WO2015192588A1 - 一种无线控制方法、装置及系统 - Google Patents

一种无线控制方法、装置及系统 Download PDF

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Publication number
WO2015192588A1
WO2015192588A1 PCT/CN2014/090699 CN2014090699W WO2015192588A1 WO 2015192588 A1 WO2015192588 A1 WO 2015192588A1 CN 2014090699 W CN2014090699 W CN 2014090699W WO 2015192588 A1 WO2015192588 A1 WO 2015192588A1
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channel
sensing data
control
wireless
control signal
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PCT/CN2014/090699
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English (en)
French (fr)
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张楠
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西安中兴新软件有限责任公司
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Publication of WO2015192588A1 publication Critical patent/WO2015192588A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W88/00Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
    • H04W88/02Terminal devices

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  • the invention relates to a wireless transmission technology and a control technology of a wireless internet device, in particular to a wireless control method, device and system.
  • Wired function follows the 802.11 standard.
  • Wireless mice use wireless technology to communicate with computers, eliminating the need for wires.
  • the wireless communication methods commonly used include Bluetooth, Wi-Fi (IEEE 802.11), Infrared (IrDA), ZigBee (IEEE 802.15.4) and many other wireless technology standards, but for the current mainstream wireless mouse, only 27Mhz
  • 2.4G and Bluetooth wireless mice There are three types of 2.4G and Bluetooth wireless mice.
  • "2.4Ghz non-networking solution” is also known as 2.4G wireless network technology. Its advantage is to solve the shortcomings such as large power of 27Mhz, short transmission distance, and easy mutual interference of similar products.
  • the reason why 2.4G wireless technology is "2.4G” instead of "2.5G” is because the frequency used by this technology is 2.4-2.485GHz ISM wireless frequency band, which is free of charge for free use in most countries in the world. The popularity has cleared the biggest obstacles.
  • wireless Internet devices when using the Internet service, wireless control is needed to achieve wireless control, while users are hoping to go online. While the wireless Internet access device is used to access the Internet, the wireless Internet device itself can be used as a wireless mouse to implement the wireless control function.
  • the related technology does not propose an effective wireless control solution through the operation of the wireless Internet access device.
  • embodiments of the present invention are directed to providing a method, apparatus, and system for wireless control, which can implement a wireless control function by operating a wireless internet device.
  • An embodiment of the present invention provides a method for wireless control, where the method is applied to a wireless Internet access device, and the method includes: after receiving a control instruction, determining a first channel in response to the control instruction; a wireless control channel, different from a channel for transmitting service data of the Internet service; collecting and analyzing sensor data generated by operation of the wireless network device, converting the sensor data into a control signal; The channel transmits the control signal.
  • the method further includes: listening to a signal quality of a channel for transmitting information; setting a signal threshold; and correspondingly, determining, as the first channel, the channel whose signal quality is lower than the signal threshold.
  • the method further includes: receiving sensing data carrying the touch information; correspondingly, the collecting and analyzing the sensing data, and converting the sensing data into the control signal comprises: receiving the received The sensing data is parsed, and the touch information carried by the sensing data is collected; the touch information is analyzed to obtain an action direction indicated by the touch information; and the working direction is converted into a corresponding control signal.
  • the method further includes: receiving sensing data carrying the voice control information; correspondingly, the collecting and analyzing the sensing data, and converting the sensing data into the control signal comprises: receiving the received The sensing data is parsed, and the voice control information carried by the sensing data is collected; the voice control information is analyzed to obtain an action direction indicated by the voice control information; and the action direction is converted into a corresponding control signal.
  • the method further includes: receiving sensing data carrying gravity information; correspondingly, the collecting and analyzing the sensing data, and converting the sensing data into a control signal comprises: receiving the received The sensing data is parsed, and the gravity information carried by the sensing data is collected; The gravity information is analyzed to obtain an action direction indicated by the gravity information; and the action direction is converted into a corresponding control signal.
  • the embodiment of the present invention further provides a wireless control device, where the device is disposed in a wireless internet device, the device includes: a control module, an analysis module, and a sending module; wherein the control module is configured to receive control After the command, in response to the control instruction, determining a first channel; the first channel is a wireless control channel, different from a channel for transmitting service data of the Internet service; and the analyzing module is configured to collect and analyze the The sensing data generated by the operation of the wireless internet device converts the sensing data into a control signal; the transmitting module transmits the control signal through the first channel.
  • the apparatus further includes: a listening module configured to listen to a signal quality of a channel for transmitting information; and a signal threshold; correspondingly, the control module is configured to lower the signal quality
  • the channel of the signal threshold is determined to be the first channel.
  • the device further includes: a data module configured to receive the sensing data carrying the touch information; and correspondingly, the analyzing module is configured to parse the received sensing data, and collect the transmission Sensing the touch information carried by the data; analyzing the touch information to obtain an action direction indicated by the touch information; converting the action direction into a corresponding control signal.
  • a data module configured to receive the sensing data carrying the touch information
  • the analyzing module is configured to parse the received sensing data, and collect the transmission Sensing the touch information carried by the data; analyzing the touch information to obtain an action direction indicated by the touch information; converting the action direction into a corresponding control signal.
  • the device further includes: a data module configured to receive the sensing data carrying the voice control information; and correspondingly, the analyzing module is configured to parse the received sensing data, and collect the Sensing the voice control information carried by the data; analyzing the voice control information to obtain an action direction indicated by the voice control information; and converting the action direction into a corresponding control signal.
  • the device further includes: a data module configured to receive the sensing data carrying the gravity information; and correspondingly, the analyzing module is configured to parse the received sensing data, and collect the transmission Sensing the gravity information carried by the data; analyzing the gravity information to obtain an action direction indicated by the gravity information; and converting the action direction into a corresponding control signal.
  • a data module configured to receive the sensing data carrying the gravity information
  • the analyzing module is configured to parse the received sensing data, and collect the transmission Sensing the gravity information carried by the data; analyzing the gravity information to obtain an action direction indicated by the gravity information; and converting the action direction into a corresponding control signal.
  • the control module, the analysis module, the sending module, the listening module, the The data module can be implemented by a Central Processing Unit (CPU), a Digital Signal Processor (DSP), or a Field-Programmable Gate Array (FPGA).
  • CPU Central Processing Unit
  • DSP Digital Signal Processor
  • FPGA Field-Programmable Gate Array
  • the embodiment of the present invention further provides a wireless control system, where the system includes a wireless Internet access device and at least one receiving end, wherein the wireless Internet access device is configured to, after receiving the control command, respond to the control command to determine a channel; collecting and analyzing sensing data generated by operation of the wireless internet device, converting the sensor data into a control signal; transmitting the control signal through the first channel; the first channel is wireless The control channel is different from the channel for transmitting the service data of the Internet service; the receiving end is configured to receive the control signal, and perform corresponding operations according to the control signal.
  • the wireless internet device is a wireless internet device in the foregoing solution.
  • An embodiment of the present invention provides a method for wirelessly controlling, after receiving a control command, determining a first channel in response to the control command; the first channel is a wireless control channel, different from a service for transmitting an Internet service. a channel of data; collecting and analyzing sensor data generated by operation of the wireless internet device, converting the sensor data into a control signal; transmitting the control signal through the first channel; thereby, the wireless mouse
  • the function is integrated into the wireless internet device, and the function of the wireless mouse is realized by the operation of the wireless internet device, so that the function of the wireless internet device is more abundant, and only the wireless internet device can be used to control other terminals, so that the user can use it. It is more convenient and faster, thus improving the user experience of the wireless Internet device.
  • FIG. 1 is a schematic flowchart of a wireless control method according to an embodiment of the present invention.
  • FIG. 2 is a schematic flow chart of a wireless control method of an application example
  • FIG. 3 is a schematic diagram of a method for determining an action direction indicated by a touch information
  • FIG. 4 is a schematic structural diagram of a wireless control apparatus according to an embodiment of the present invention.
  • FIG. 5 is a schematic structural diagram of a wireless control system according to an embodiment of the present disclosure.
  • FIG. 6 is a schematic diagram of a working process of a wireless control system according to an embodiment of the present invention.
  • the first channel is a wireless control channel, different from a channel for transmitting service data of the Internet service; Sensing data generated by operation of the wireless internet device, converting the sensor data into a control signal; transmitting the control signal through the first channel.
  • FIG. 1 is a schematic diagram of a wireless control method according to an embodiment of the present invention. The method is applied to a wireless internet device. As shown in FIG. 1 , the method includes the following steps:
  • Step 101 After receiving the control instruction, determining the first channel in response to the control instruction;
  • the wireless network device determines the first channel in response to the control instruction, where the first channel is a wireless control channel, different from the service data used for transmitting the Internet access service. a channel; wherein, before determining the first channel, listening for signal quality of a channel for transmitting information; setting a signal threshold to determine a channel whose signal quality is lower than a signal threshold as the first channel.
  • the first channel is independent of the channel for transmitting the service data of the Internet service.
  • the first channel can use the 2.4G wifi band;
  • the signal quality of the channel being monitored can be compared with the signal threshold, and the channel whose signal quality is lower than the signal threshold is determined as the first channel, thereby determining the first channel as the data transmission amount. Small free channel. Therefore, the control signal generated by the sensing data and the data signal for performing the Internet service are prevented from interfering with each other.
  • Step 102 Collect and analyze sensing data generated by operation of the wireless internet device, and convert the sensing data into a control signal.
  • the sensing data can carry touch information, voice control information, and gravity information.
  • the operation of the wireless internet device by the user may be direct operation directly on the user's online device, or may be indirectly operated by the wireless device with the operation of the external device having the data interaction function with the wireless internet device.
  • the received sensing data When receiving the sensing data carrying the voice control information, the received sensing data is parsed, the voice control information carried by the sensor data is collected, the voice control information is analyzed to obtain the action direction indicated by the voice control information; and the action direction is converted into a corresponding control signal. .
  • the received sensing data When receiving the sensing data carrying the gravity information, the received sensing data is parsed, the gravity information carried by the sensing data is collected, the gravity information is analyzed to obtain the action direction indicated by the gravity information; and the action direction is converted into a corresponding control signal. .
  • Step 103 Send the control signal by using the first channel.
  • the control signal generated in step 102 is sent out through the first channel determined in step 101, and sent to the receiver of the device to be controlled.
  • the action direction is converted from the computer identification signal to the wireless channel for transmission by the code modulation. control signal.
  • the receiver of the device to be controlled demodulates and decodes the received control signal to obtain a computer identification signal, and can recognize the corresponding action direction according to the received computer identification signal, and according to the determined
  • the action direction indicates that the device to be controlled itself performs a corresponding action; for example, receiving a control signal whose direction of action is rightward, and the device to be controlled performs a rightward action.
  • the receiver of the device to be controlled may be the device to be controlled itself or an additional portable device of the device to be controlled.
  • the wireless internet device may have a touch signal.
  • the touch area may not have a touch area for receiving a touch signal; when the wireless internet device has a touch area for receiving a touch signal, the received touch signal is from the touch area, and at this time, the sensing data carrying the touch information is through Sensing data generated by direct operation of a wireless internet device.
  • the wireless internet device does not have a touch area for receiving a touch signal, the wireless internet device can be connected to the touch device with the touch area to directly receive the touch data sent by the touch device, and the sensor data carrying the touch information is Sensing data generated by indirect operation of a wireless internet device.
  • the wireless control method provided by the embodiment of the present invention is further described by taking the touch data of the sensor data as an example.
  • the wireless internet device with the wifi function integrates the wireless control function of the wireless mouse.
  • Step 201 The wireless internet device receives a control instruction, and determines the first channel in response to the control instruction.
  • the wireless internet device after receiving the control command for starting the wireless mouse function, sends a trigger command for allocating a channel to the wifi chip of the wireless internet device, and allocates a network channel for transmitting service data of the Internet service and for transmitting as a mouse signal.
  • the first channel of the control signal For dual-band wifi devices, the first channel retains the 2.4G wifi band, and the network channel uses the 5G wifi band.
  • the network channel For the single-band 2.4G wifi device, the network channel uses the 2.4G wifi band, and the first channel uses unused channels that are not commonly used to prevent Network channels interfere with each other.
  • Step 202 The wireless internet device receives the sensing data, collects and analyzes the sensing data, and obtains an analysis result in the form of a computer identification signal;
  • the wireless internet device receives the sensing data carrying the touch information, processes the sensing data, obtains the corresponding action direction of the sensing data according to the touch information carried by the sensing data, and converts the working direction into a computer identification signal.
  • the sensing data carrying the touch information carries the coordinates of the pressing trajectory of the user pressing the touch area.
  • the pressing trajectory of the user is a continuous trajectory
  • the coordinates of the pressing trajectory For a set of consecutive position coordinates, the direction of action indicated by the touch information can be determined according to the set of consecutive position coordinates; wherein, FIG. 3 takes the starting point of the touch as an example to illustrate the continuous position coordinate to determine the direction of action indicated by the touch information.
  • the method that is, the definition of the action direction of the touch track is as shown in Fig. 3.
  • the starting point of the touch is the origin, the origin is centered, and the directions of X and Y are divided, and the directions of X and Y are perpendicular to each other.
  • the end point falls in the A area and is judged to be upward; the end point falls in the B area and is judged to be rightward; the end point falls in the C area and is judged to be downward; the end point falls in the D area, and it is judged to be left.
  • the interference signal can be received.
  • a pressure threshold is set and the pressure corresponding to each position coordinate is detected, and the position coordinate whose pressure is greater than the pressure threshold is determined as a valid press. Otherwise, the pressing of the position coordinates is an invalid pressing that has an interference with the effective pressing.
  • the position coordinates corresponding to the invalid press are not processed. The direction of action indicated by the touch information is judged only based on the position coordinates corresponding to the effective pressing.
  • Step 203 The wireless internet device converts the analysis result into a control signal and sends the result.
  • the wireless internet device converts the action direction of the computer signal form into a control signal in the form of a wireless signal, and transmits the control signal to the receiver through the first channel.
  • the receiver After receiving the control signal, the receiver converts the control signal in the form of a wireless signal into a computer signal, recognizes the direction of action of the control signal, and completes the corresponding mouse operation.
  • the embodiment of the present invention further provides a wireless control device, the device is disposed in the wireless Internet device 40, as shown in FIG. 4, the device includes: a control module 41, an analysis module 42, a sending module 43; among them,
  • the control module 41 is configured to, after receiving the control instruction, determine the first channel in response to the control instruction; the first channel is a wireless control channel, different from a channel for transmitting service data of the Internet service.
  • the analyzing module 42 is configured to collect and analyze sensing data generated by the operation of the wireless internet device, and convert the sensing data into a control signal.
  • the sending module 43 sends the control signal through the first channel.
  • the apparatus further includes a listening module 44 configured to listen to a signal quality of a channel for transmitting information; and set a signal threshold; and correspondingly, the control module 41 is specifically configured to: The channel at the signal threshold is determined to be the first channel.
  • the device further includes a data module 45.
  • the analyzing module 42 is configured to receive the sensing data. Performing analysis to acquire the touch information carried by the sensing data; analyzing the touch information to obtain an action direction indicated by the touch information; and converting the working direction into a corresponding control signal.
  • the analyzing module 42 is configured to parse the received sensing data, and collect the voice control information carried by the sensing data. And analyzing the voice control information to obtain an action direction indicated by the voice control information; converting the action direction into a corresponding control signal.
  • the analysis module 42 is configured to parse the received sensing data, and collect the gravity information carried by the sensing data. And analyzing the gravity information to obtain an action direction indicated by the gravity information; converting the action direction into a corresponding control signal.
  • FIG. 5 is a schematic diagram of a wireless control system according to an embodiment of the present invention.
  • the system includes: the wireless internet device 40 shown in FIG. 4 and at least a receiving end 50.
  • the wireless network device 40 is configured to: after receiving the control command, determine the first channel in response to the control instruction; collect and analyze sensing data generated by the operation of the wireless network device, and use the sensing data Converting to a control signal; transmitting the control signal through the first channel; the first channel is a wireless control channel, different from a channel for transmitting service data of an Internet service.
  • the receiving end 50 is configured to receive the control signal and perform a corresponding operation according to the control signal.
  • the receiving end 50 can be an independent device in hardware, and can also be directly implemented by using the wifi radio frequency module of the device to be controlled.
  • FIG. 6 is a schematic diagram showing the working process of each module in the wireless control system shown in FIG. 5 according to an embodiment of the present invention, as shown in FIG. 6 .
  • the wireless internet device includes the module shown in FIG. 3, and further includes a power supply module 61 configured to provide power to the wireless internet device.
  • the transmitting module 43 is included in the wifi module 62 that provides the wireless signal; the receiving end 50 includes the receiving module 65.
  • the power supply module 61 provides power for the whole device of the wireless internet device to ensure that other modules can operate normally.
  • the control module 41 allocates the channel for data communication of the wifi module 62.
  • the wireless internet device can be a dual-band wifi device or a single-frequency 2.4G wifi device; wherein, for the dual-band wifi device, the first channel used as the mouse signal is used to retain the 2.4G wifi band, and the service for transmitting the Internet service is used.
  • the network channel of the data uses the 5G wifi band; for the single-band 2.4G wifi device, the first channel selects an unused channel that is not commonly used to prevent interference.
  • the analyzing module 42 receives the sensing data received by the data module 45, collects and analyzes the sensing data, and processes the data, converts the sensing data into a computer identification signal, and sends the sensing data to the first channel in the wifi module 62. Perform sensor information transmission.
  • the wifi module 62 After receiving the computer identification information, the wifi module 62 sends it to the sending module 43 for transmission. At this time, the wifi module 62 has been adjusted by a single channel for transmitting only the service data of the Internet service to include the service data for transmitting the Internet service. The channel, the multi-channel allocation status of the first channel of the transmission control signal.
  • the transmitting module 43 converts the computer identification signal packaged by the encoder into a wireless signal generation control signal, and then sends the control signal through the first channel.
  • the data module 45 After receiving the wireless signal, the data module 45 converts the wireless signal into a computer signal through the decoder to complete the mouse operation corresponding to the control signal.
  • the existing products and technologies are independent wifi terminals and wireless mouse devices, respectively, which work independently, and sometimes cannot work together due to interference of wireless signals, that is, it is possible to access the Internet and the wireless mouse Unable to use, or when the wireless mouse is connected, the wifi network will not be available. And for the user, you need to carry two devices.
  • the wifi terminal with the wireless mouse function provided by the embodiment of the present invention uses the wifi chip provided by the wifi terminal to establish a wireless signal channel and transmit the signal of the mouse operation. Achieve the multi-function effect of a device, easy for users to carry around, and more convenient and quick to use.
  • the wireless control method, apparatus, or system provided by the embodiment of the present invention can implement the tablet function of the wireless internet device.
  • the system structure is the same as that shown in FIG.
  • the point is that the sensing data received by the data module 45 is sensing data carrying touch information having a specific trajectory, and after the data module 45 transmits the received sensing data to the analyzing module 42, the analyzing module 42 passes the sensing data.
  • the analysis through the mapping process of the specific track to the Chinese character code, obtains the Chinese character code information, and converts the Chinese character code information into a computer identification signal, and the transmitting module 43 encodes the Chinese character code information to generate a corresponding control signal, and passes the control signal through the A channel is sent to the receiving module 65.
  • the receiving module 654 converts the received control signal into a computer identification signal through the decoder for completing the tablet operation.
  • the upward, downward, leftward, and rightward operation control of the smart home can be completed by voice control or swaying operation of the wireless internet device, wherein the upward and downward operation control can be performed by wireless
  • the forward and backward movement of the Internet device is completed.
  • smart homes such as smart vacuum cleaners, sweepers, mopping machines, etc.
  • it can control its forward/backward start/stop operations.
  • the home monitoring system it is possible to view the home monitoring situation, and the monitoring page can be controlled by the mouse operation of the wireless internet device.
  • the wireless control method, device and system provided by the embodiments of the present invention achieve the effect of integrating the wifi terminal and the wireless mouse, thereby avoiding interference between the wifi Internet access and the wireless mouse wireless signal transmission, thereby saving existing Technical raw materials that increase the user of the product equipment Experience; at the same time solve the problem of mutual interference between the general wifi products, can be in the office entertainment, take into account the wireless mouse function, and can provide smart writing board function; also provides a smart home wireless control solution in the family When you are at home, you act as a controller for your smart home.
  • the device or system device provided by the present invention may be used as a separate system, or may be a logical unit that adds different functions to an existing terminal such as ufi.
  • control module 41 When the logic unit is added in the ufi, the control module 41, the analysis module 42, the sending module 43, the listening module 44, and the data module 45 may be a central processing unit (CPU) located in the ufi, a digital signal processor ( DSP, Digital Signal Processor), or Field Programmable Gate Array (FPGA) implementation.
  • CPU central processing unit
  • DSP Digital Signal Processor
  • FPGA Field Programmable Gate Array
  • An embodiment of the present invention provides a method for wirelessly controlling, after receiving a control command, determining a first channel in response to the control command; the first channel is a wireless control channel, different from a service for transmitting an Internet service. a channel of data; collecting and analyzing sensor data generated by operation of the wireless internet device, converting the sensor data into a control signal; transmitting the control signal through the first channel; thereby, the wireless mouse
  • the function is integrated into the wireless internet device, and the function of the wireless mouse is realized by the operation of the wireless internet device, so that the function of the wireless internet device is more abundant, and only the wireless internet device can be used to control other terminals, so that the user can use it. It is more convenient and faster, thus improving the user experience of the wireless Internet device.

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Abstract

一种无线控制的方法、装置及系统,所述方法应用于无线上网设备,所述方法包括:当接收到控制指令后,响应所述控制指令,确定第一信道;所述第一信道为无线控制信道,不同于用于传输上网业务的业务数据的信道;采集并分析对所述无线上网设备的操作产生的传感数据,将所述传感数据转换为控制信号;通过所述第一信道发送所述控制信号。

Description

一种无线控制方法、装置及系统 技术领域
本发明涉及无线上网设备的无线传输技术及控制技术,尤其涉及一种无线控制方法、装置及系统。
背景技术
本申请发明人在实现本申请实施例技术方案的过程中,至少发现相关技术中存在如下技术问题:
现有的无线上网设备如数据卡,ufi,手机等终端设备具有上网功能、触摸屏功能、交互功能、wifi功能等,其中,wifi功能遵循802.11标准。
无线鼠标采用无线技术与计算机通信,从而省却了电线的束缚。其通常采用的无线通信方式包括蓝牙、Wi-Fi(IEEE 802.11)、Infrared(IrDA)、ZigBee(IEEE 802.15.4)等等多个无线技术标准,但对于当前主流无线鼠标而言,仅有27Mhz、2.4G和蓝牙无线鼠标共三类。其中,“2.4Ghz非联网解决方案”也就是我们俗称的2.4G无线网络技术。它的优点是解决了27Mhz功率大、传输距离短、同类产品容易出现互相干扰等缺点。2.4G无线技术之所以是“2.4G”而不是“2.5G”是因为该技术使用的频率是2.4-2.485GHzISM无线频段,该频段在全球大多数国家均属于免授权免费使用,这为产品的普及扫清了最大障碍。
在现状下,我们一般上网都需要两种设备——数据卡和无线鼠标,而对于无线上网设备而言,在进行上网业务时,需借助无线鼠标来实现无线控制,而用户在上网时,希望通过无线上网设备进行上网的同时,能够通过无线上网设备本身作为无线鼠标实现无线控制的功能,但目前,相关技术并未提出有效的通过对无线上网设备的操作实现无线控制的解决方案。
发明内容
有鉴于此,本发明实施例期望提供一种无线控制的方法、装置及系统,能够通过对无线上网设备的操作实现无线控制的功能。
本发明实施例的技术方案是这样实现的:
本发明实施例提供一种无线控制的方法,所述方法应用于无线上网设备,所述方法包括:当接收到控制指令后,响应所述控制指令,确定第一信道;所述第一信道为无线控制信道,不同于用于传输上网业务的业务数据的信道;采集并分析对所述无线上网设备的操作产生的传感数据,将所述传感数据转换为控制信号;通过所述第一信道发送所述控制信号。
上述方案中,所述方法还包括:侦听用于传输信息的信道的信号质量;设置信号阈值;相应的,将所述信号质量低于所述信号阈值的信道确定为第一信道。
上述方案中,所述方法还包括:接收携带触摸信息的传感数据;相应的,所述采集并分析传感数据,将所述传感数据转换为控制信号包括:对接收到的所述传感数据进行解析,采集所述传感数据携带的所述触摸信息;分析所述触摸信息得到所述触摸信息指示的作用方向;将所述作用方向转换为对应的控制信号。
上述方案中,所述方法还包括:接收携带声控信息的传感数据;相应的,所述采集并分析传感数据,将所述传感数据转换为控制信号包括:对接收到的所述传感数据进行解析,采集所述传感数据携带的所述声控信息;分析所述声控信息得到所述声控信息指示的作用方向;将所述作用方向转换为对应的控制信号。
上述方案中,所述方法还包括:接收携带重力信息的传感数据;相应的,所述采集并分析传感数据,将所述传感数据转换为控制信号包括:对接收到的所述传感数据进行解析,采集所述传感数据携带的所述重力信息; 分析所述重力信息得到所述重力信息指示的作用方向;将所述作用方向转换为对应的控制信号。
本发明实施例还提供一种无线控制的装置,所述装置设于无线上网设备内,所述装置包括:控制模块,分析模块,发送模块;其中,所述控制模块,配置为当接收到控制指令后,响应所述控制指令,确定第一信道;所述第一信道为无线控制信道,不同于用于传输上网业务的业务数据的信道;所述分析模块,配置为采集并分析对所述无线上网设备的操作产生的传感数据,将所述传感数据转换为控制信号;所述发送模块,通过所述第一信道发送所述控制信号。
上述方案中,所述装置还包括:侦听模块,配置为侦听用于传输信息的信道的信号质量;设置信号阈值;相应的,所述控制模块,配置为将所述信号质量低于所述信号阈值的信道确定为第一信道。
上述方案中,所述装置还包括:数据模块,配置为接收携带触摸信息的传感数据;相应的,所述分析模块,配置为对接收到的所述传感数据进行解析,采集所述传感数据携带的所述触摸信息;分析所述触摸信息得到所述触摸信息指示的作用方向;将所述作用方向转换为对应的控制信号。
上述方案中,所述装置还包括:数据模块,配置为接收携带声控信息的传感数据;相应的,所述分析模块,配置为对接收到的所述传感数据进行解析,采集所述传感数据携带的所述声控信息;分析所述声控信息得到所述声控信息指示的作用方向;将所述作用方向转换为对应的控制信号。
上述方案中,所述装置还包括:数据模块,配置为接收携带重力信息的传感数据;相应的,所述分析模块,配置为对接收到的所述传感数据进行解析,采集所述传感数据携带的所述重力信息;分析所述重力信息得到所述重力信息指示的作用方向;将所述作用方向转换为对应的控制信号。
所述控制模块、所述分析模块、所述发送模块、所述侦听模块、所述 数据模块在执行处理时,可以采用中央处理器(CPU,Central Processing Unit)、数字信号处理器(DSP,Digital Singnal Processor)或可编程逻辑阵列(FPGA,Field-Programmable Gate Array)实现。
本发明实施例还提供一种无线控制系统,所述系统包括无线上网设备和至少一接收端;其中,所述无线上网设备,配置为当接收到控制指令后,响应所述控制指令,确定第一信道;采集并分析对所述无线上网设备的操作产生的传感数据,将所述传感数据转换为控制信号;通过所述第一信道发送所述控制信号;所述第一信道为无线控制信道,不同于用于传输上网业务的业务数据的信道;所述接收端,配置为接收所述控制信号,并根据所述控制信号进行对应的操作。
所述无线上网设备为上述方案中的无线上网设备。
本发明实施例提供了一种无线控制的方法,当接收到控制指令后,响应所述控制指令,确定第一信道;所述第一信道为无线控制信道,不同于用于传输上网业务的业务数据的信道;采集并分析对所述无线上网设备的操作产生的传感数据,将所述传感数据转换为控制信号;通过所述第一信道发送所述控制信号;由此,将无线鼠标的功能集成到无线上网设备中,通过对无线上网设备的操作实现无线鼠标的功能,使无线上网设备的功能更加丰富,而且仅使用无线上网设备可实现对其他终端的控制,使用户在使用起来更加方便快捷,从而提高用户对无线上网设备的用户体验。
附图说明
图1为本发明实施例提供的一种无线控制方法的流程示意图;
图2为一应用实例的无线控制方法的流程示意图;
图3为判断触摸信息指示的作用方向的方法示意图;
图4为本发明实施例提供的一种无线控制装置的结构示意图;
图5为本发明实施例提供的一种无线控制系统的结构示意图;
图6为本发明实施例提供的一种无线控制系统的工作流程示意图。
具体实施方式
在本发明实施例中,当接收到控制指令后,响应所述控制指令,确定第一信道;所述第一信道为无线控制信道,不同于用于传输上网业务的业务数据的信道;采集并分析对所述无线上网设备的操作产生的传感数据,将所述传感数据转换为控制信号;通过所述第一信道发送所述控制信号。
下面通过附图及具体实施例对本发明再做进一步的详细说明。
图1为本发明实施例提供的一种无线控制方法,该方法应用于无线上网设备,如图1所示,该方法包括以下步骤:
步骤101,当接收到控制指令后,响应所述控制指令,确定第一信道;
具体的,当无线上网设备接收到用户启动无线控制功能的控制指令后,响应该控制指令,确定第一信道,这里,第一信道为无线控制信道,不同于用于传输上网业务的业务数据的信道;其中,在确定第一信道之前,侦听用于传输信息的信道的信号质量;设置信号阈值,将信号质量低于信号阈值的信道确定为第一信道。
其中,第一信道与用于传输上网业务的业务数据的信道独立,比如,当传输上网业务的业务数据的信道为5G wifi频段时,第一信道可留用2.4Gwifi频段;当传输上网业务的业务数据的信道为2.4Gwifi频段时,可通过侦听的信道的信号质量与信号阈值进行比较,将信号质量低于信号阈值的信道确定为第一信道,从而确定出的第一信道为数据传输量小的空闲信道。从而防止传感数据产生的控制信号与进行上网业务的数据信号相互干扰。
步骤102,采集并分析对所述无线上网设备的操作产生的传感数据,将所述传感数据转换为控制信号;
这里,接收到控制指令后,接收到用户对无线上网设备的操作产生的 传感数据,其中,所述传感数据可携带触摸信息、声控信息、重力信息。
当接收携带触摸信息的传感数据时,对接收到的传感数据进行解析,采集传感数据携带的触摸信息,分析触摸信息得到触摸信息指示的作用方向;将作用方向转换为对应的控制信号。这里,用户对无线上网设备的操作可为直接对用户上网设备的直接操作,也可通过对与无线上网设备具有数据交互功能的外接设备的操作实现对无线上网设备的间接操作。
当接收携带声控信息的传感数据时,对接收到的传感数据进行解析,采集传感数据携带的声控信息,分析声控信息得到声控信息指示的作用方向;将作用方向转换为对应的控制信号。
当接收携带重力信息的传感数据时,对接收到的传感数据进行解析,采集传感数据携带的重力信息,分析重力信息得到重力信息指示的作用方向;将作用方向转换为对应的控制信号。
步骤103,通过所述第一信道发送所述控制信号;
将步骤102生成的控制信号通过步骤101确定的第一信道发送出去,发送至待控制设备的接收器。
这里,将传感数据经过分析得出的作用方向转换为在无线上网设备中以计算机识别的格式表示的控制信号后,需将作用方向从计算机识别信号通过编码调制转换为适应无线信道进行发送的控制信号。这里,待控制设备的接收器接收到控制信号后,对接收到的控制信号进行解调解码后得到计算机识别信号,可根据接收到的计算机识别信号识别出其对应的作用方向,并根据确定的作用方向指示待控制设备本身执行对应的动作;比如,接收到作用方向为向右的控制信号,待控制设备执行向右的动作。其中,待控制设备的接收器可为待控制设备本身具有,也可为待控制设备的附加的便携式设备。
需要说明的是,在步骤102中,无线上网设备可具有接收触摸信号的 触摸区域,也可不具有接收触摸信号的触摸区域;当无线上网设备具有接收触摸信号的触摸区域时,接收到的触摸信号来自于该触摸区域,此时,携带触摸信息的传感数据为通过对无线上网设备的直接操作产生的传感数据。当无线上网设备不具有接收触摸信号的触摸区域时,可与具有触摸区域的触摸设备相连接,直接接收触摸设备发送的携带触摸信号的传感数据,此时,携带触摸信息的传感数据为通过对无线上网设备的间接操作产生的传感数据。
下面以传感数据携带触摸信号为例,对本发明实施例提供的无线控制方法进行进一步说明,此时,具备wifi功能的无线上网设备集成无线鼠标的无线控制功能。
步骤201,无线上网设备接收控制指令,响应所述控制指令,确定第一信道;
这里,无线上网设备接收到启动无线鼠标功能的控制指令后,对无线上网设备的wifi芯片发出分配信道的触发指令,分配用于传输上网业务的业务数据的网络信道和用于传输作为鼠标信号的控制信号的第一信道。对于双频wifi设备,第一信道留用2.4G wifi频段,网络信道使用5Gwifi频段;对于单频2.4G wifi设备,网络信道使用2.4G wifi频段,第一信道留用不常用的空闲信道,以防与网络信道之间相互干扰。
步骤202,无线上网设备接收传感数据,对传感数据进行收集和分析,得到计算机识别信号形式的分析结果;
无线上网设备接收到携带触摸信息的传感数据,对传感数据进行处理,根据传感数据携带的触摸信息得到传感数据对应作用方向,将作用方向转换为计算机识别信号。
这里,携带触摸信息的传感数据携带用户按压触摸区域的按压轨迹的坐标,这里,当用户的按压轨迹为一连续轨迹,相应的,按压轨迹的坐标 为一组连续的位置坐标,根据这组连续的位置坐标可判断出触摸信息指示的作用方向;其中,图3以触摸的起始点为原点为例说明连续的位置坐标判断触摸信息指示的作用方向的方法,也就是,触摸轨迹的作用方向的定义如图3所示,当触摸的起始点为原点,以原点为中心,分X、Y两个方向,且X、Y两个方向相互垂直,终点落在A区域,判断为向上;终点落在B区域,判断为向右;终点落在C区域,判断为向下;终点落在D区域,判断为向左。
需要说明的是,触摸区域在接受触摸信号时,可接收到干扰信号,此时,设置一压力阈值并检测每个位置坐标对应的压力,将压力大于压力阈值的位置坐标确定为有效的按压,否则,该位置坐标的按压为对有效按压具有干扰的无效的按压。这里,将无效按压对应的位置坐标不做处理。只根据有效按压对应的位置坐标判断触摸信息指示的作用方向。
步骤203,无线上网设备将分析结果转换为控制信号并发送;
无线上网设备将计算机信号形式的作用方向转换为无线信号形式的控制信号,并将控制信号通过第一信道发送至接收器。
这里,接收器接收到控制信号后,将无线信号形式的控制信号转换为计算机信号,识别出控制信号的作用方向,完成对应的鼠标操作。
为实现上述方法,本发明实施例还提供一种无线控制装置,所述装置设于无线上网设备40内,如图4所示,该装置包括:控制模块41,分析模块42,发送模块43;其中,
控制模块41,配置为当接收到控制指令后,响应所述控制指令,确定第一信道;所述第一信道为无线控制信道,不同于用于传输上网业务的业务数据的信道。
分析模块42,配置为采集并分析对所述无线上网设备的操作产生的传感数据,将所述传感数据转换为控制信号。
发送模块43,通过所述第一信道发送所述控制信号。
如图4所示,所述装置还包括侦听模块44,配置为侦听用于传输信息的信道的信号质量;设置信号阈值;相应的,控制模块41,具体配置为将所述信号质量低于所述信号阈值的信道确定为第一信道。
如图4所示,所述装置还包括数据模块45,当数据模块45配置为接收携带触摸信息的传感数据时,相应的,分析模块42,具体配置为对接收到的所述传感数据进行解析,采集所述传感数据携带的所述触摸信息;分析所述触摸信息得到所述触摸信息指示的作用方向;将所述作用方向转换为对应的控制信号。
当数据模块45配置为接收携带声控信息的传感数据时,相应的,分析模块42,具体配置为对接收到的所述传感数据进行解析,采集所述传感数据携带的所述声控信息;分析所述声控信息得到所述声控信息指示的作用方向;将所述作用方向转换为对应的控制信号。
当数据模块45配置为接收携带重力信息的传感数据时,相应的,分析模块42,具体配置为对接收到的所述传感数据进行解析,采集所述传感数据携带的所述重力信息;分析所述重力信息得到所述重力信息指示的作用方向;将所述作用方向转换为对应的控制信号。
图5为本发明实施例提供的一种无线控制系统,如图5所示,该系统包括:图4所示的无线上网设备40和至少以接收端50。其中,无线上网设备40,配置为当接收到控制指令后,响应所述控制指令,确定第一信道;采集并分析对所述无线上网设备的操作产生的传感数据,将所述传感数据转换为控制信号;通过所述第一信道发送所述控制信号;所述第一信道为无线控制信道,不同于用于传输上网业务的业务数据的信道。
接收端50,配置为接收所述控制信号,并根据所述控制信号进行对应的操作。
其中,接收端50在硬件上可以是一个独立的器件,也可以直接利用待控制设备的wifi射频模块实现。
图6以实现无线鼠标功能为例说明本发明实施例提供的如图5所示的无线控制系统中各模块工作流程示意图,如图6所示。
这里,图6所示的系统中,无线上网设备包括有图3所示的模块外,还包括供电模块61,配置为给无线上网设备提供电源。且发送模块43包括在提供无线信号的wifi模块62内;接收端50包括接收模块65。
供电模块61为无线上网设备的整机提供电源,保证其他模块可以正常运行。
控制模块41在收到鼠标功能请求后,对wifi模块62的用于数据通信的信道进行分配。其中,无线上网设备可为双频wifi设备,也可为单频2.4Gwifi设备;其中,对于双频wifi设备,用于传输作为鼠标信号的第一信道留用2.4Gwifi频段,于传输上网业务的业务数据的网络信道使用5Gwifi频段;对于单频2.4G wifi设备,第一信道选择不常用的空闲信道以防干扰。
分析模块42接收数据模块45接收的传感数据,对传感数据进行收集和分析数据,并且对数据进行处理,将传感数据转换为计算机识别信号,发送给wifi模块62中的第一信道,进行传感信息传输。
wifi模块62接收到计算机识别信息后,将其打包发给发送模块43准备发送;此时,wifi模块62已由单一的只传输上网业务的业务数据的信道调整为包括传输上网业务的业务数据的信道、传输控制信号的第一信道的多功能信道分配状态。
发送模块43通过编码器打包后的计算机识别信号转换成无线信号生成控制信号,然后将控制信号通过第一信道发出。
数据模块45接收到无线信号后,通过解码器将无线信号转换为计算机信号,用来完成控制信号对应的鼠标操作。
在现有技术中,现有的产品和技术分别为独立的wifi终端和无线鼠标设备,它们分别独立工作,有时会因为无线信号的干扰,而不能共同工作,即有可能一上网,无线鼠标就无法使用,或者无线鼠标连接上时,wifi网络就无法使用了。而且对于用户来讲,需要携带两种设备。而通过本发明实施例提供的带有无线鼠标功能的wifi终端,利用wifi终端自带的wifi芯片,建立无线信号通道,并且传输鼠标操作的信号。达到一款设备多重功能的效果,便于用户出门携带,且使用起来更加方便快捷。
在实际应用中,通过本发明实施例提供的无线控制方法、装置或系统可实现无线上网设备的手写板功能,在手写板功能的实现过程中,系统结构与图6所示的结构相同,不同点在于,数据模块45接收的传感数据为携带有具有特定轨迹的触摸信息的传感数据,数据模块45将接收到的传感数据发送给分析模块42后,分析模块42通过对传感数据的分析,通过特定轨迹到汉字码的映射过程,得到汉字码信息,并将汉字码信息转换为计算机识别信号,发送模块43将汉字码信息进行编码生成对应的控制信号,并将控制信号通过第一信道发送给接收模块65。接收模块654通过解码器将接收的控制信号转换为计算机识别信号,用来完成手写板操作。
在实际应用中,可通过对无线上网设备的声控、或甩动操作完成对于智能家居的向上、向下、向左、向右的操作控制,其中,向上、向下的操作控制可通过对无线上网设备的向前、向后的甩动来完成。对于智能家居,比如智能吸尘器,扫地机,拖地机等,能够控制其前进/后启动/停止操作。对于家庭监控系统的应用,能够查看家庭监控情况,并且可以通过无线上网设备的鼠标操作控制监控页面。
由此,能够确定,本发明实施例提供的无线控制方法、装置和系统,取得了wifi终端与无线鼠标集于一体的效果,避免了wifi上网与无线鼠标无线信号传输的干扰,节省了现有技术的原材料,提高了产品设备的用户 体验;同时解决了一般wifi产品间的互干扰问题,能够在在办公娱乐时,兼顾有无线鼠标功能,而且可以提供智能写字板功能;还提供了一种智能家居的无线控制解决方案,在家庭家居里时,充当智能家居的控制器。
在实际应用中,本发明提供的装置或系统装置可作为一个单独的系统,还可以是在现有的终端如ufi中增加完成不同功能的逻辑单元。
当在ufi中增加逻辑单元时,控制模块41、分析模块42、发送模块43、侦听模块44、数据模块45可由位于ufi中的中央处理器(CPU,Central Processing Unit)、数字信号处理器(DSP,Digital Signal Processor)、或可编程门阵列(FPGA,Field Programmable Gate Array)实现。
以上所述,仅为本发明的较佳实施例而已,并非用于限定本发明的保护范围,凡在本发明的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本发明的保护范围之内。
工业实用性
本发明实施例提供了一种无线控制的方法,当接收到控制指令后,响应所述控制指令,确定第一信道;所述第一信道为无线控制信道,不同于用于传输上网业务的业务数据的信道;采集并分析对所述无线上网设备的操作产生的传感数据,将所述传感数据转换为控制信号;通过所述第一信道发送所述控制信号;由此,将无线鼠标的功能集成到无线上网设备中,通过对无线上网设备的操作实现无线鼠标的功能,使无线上网设备的功能更加丰富,而且仅使用无线上网设备可实现对其他终端的控制,使用户在使用起来更加方便快捷,从而提高用户对无线上网设备的用户体验。

Claims (12)

  1. 一种无线控制的方法,所述方法应用于无线上网设备,所述方法包括:
    当接收到控制指令后,响应所述控制指令,确定第一信道;所述第一信道为无线控制信道,不同于用于传输上网业务的业务数据的信道;
    采集并分析对所述无线上网设备的操作产生的传感数据,将所述传感数据转换为控制信号;
    通过所述第一信道发送所述控制信号。
  2. 根据权利要求1所述的方法,其中,所述方法还包括:
    侦听用于传输信息的信道的信号质量;
    设置信号阈值;相应的,
    将所述信号质量低于所述信号阈值的信道确定为第一信道。
  3. 根据权利要求1所述的方法,其中,所述方法还包括:
    接收携带触摸信息的传感数据;相应的,
    所述采集并分析传感数据,将所述传感数据转换为控制信号包括:
    对接收到的所述传感数据进行解析,采集所述传感数据携带的所述触摸信息;
    分析所述触摸信息得到所述触摸信息指示的作用方向;
    将所述作用方向转换为对应的控制信号。
  4. 根据权利要求1所述的方法,其中,所述方法还包括:
    接收携带声控信息的传感数据;相应的,
    所述采集并分析传感数据,将所述传感数据转换为控制信号包括:
    对接收到的所述传感数据进行解析,采集所述传感数据携带的所述声控信息;
    分析所述声控信息得到所述声控信息指示的作用方向;
    将所述作用方向转换为对应的控制信号。
  5. 根据权利要求1所述的方法,其中,所述方法还包括:
    接收携带重力信息的传感数据;相应的,
    所述采集并分析传感数据,将所述传感数据转换为控制信号包括:
    对接收到的所述传感数据进行解析,采集所述传感数据携带的所述重力信息;
    分析所述重力信息得到所述重力信息指示的作用方向;
    将所述作用方向转换为对应的控制信号。
  6. 一种无线控制的装置,所述装置设于无线上网设备内,所述装置包括:控制模块,分析模块,发送模块;其中,
    所述控制模块,配置为当接收到控制指令后,响应所述控制指令,确定第一信道;所述第一信道为无线控制信道,不同于用于传输上网业务的业务数据的信道;
    所述分析模块,配置为采集并分析对所述无线上网设备的操作产生的传感数据,将所述传感数据转换为控制信号;
    所述发送模块,通过所述第一信道发送所述控制信号。
  7. 根据权利要求6所述的装置,其中,所述装置还包括:侦听模块,配置为侦听用于传输信息的信道的信号质量;设置信号阈值;
    相应的,所述控制模块,配置为将所述信号质量低于所述信号阈值的信道确定为第一信道。
  8. 根据权利要求6所述的装置,其中,所述装置还包括:
    数据模块,配置为接收携带触摸信息的传感数据;相应的,
    所述分析模块,配置为对接收到的所述传感数据进行解析,采集所述传感数据携带的所述触摸信息;分析所述触摸信息得到所述触摸信息指示的作用方向;将所述作用方向转换为对应的控制信号。
  9. 根据权利要求6所述的装置,其中,所述装置还包括:
    数据模块,配置为接收携带声控信息的传感数据;相应的,
    所述分析模块,配置为对接收到的所述传感数据进行解析,采集所述传感数据携带的所述声控信息;分析所述声控信息得到所述声控信息指示的作用方向;将所述作用方向转换为对应的控制信号。
  10. 根据权利要求6所述的装置,其中,所述装置还包括:
    数据模块,配置为接收携带重力信息的传感数据;相应的,
    所述分析模块,配置为对接收到的所述传感数据进行解析,采集所述传感数据携带的所述重力信息;分析所述重力信息得到所述重力信息指示的作用方向;将所述作用方向转换为对应的控制信号。
  11. 一种无线控制系统,所述系统包括无线上网设备和至少一接收端;其中,
    所述无线上网设备,配置为当接收到控制指令后,响应所述控制指令,确定第一信道;采集并分析对所述无线上网设备的操作产生的传感数据,将所述传感数据转换为控制信号;通过所述第一信道发送所述控制信号;所述第一信道为无线控制信道,不同于用于传输上网业务的业务数据的信道;
    所述接收端,配置为接收所述控制信号,并根据所述控制信号进行对应的操作。
  12. 根据权利要求11所述的系统,其中,所述无线上网设备为如权利要求7至10中任一权利要求所述的无线上网设备。
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111781206A (zh) * 2020-07-06 2020-10-16 Oppo(重庆)智能科技有限公司 电子设备的中框检测方法、装置、测试设备及存储介质

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101599224A (zh) * 2009-07-29 2009-12-09 青岛海信移动通信技术股份有限公司 一种演示系统以及移动终端和无线上网卡
CN202008633U (zh) * 2011-03-01 2011-10-12 深圳市华域无线技术有限公司 带无线上网卡功能的鼠标
CN202159314U (zh) * 2011-07-05 2012-03-07 信源通科技(深圳)有限公司 手机鼠标及实现手机鼠标的系统
CN103095942A (zh) * 2013-01-08 2013-05-08 杭州电子科技大学 利用智能手机控制电脑光标的方法
CN203433477U (zh) * 2013-08-22 2014-02-12 中国科学院半导体研究所 一种集成Wi-Fi功能的无线鼠标

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1764091A (zh) * 2004-10-20 2006-04-26 玴荣科技股份有限公司 电子设备避免收发频率干扰的方法及其装置
CN101296440A (zh) * 2007-04-25 2008-10-29 中兴通讯股份有限公司 一种应用于多媒体教学的移动终端
WO2009101490A1 (en) * 2008-02-13 2009-08-20 Neil Andrew Fraser Mobile communications device that can be used as a computer mouse
CN103391113A (zh) * 2013-07-03 2013-11-13 深圳雷柏科技股份有限公司 无线键鼠及其跳频的rf通信发送及接收的方法和装置

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101599224A (zh) * 2009-07-29 2009-12-09 青岛海信移动通信技术股份有限公司 一种演示系统以及移动终端和无线上网卡
CN202008633U (zh) * 2011-03-01 2011-10-12 深圳市华域无线技术有限公司 带无线上网卡功能的鼠标
CN202159314U (zh) * 2011-07-05 2012-03-07 信源通科技(深圳)有限公司 手机鼠标及实现手机鼠标的系统
CN103095942A (zh) * 2013-01-08 2013-05-08 杭州电子科技大学 利用智能手机控制电脑光标的方法
CN203433477U (zh) * 2013-08-22 2014-02-12 中国科学院半导体研究所 一种集成Wi-Fi功能的无线鼠标

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111781206A (zh) * 2020-07-06 2020-10-16 Oppo(重庆)智能科技有限公司 电子设备的中框检测方法、装置、测试设备及存储介质

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