所述第二终端进行控制。
  7. 根据权利要求6所述的控制装置,其特征在于,所述接收模块利用所述第一终端的语音控制功能、人脸识别控制功能和手势识别控制功能中的至少一 种接收控制信号。
  8. 根据权利要求6所述的控制装置,其特征在于,所述第二终端设置有系统调试端口或者遥控控制端口;
    所述转换模块用于将所述控制信号转换为所述第二终端的系统调试端口或者遥控控制端口所能识别的控制指令;
    所述发送模块用于将所述控制指令通过所述第二终端的系统调试端口或者遥控端口发送给所述第二终端。
  9. 根据权利要求6所述的控制装置,其特征在于,所述发送模块为无线通信模块或者有线通信模块。
  10. 一种终端系统,包括具有目标控制功能的第一终端以及不具备所述目标控制功能的第二终端;其特征在于,还包括权利要求6-9任一项所述的控制装置;所述控制装置通过所述第一终端对所述第二终端进行控制。
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