WO2017166683A1 - 基于分体路由器的通信方法及分体路由器 - Google Patents

基于分体路由器的通信方法及分体路由器 Download PDF

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Publication number
WO2017166683A1
WO2017166683A1 PCT/CN2016/097306 CN2016097306W WO2017166683A1 WO 2017166683 A1 WO2017166683 A1 WO 2017166683A1 CN 2016097306 W CN2016097306 W CN 2016097306W WO 2017166683 A1 WO2017166683 A1 WO 2017166683A1
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WIPO (PCT)
Prior art keywords
router
split
access terminal
body device
router body
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Ceased
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PCT/CN2016/097306
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English (en)
French (fr)
Inventor
卢涛
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Le Holdings Beijing Co Ltd
Leshi Zhixin Electronic Technology Tianjin Co Ltd
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Le Holdings Beijing Co Ltd
Leshi Zhixin Electronic Technology Tianjin Co Ltd
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Publication of WO2017166683A1 publication Critical patent/WO2017166683A1/zh
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L45/00Routing or path finding of packets in data switching networks
    • H04L45/60Router architectures
    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C17/00Arrangements for transmitting signals characterised by the use of a wireless electrical link
    • G08C17/02Arrangements for transmitting signals characterised by the use of a wireless electrical link using a radio link

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  • the present application relates to the field of communication technologies, for example, to a communication method based on a split router and a split router.
  • the signal strength of the access terminal received by the router is relatively strong, which can meet the normal communication requirements of the user, and when the user goes to the bedroom. That is, when the access terminal used by the user is far away from the router, the signal strength of the access terminal detected by the router is weak, which may affect the normal communication between the access terminal and the router.
  • the inventor found that if it is desired to maintain normal communication, an artificial mobile router is required, and since the related router needs to be connected to a fixed port on the wall through a cable, the positional movement of the router is also limited by The length of the fixed port and cable to be connected often cannot improve the communication quality by moving over a short distance.
  • the application provides a communication method based on a split router and a split router to improve communication quality and meet multi-directional communication requirements of users.
  • the embodiment of the present application provides a communication method based on a split router, which is applied to a router split device, and includes:
  • the method further includes:
  • the method further includes:
  • forwarding, according to the wireless manner, the data packet between the router body device and the access terminal including:
  • the method further includes:
  • the method further includes:
  • the embodiment of the present application further provides a router split device, including:
  • the mobile module is configured to control the shift according to a separate instruction sent by the router body device Moving the device to implement separation of the router split device from the router body device;
  • the communication module is configured to establish a wireless communication connection with the router body device and the access terminal, and forward the data packet between the router body device and the access terminal according to a wireless manner.
  • the router split device further includes: a first signal detecting module
  • the first signal detecting module is configured to perform path testing according to the detected signal strength of the access terminal in real time to determine a target moving direction, and control the mobile device to move along the target moving direction, when When the detected signal strength exceeds the first preset threshold, the mobile device stops establishing a wireless communication connection with the router body device and the access terminal.
  • the router split device further includes: a second signal detecting module
  • the second signal detecting module is configured to detect a signal strength of the access terminal in real time, perform a path test to determine a target moving direction, and control the mobile device to move along the target moving direction, and count the preset time Detecting a plurality of signal strengths, determining a position corresponding to a maximum signal strength of the plurality of signal strengths, controlling the router split device to move to a position corresponding to the maximum strength, and interacting with the router body device and the access
  • the terminals establish wireless communication connections respectively.
  • the communication module is configured to:
  • the mobile module is configured to control the mobile device to return along the original path according to the combined instruction sent by the router body device, to implement the combination of the router split device and the router body device.
  • the router split device further includes: a communication disconnection module
  • the communication disconnecting module is configured to disconnect the router split device from the access terminal and/or the router body after the mobile module implements the combination of the router split device and the router body device The communication connection of the device.
  • the embodiment of the present application further provides a split router, including the foregoing router split device.
  • the split router further includes: a router body;
  • the router body device and the router split device implement detachable connection on hardware.
  • the router body is a wireless router.
  • the wireless communication connection is adopted.
  • the embodiment of the present application further provides an electronic device, including:
  • At least one processor and,
  • the memory stores instructions executable by the one processor, the instructions being executed by the at least one processor to enable the at least one processor to:
  • the embodiment of the present application further provides a non-transitory computer readable storage medium, wherein the non-transitory computer readable storage medium stores computer instructions, where the computer instructions are used to cause the computer to perform any of the foregoing A communication method based on a split router.
  • the embodiment of the present application further provides a computer program product, including a computing program stored on a non-transitory computer readable storage medium, where the computer program includes program instructions, when the program instructions are executed by a computer, The computer is caused to perform any of the above-described split router-based communication methods.
  • the separated router device forwards the data packet according to the wireless manner between the router body device and the access terminal, and the router split device can freely move according to the separate instruction, so that the communication quality can be improved. Meet the user's multi-faceted communication needs
  • FIG. 1 is a flowchart of a communication method based on a split router in Embodiment 1 of the present application;
  • FIG. 2 is a flowchart of a communication method based on a split router in Embodiment 2 of the present application;
  • FIG. 3 is a structural diagram of a router split device in Embodiment 3 of the present application.
  • FIG. 4 is a hardware structural diagram of an electronic device according to Embodiment 6 of the present application.
  • FIG. 1 is a flowchart of a communication method based on a split router according to Embodiment 1 of the present application. This embodiment can be applied to a large office or a home router interface. The method can be provided by the embodiment of the present application.
  • the router split device or the split router including the router split device is implemented, as shown in FIG. 1 , including:
  • the mobile device of the router split device is controlled to move, and the separation between the router split device and the router body device is implemented.
  • the router body device can be a wired or wireless router.
  • the mobile device is disposed on the router split device, and is configured to implement a mobile function of the router split device, and may be a caster.
  • the router body device detects that the signal strength of the current access terminal is weak, it indicates that the access terminal moves in a direction away from the router body device, and sends a separation instruction to the router split device, and controls the The mobile device of the router split device moves to implement separation of the router split device from the router body device.
  • the router split device establishes a wireless communication connection with the router body device and the access terminal, respectively, and forwards the data packet based on the wireless manner between the router body device and the access terminal.
  • the wireless communication may be a WIFI communication connection, a 3G or 4G network connection, or a Bluetooth connection.
  • the access terminal includes, but is not limited to, a mobile phone, a palmtop computer, a tablet computer, a notebook computer, and the like.
  • the router split device After the router split device is separated from the router body device, it moves along the direction of the access terminal, and establishes a wireless communication connection with the router body device and the access terminal respectively, where the router body device The data packet is forwarded wirelessly with the access terminal.
  • the router body device of the split router connects to the Internet through a router interface.
  • the router body device of the split router connects to the Internet through a router interface.
  • the distance between the access terminal and the router body device may be relatively long, and the signal strength of the access terminal received by the router body device is If it is weak, it sends a separate instruction to the router split device, and controls the mobile device of the router split device to move to implement separation from the router body device.
  • path probe is performed, moves along the direction of the access terminal, and stops at a certain location, and the router body device and the access The terminal separately establishes a wireless communication connection, and forwards the data packet based on the wireless manner between the router body device and the access terminal.
  • the separated router split device forwards the data packet based on the wireless manner between the router body device and the access terminal, and the router split device can freely move according to the separate instruction, so that the communication quality can be improved and satisfied.
  • the router split device before the router split device establishes a wireless communication connection with the router body device and the access terminal respectively, performing path test to determine that the access terminal is established in a better orientation.
  • Communication connection to ensure communication quality correspondingly, the method includes:
  • the router split device detects the signal strength of the access terminal and also sends the router body device The signal strength is detected.
  • the mobile station When it is detected that the signal strength of the access terminal exceeds a first preset threshold, and the signal strength of the router body device exceeds a second preset threshold, the mobile station stops moving, triggering The router body device and the access terminal respectively establish an operation of a wireless communication connection.
  • the router split device detects the signal strength of the access terminal and also sends the router body device The signal strength is detected.
  • the mobile station stops moving, triggering with the router.
  • the main device and the access terminal respectively establish an operation of a wireless communication connection.
  • the router split device detects a signal strength of the access terminal in a real-time process to perform a path test to determine a target moving direction, and after determining a target moving direction, the control center The mobile device moves along the moving direction of the target, and detects the signal strength of the access terminal in real time during the moving process. Once the signal strength is detected to exceed the first preset threshold, the mobile device stops immediately. Moving, triggering an operation of establishing a wireless communication connection with the router body device and the access terminal, respectively.
  • the router split device detects the signal strength of the access terminal in real time during the mobile process, performs path test to determine a target moving direction, and after determining the target moving direction, controls the mobile device along the path.
  • Moving the target moving direction setting a detection time, moving along the target moving direction during the detecting time and detecting the signal strength of the access terminal, when the detecting time is over, the statistical detecting time Detecting a plurality of signal strengths, determining a location of a maximum signal strength of the plurality of signal strengths, and returning to the location where the maximum value is stopped to stop, triggering a wireless communication connection with the router body device and the access terminal respectively Operation.
  • the router split device receives the wireless signal sent by the access terminal when the data packet is forwarded between the router body device and the access terminal based on the wireless manner. And performing amplification to transmit the amplified wireless signal to the router body device; and/or receiving the wireless signal sent by the router body device and performing amplification, and transmitting the amplified wireless signal to the access terminal.
  • the method when the router body device detects that the signal strength of the access terminal is greater than a third preset threshold, the method includes:
  • the optimal path is a path that is filtered from the original path and is closest to the router body device.
  • the router body device still detects the signal strength of the access terminal in real time during the working process of the router split device, and finds that the signal strength of the access terminal is restored to the original strength or greater than And the third preset threshold is sent to the router split device to control the mobile device to return along the original path, so that the router split device and the router body device are combined to restore only The state of communication by the router body device.
  • the router body device disconnects the communication connection with the router split device, and the router split device disconnects the communication connection with the access terminal.
  • FIG. 2 is a flowchart of a communication method based on a split router according to Embodiment 2 of the present application.
  • an optional embodiment of the communication between the router body device and the router split device is completed by using an interaction, including:
  • the router body device monitors the signal strength of the access terminal in real time, and when it is determined that the signal strength does not exceed the third preset threshold, sends a separate instruction to the router split device.
  • the router split device moves the mobile device according to the separation instruction to implement separation from the router body device.
  • the router split device detects the signal strength of the access terminal in real time to perform path test to determine the target moving direction, and moves along the target moving direction, and stops moving at the determined best orientation.
  • the best orientation is a location where the detected signal strength of the access terminal is greater than the first preset threshold, or where the detected signal strength maximum is within the preset time range.
  • the router split device establishes a communication connection with the router body device and the access terminal, and forwards the data packet based on the wireless manner between the router body device and the access terminal.
  • the router body device receives the wireless signal sent by the access terminal and performs amplification, and sends the amplified wireless signal to the router body device; or receives the router.
  • the wireless signal sent by the body device is amplified and sent to the access terminal.
  • the router body device when the router body device detects that the signal strength of the access terminal exceeds the third preset threshold, the router body device sends a fit instruction to the router split device.
  • the router split device moves the mobile device back along the original path to implement a combination with the router body device.
  • FIG. 3 is a schematic structural diagram of a router split device according to Embodiment 3 of the present application.
  • the split device of the router may be implemented by using software or hardware, and the split device of the router may be integrated into an access terminal and a fixed terminal. Or in the server, as shown in Figure 3, the structure of the router split device is as follows: mobile module 310, communication module 320 and mobile device 330;
  • the mobile module 310 is configured to control the mobile device 330 to perform mobility according to a separate instruction sent by the router body device, so as to implement separation between the router split device and the router body device.
  • the communication module 320 is configured to establish a wireless communication connection with the router body device and the access terminal, and forward the data packet between the router body device and the access terminal according to a wireless manner.
  • the router split device in this embodiment is used to perform the split router-based communication method described in the foregoing embodiment.
  • the router split device further includes: a first signal detecting module 340;
  • the first signal detecting module 340 is configured to perform path testing according to the detected signal strength of the access terminal in real time to determine a target moving direction, and control the mobile device to move along the target moving direction.
  • the mobile stops When the detected signal strength exceeds the first preset threshold, the mobile stops, and triggers an operation of establishing a wireless communication connection with the router body device and the access terminal, respectively.
  • the router split device further includes: a second signal detecting module 350;
  • the second signal detecting module 350 is configured to perform path testing according to the detected signal strength of the access terminal in real time to determine a target moving direction, and control the mobile device to move along the target moving direction.
  • the detected signal strength is the maximum value detected within the preset time period, the movement is stopped, and an operation of establishing a wireless communication connection with the router body device and the access terminal respectively is triggered.
  • the communication module 320 is configured to receive and amplify a wireless signal sent by the access terminal, and send the amplified wireless signal to the router body device; and/or receive the The wireless signal sent by the router body device is amplified and sent to the access terminal.
  • the mobile module 310 is configured to move the mobile device to return along the original path according to the combined instruction sent by the router body device, or determine an optimal path along the original path.
  • the optimal path is returned to implement the combination of the router split device and the router body device.
  • the optimal path is a path that is filtered from the original path and is closest to the router body device.
  • the router split device further includes: a communication disconnect module 360;
  • the communication disconnecting module 360 is configured to disconnect the router split device from the access terminal and/or router after the mobile module 310 implements the combination of the router split device and the router body device. The communication connection of the body device.
  • the router split device described in the foregoing embodiment is also used to perform the split router-based communication method described in the foregoing embodiments.
  • This embodiment provides a split router, any of the router split devices described in the foregoing embodiments.
  • the split router further includes: a router body; the router body device and the router split device implement detachable connection on hardware.
  • the router body is a wireless router. After the router body is separated from the router split device hardware, the wireless communication connection is adopted.
  • the working principle of the split router in this embodiment is as follows: the router body device is monitored in real time. Measure the signal strength of the access terminal, and when it is determined that the signal strength does not exceed the third preset threshold, send a separation instruction to the router split device; the router split device moves the mobile device according to the split instruction, and implements Separation of the router body device.
  • the router split device After the router split device is separated from the router body device, a communication connection is established with the router body device and the access terminal, and the router body device disconnects from the access terminal.
  • the router split device detects the signal strength of the access terminal in real time to perform path test to determine a target moving direction, and moves along the target moving direction, when the detected signal strength at a certain location exceeds the first a predetermined threshold, stopping the movement at the certain location, establishing a communication connection with the router body device and the access terminal, and based on the wireless between the router body device and the access terminal Way to forward the packet.
  • the router split device detects the signal strength of the access terminal in real time to perform path test to determine a target moving direction, and moves along the target moving direction, when the detected signal strength at a certain position is pre- Setting the maximum value detected in the time period, stopping at the certain location, establishing a communication connection with the router body device and the access terminal, and at the router body device and the access terminal Forward packets based on wireless mode.
  • the router split device forwards the data packet based on the wireless manner between the router body device and the access terminal, including:
  • the router split device receives the wireless signal sent by the access terminal and performs amplification, and sends the amplified wireless signal to the router body device, and/or the router split device receives the router body device.
  • the transmitted wireless signal is amplified and transmitted to the access terminal.
  • the router body device monitors the signal strength of the access terminal in real time, and when it is determined that the signal strength exceeds the third preset threshold, sends a fit instruction to the router split device; the router split device moves the move The device returns along the original path, or determines an optimal path from the original path to return along the optimal path, and implements a fit with the router body device.
  • the optimal path is a path that is filtered from the original path and is closest to the router body device. After the router split device is combined with the router body device, the router split device is broken. Opening a communication connection with the access terminal, the router body device and the access terminal implement a communication connection.
  • the split instruction is sent to the router split device, and the router split device can follow the direction of the access terminal according to the split command. Freely moving, and forwarding data packets between the router body device and the access terminal based on wireless mode, which can improve communication quality, meet user's multi-directional communication requirements, and maintain high quality communication regardless of how the user moves. .
  • the embodiment of the present application further provides a non-transitory computer readable storage medium, wherein the non-transitory computer readable storage medium stores computer instructions for causing the computer to execute any one of the foregoing routers The communication method of the split device.
  • an electronic device includes:
  • One or more processors 410, one processor 410 is taken as an example in FIG. 4;
  • the electronic device may further include an input device 430 and an output device 440.
  • the processor 410, the memory 420, the input device 430, and the output device 440 in the electronic device may be connected by a bus or other means, and the connection through the bus is taken as an example in FIG.
  • the memory 420 is a non-transitory computer readable storage medium that can be used to store software programs, computer executable programs, and modules.
  • the processor 410 executes various functional applications and data processing by executing software programs, instructions, and units stored in the memory 420, that is, a router-based device-based communication method implementing the above-described method embodiments.
  • the memory 420 may include a storage program area and an storage data area, wherein the storage program area may store an operating system, an application required for at least one function; the storage data area may store data created according to usage of the electronic device, and the like. Furthermore, the memory 420 may include a high speed random access memory, and may also include a nonvolatile memory such as at least one magnetic disk storage device, flash memory device, or other non- Volatile memory device. In some embodiments, memory 420 can optionally include memory remotely located relative to processor 410, which can be connected to the electronic device over a network. Examples of such networks include, but are not limited to, the Internet, intranets, local area networks, mobile communication networks, and combinations thereof.
  • the input device 430 of the present embodiment may include digital or character information that receives input, and other input devices that generate key signal inputs related to user settings and function control of the electronic device.
  • the output device 440 may include a display device such as a display screen, and an audio playback device such as a speaker.
  • all or part of the steps of implementing the above embodiments may be performed by a program to instruct related hardware, the program being stored in a non-transitory computer readable storage medium, including a plurality of instructions for making A device (which may be a microcontroller, chip, etc.) or a processor performs all or part of the steps of the methods described in various embodiments of the present application.
  • the foregoing storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk, and the like, which can store program codes. . Note that the above are only optional embodiments of the present application and the technical principles applied thereto.
  • the application forwards the data packet by using the separated router split device between the router body device and the access terminal, and the router split device can freely move according to the separate instruction, thereby improving the communication quality and satisfying the user. Multi-faceted communication needs.

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Abstract

一种基于分体路由器的通信方法及分体路由器。所述方法包括:根据路由器本体设备发送的分离指令移动路由器分体设备的移动装置,实现所述路由器分体设备与所述路由器本体设备的分离;与所述路由器本体设备和所述接入终端分别建立无线通信连接,并在所述路由器本体设备和接入终端之间基于无线方式转发数据包。

Description

基于分体路由器的通信方法及分体路由器
本申请要求在2016年3月28日提交中国专利局、申请号为2016101818882、发明名称为“基于分体路由器的通信方法及分体路由器”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及通信技术领域,例如涉及一种基于分体路由器的通信方法及分体路由器。
背景技术
在相关技术中,路由器的位置一旦固定,就不方便再移动,而在很多场景下,这种路由器已不能满足用户的需求。
例如,当用户把路由器放置在客厅时,用户在客厅使用接入终端时,此时路由器接收到的接入终端的信号强度就比较强,能够满足用户的正常通信需求,而当用户去卧室时,即用户使用的接入终端距离路由器比较远时,此时路由器检测到的接入终端的信号强度就比较弱,这样有可能影响接入终端与路由器的正常通信。
在实现本申请过程中,发明人发现如果想要保持正常通信的话,需要人为的挪动路由器,并且由于相关的路由器需要通过电缆与墙上固定的端口进行连接,因此路由器的位置移动也受限于所连接的固定端口和电缆的长度,往往通过短距离的移动也无法提高通信质量。
发明内容
本申请提供一种基于分体路由器的通信方法及分体路由器,以提高通信质量,满足用户多方位的通信需求。
第一方面,本申请实施例提供了一种基于分体路由器的通信方法,应用于路由器分体设备,包括:
根据路由器本体设备发送的分离指令,控制路由器分体设备的移动装置进 行移动,实现所述路由器分体设备与所述路由器本体设备的分离;以及
与所述路由器本体设备和所述接入终端分别建立无线通信连接,并在所述路由器本体设备和接入终端之间基于无线方式转发数据包。
可选的,所述方法还包括:
实时根据检测到的所述接入终端的信号强度进行路径试探,以确定目标移动方向,并控制所述移动装置沿着所述目标移动方向进行移动,当检测到的信号强度超过第一预设阈值时,则停止移动,触发与所述路由器本体设备和所述接入终端分别建立无线通信连接的操作。
可选的,所述方法还包括:
实时根据检测到的所述接入终端的信号强度进行路径试探,以确定目标移动方向,并控制所述移动装置沿着所述目标移动方向进行移动,统计预设时间内检测到的多个信号强度,确定多个信号强度中最大信号强度对应的位置,控制所述路由器分体设备移动至所述最大信号强度对应的位置并与所述路由器本体设备和所述接入终端分别建立无线通信连接。
可选的,在所述路由器本体设备和接入终端之间基于无线方式转发数据包,包括:
接收所述接入终端发送的无线信号并进行放大,将放大后的无线信号发送至所述路由器本体设备;
和/或,接收所述路由器本体设备发送的无线信号并进行放大,将放大后的无线信号发送至所述接入终端。
可选的,所述方法还包括:
根据所述路由器本体设备发送的合体指令,控制所述移动装置沿着原路径返回,或者从所述原路径中确定一条最佳路径沿着所述最佳路径返回,实现所述路由器分体设备与所述路由器本体设备的合体。
可选的,实现所述路由器分体设备与所述路由器本体设备的合体之后,还包括:
断开所述路由器分体设备与所述接入终端和/或路由器本体设备的通信连接。
第二方面,本申请实施例还提供了一种路由器分体设备,包括:
所述移动模块,设置为根据路由器本体设备发送的分离指令,控制所述移 动装置进行移动,实现所述路由器分体设备与所述路由器本体设备的分离;
所述通信模块,设置为与所述路由器本体设备和所述接入终端分别建立无线通信连接,并在所述路由器本体设备和接入终端之间基于无线方式转发数据包。
可选的,所述路由器分体设备还包括:第一信号检测模块;
所述第一信号检测模块:设置为实时根据检测到的所述接入终端的信号强度进行路径试探,以确定目标移动方向,并控制所述移动装置沿着所述目标移动方向进行移动,当检测到的信号强度超过第一预设阈值时,则停止移动,与所述路由器本体设备和所述接入终端分别建立无线通信连接。
可选的,所述路由器分体设备还包括:第二信号检测模块;
所述第二信号检测模块:设置为实时检测所述接入终端的信号强度进行路径试探以确定目标移动方向,并控制所述移动装置沿着所述目标移动方向进行移动,统计预设时间内检测到的多个信号强度,确定多个信号强度中最大信号强度对应的位置,控制所述路由器分体设备移动至所述最大强度对应的位置,并与所述路由器本体设备和所述接入终端分别建立无线通信连接。
可选的,所述通信模块设置为:
接收所述接入终端发送的无线信号并进行放大,将放大后的无线信号发送至所述路由器本体设备;和/或,接收所述路由器本体设备发送的无线信号并进行放大,将放大后的无线信号发送至所述接入终端。
可选的,所述移动模块,设置为根据所述路由器本体设备发送的合体指令,控制所述移动装置沿着原路径返回,实现所述路由器分体设备与所述路由器本体设备的合体。
可选的,所述路由器分体设备还包括:通信断开模块;
所述通信断开模块,设置为在所述移动模块实现所述路由器分体设备与所述路由器本体设备的合体之后,断开所述路由器分体设备与所述接入终端和/或路由器本体设备的通信连接。
第三方面,本申请实施例还提供了一种分体路由器,包括上述路由器分体设备。
可选的,所述分体路由器还包括:路由器本体;
所述路由器本体设备与所述路由器分体设备在硬件上实现可分离连接。
可选的,所述路由器本体为无线路由器。
可选的,所述路由器本体与所述路由器分体设备硬件上分离后,采用无线通信连接。
第四方面,本申请实施例还提供了一种电子设备,包括:
至少一个处理器;以及,
与所述至少一个处理器通信连接的存储器;其中,
所述存储器存储有可被所述一个处理器执行的指令,所述指令被所述至少一个处理器执行,以使所述至少一个处理器能够:
根据路由器本体设备发送的分离指令,控制路由器分体设备的移动装置进行移动,实现所述路由器分体设备与所述路由器本体设备的分离;以及
与所述路由器本体设备和接入终端分别建立无线通信连接,并在所述路由器本体设备和接入终端之间基于无线方式转发数据包。
第五方面,本申请实施例还提供一种非暂态计算机可读存储介质,其中,所述非暂态计算机可读存储介质存储计算机指令,所述计算机指令用于使所述计算机执行上述任意一种基于分体路由器的通信方法。
第六方面,本申请实施例还提供一种计算机程序产品,包括存储在非暂态计算机可读存储介质上的计算程序,所述计算机程序包括程序指令,当所述程序指令被计算机执行时,使所述计算机执行上述任意一种基于分体路由器的通信方法。
本申请实施例通过分离后的路由器分体设备在所述路由器本体设备和接入终端之间基于无线方式转发数据包,并且路由器分体设备能够根据分离指令进行自由移动,这样能够提高通信质量,满足用户多方位的通信需求
附图说明
一个或多个实施例通过与之对应的附图中的图片进行示例性说明,这些示例性说明并不构成对实施例的限定,附图中具有相同参考数字标号的元件表示为类似的元件,除非有特别申明,附图中的图不构成比例限制。
图1是本申请实施例一中的一种基于分体路由器的通信方法的流程图;
图2是本申请实施例二中的一种基于分体路由器的通信方法的流程图;
图3是本申请实施例三中的一种路由器分体设备的结构图;
图4为本申请实施例六中的一种电子设备的硬件结构图。
实施方式
下面结合附图和实施例对本申请作相关说明。可以理解的是,此处所描述的可选实施例仅仅用于解释本申请,而非对本申请的限定。另外还需要说明的是,为了便于描述,附图中仅示出了与本申请相关的部分而非全部结构。
实施例一
图1为本申请实施例一提供的一种基于分体路由器的通信方法的流程图,本实施例可适用于大型办公场所或家用路由器接口有限的情况下,该方法可以由本申请实施例提供的路由器分体设备或包含所述路由器分体设备的分体路由器来执行,如图1所示,包括:
在S110中、根据路由器本体设备发送的分离指令,控制路由器分体设备的移动装置进行移动,实现所述路由器分体设备与所述路由器本体设备的分离。
路由器本体设备可为有线或无线路由器。移动装置设置在所述路由器分体设备上,用于实现所述路由器分体设备的移动功能,可以为脚轮。在所述路由器本体设备检测到当前接入终端的信号强度较弱时,说明此时接入终端在朝向远离所述路由器本体设备的方向移动,则向路由器分体设备发送分离指令,控制所述路由器分体设备的移动装置进行移动,实现所述路由器分体设备与所述路由器本体设备的分离。
在S120中、路由器分体设备与所述路由器本体设备和接入终端分别建立无线通信连接,并在所述路由器本体设备和接入终端之间基于无线方式转发数据包。
其中,所述无线通信可为WIFI通信连接、3G或4G网络连接或蓝牙连接等。所述接入终端包括但不限于移动电话、掌上电脑、平板电脑、笔记本电脑等。
所述路由器分体设备与所述路由器本体设备分离之后,会沿着接入终端的方向移动,并与所述路由器本体设备和所述接入终端分别建立无线通信连接,在所述路由器本体设备和接入终端之间基于无线方式转发数据包。
例如,在家庭路由器接口有限的情况下,如果路由器接口位于客厅内,则所述分体路由器的路由器本体设备通过路由器接口连接互联网。当用户在客厅使用接入终端时,由于此时接入终端距离所述路由器本体设备比较近,则所述 路由器本体设备接收到的接入终端的信号强度也比较强,此时能够与接入终端进行正常通信。但是,当用户由客厅移动至卧室使用接入终端时,此时所述接入终端距离所述路由器本体设备的距离就可能比较远,则所述路由器本体设备接收到的接入终端的信号强度就比较弱,则向路由器分体设备发送分离指令,控制所述路由器分体设备的移动装置进行移动,实现与所述路由器本体设备的分离。所述路由器分体设备在与所述路由器本体设备完成分离之后,会进行路径试探,沿着接入终端的方向移动,并在某一位置处停止,与所述路由器本体设备和所述接入终端分别建立无线通信连接,在所述路由器本体设备和接入终端之间基于无线方式转发数据包。
本实施例通过分离后的路由器分体设备在所述路由器本体设备和接入终端之间基于无线方式转发数据包,并且路由器分体设备能够根据分离指令进行自由移动,这样能够提高通信质量,满足用户多方位的通信需求。
在上述实施例的基础上,所述路由器分体设备与所述路由器本体设备和所述接入终端分别建立无线通信连接之前,进行路径试探以确定在较好的方位与所述接入终端建立通信连接,以保证通信质量,相应的,所述方法包括:
实时检测所述接入终端的信号强度进行路径试探以确定目标移动方向,并控制所述移动装置沿着所述目标移动方向进行移动,当检测到的信号强度超过第一预设阈值时,则停止移动,触发与所述路由器本体设备和所述接入终端分别建立无线通信连接的操作。为了与后续出现的预设阈值进行区分,这里将首次在本文中出现的预设阈值定义为第一预设阈值,后续出现的依次定义为第二预设阈值和第三预设阈值。同时,为了保持与所述接入终端和所述路由器本体设备都能够进行高质量的通信,所述路由器分体设备在检测所述接入终端的信号强度同时,也对所述路由器本体设备发出的信号强度进行检测,当检测到所述接入终端的信号强度超过第一预设阈值,且检测到所述路由器本体设备的信号强度超过第二预设阈值时,则停止移动,触发与所述路由器本体设备和所述接入终端分别建立无线通信连接的操作。
或者,实时检测所述接入终端的信号强度进行路径试探以确定目标移动方向,并控制所述移动装置沿着所述目标移动方向进行移动,当检测到的信号强 度为预设时间段内检测到的最大值时,则停止移动,触发与所述路由器本体设备和所述接入终端分别建立无线通信连接的操作。同时,为了保持与所述接入终端和所述路由器本体设备都能够进行高质量的通信,所述路由器分体设备在检测所述接入终端的信号强度同时,也对所述路由器本体设备发出的信号强度进行检测,当检测到所述接入终端的信号强度为最大值时,且检测到所述路由器本体设备的信号强度超过第二预设阈值时,则停止移动,触发与所述路由器本体设备和所述接入终端分别建立无线通信连接的操作。可选的,第一种实现方式是,所述路由器分体设备在移动的过程中实时检测所述接入终端的信号强度进行路径试探以确定目标移动方向,在确定目标移动方向之后,控制所述移动装置沿着所述目标移动方向进行移动,在移动的过程中依然实时检测所述接入终端的信号强度,一旦检测到所述信号强度超过所述第一预设阈值时,则马上停止移动,触发与所述路由器本体设备和所述接入终端分别建立无线通信连接的操作。第二种实现方式是,所述路由器分体设备在移动的过程中实时检测所述接入终端的信号强度进行路径试探以确定目标移动方向,在确定目标移动方向之后,控制所述移动装置沿着所述目标移动方向进行移动,此时设置了一个检测时间,在检测时间内沿着所述目标移动方向移动并检测所述接入终端的信号强度,当检测时间结束后,统计检测时间内检测到的多个信号强度,确定多个信号强度中最大信号强度的所在位置,并返回该最大值所在位置处停止移动,触发与所述路由器本体设备和所述接入终端分别建立无线通信连接的操作。
在上述实施例的基础上,为提高通信质量,所述路由器分体设备在所述路由器本体设备和接入终端之间基于无线方式转发数据包时,接收的所述接入终端发送的无线信号并进行放大,将放大后的无线信号发送至所述路由器本体设备;和/或接收所述路由器本体设备发送的无线信号并进行放大,将放大后的无线信号发送至所述接入终端。
在上述实施例的基础上,当所述路由器本体设备又检测到所述接入终端的信号强度大于第三预设阈值时,所述方法包括:
根据所述路由器本体设备发送的合体指令移动所述移动装置沿着原路径返回,或者从所述原路径中确定一条最佳路径沿着所述最佳路径返回,实现所述 路由器分体设备与所述路由器本体设备的合体。所述最佳路径为从原路径中筛选出的距离所述路由器本体设备距离最近的一条路径。
可选的,在上述路由器分体设备工作的过程中,所述路由器本体设备依然在实时检测所述接入终端的信号强度,当发现所述接入终端的信号强度恢复至原来的强度或者大于第三预设阈值时,则向所述路由器分体设备发送合体指令,以控制所述移动装置沿着原路径返回,实现所述路由器分体设备与所述路由器本体设备的合体,恢复至仅由路由器本体设备进行通信的状态。此时,所述路由器本体设备断开与所述路由器分体设备的通信连接,以及所述路由器分体设备断开与所述接入终端的通信连接。
实施例二
图2为本申请实施例二提供的一种基于分体路由器的通信方法的流程图,本实施例为路由器本体设备和路由器分体设备通过交互完成通信的可选实施例,包括:
在S210中、路由器本体设备实时监测接入终端的信号强度,当确定所述信号强度未超过第三预设阈值时,则向路由器分体设备发送分离指令。
在S220中、路由器分体设备根据所述分离指令移动移动装置,实现与所述路由器本体设备的分离。
在S230中、路由器分体设备实时检测所述接入终端的信号强度进行路径试探以确定目标移动方向,并沿着所述目标移动方向进行移动,在确定的最好方位处停止移动。
其中,所述最好方位为检测到的接入终端的信号强度大于第一预设阈值的位置,或者,预设时间范围内检测到的信号强度最大值所在位置处。
在S240中、路由器分体设备与所述路由器本体设备、所述接入终端分别建立通信连接,并在所述路由器本体设备和接入终端之间基于无线方式转发数据包。
可选的,所述路由器本体设备接收所述接入终端发送的无线信号并进行放大,将放大后的无线信号发送至所述路由器本体设备;或者,接收所述路由器 本体设备发送的无线信号并进行放大,将放大后的无线信号发送至所述接入终端。
在S250中、路由器本体设备在检测到所述接入终端的信号强度超过所述第三预设阈值时,则向路由器分体设备发送合体指令。
在S260中、路由器分体设备移动所述移动装置沿着原路径返回,实现与所述路由器本体设备的合体。
实施例三
图3所示为本申请实施例三提供的一种路由器分体设备的结构示意图,该路由器分体设备可采用软件或硬件的方式实现,该路由器分体设备可集成于接入终端、固定终端或服务器中,如图3所示,该路由器分体设备的结构如下:移动模块310、通信模块320和移动装置330;
所述移动模块310设置为根据路由器本体设备发送的分离指令,控制所述移动装置330进行移动,实现所述路由器分体设备与所述路由器本体设备的分离;
所述通信模块320设置为与所述路由器本体设备和所述接入终端分别建立无线通信连接,并在所述路由器本体设备和接入终端之间基于无线方式转发数据包。
本实施例所述的路由器分体设备用于执行上述实施例所述的基于分体路由器的通信方法。
在上述实施例的基础上,所述路由器分体设备还包括:第一信号检测模块340;
所述第一信号检测模块340设置为实时根据检测到的所述接入终端的信号强度进行路径试探,以确定目标移动方向,并控制所述移动装置沿着所述目标移动方向进行移动,当检测到的信号强度超过所述第一预设阈值时,则停止移动,触发与所述路由器本体设备和所述接入终端分别建立无线通信连接的操作。
在上述实施例的基础上,所述路由器分体设备还包括:第二信号检测模块350;
所述第二信号检测模块350设置为实时根据检测到的所述接入终端的信号强度进行路径试探,以确定目标移动方向,并控制所述移动装置沿着所述目标移动方向进行移动,当检测到的信号强度为预设时间段内检测到的最大值时,则停止移动,触发与所述路由器本体设备和所述接入终端分别建立无线通信连接的操作。
在上述实施例的基础上,所述通信模块320设置为接收所述接入终端发送的无线信号并进行放大,将放大后的无线信号发送至所述路由器本体设备;和/或,接收所述路由器本体设备发送的无线信号并进行放大,将放大后的无线信号发送至所述接入终端。
在上述实施例的基础上,所述移动模块310设置为根据所述路由器本体设备发送的合体指令移动所述移动装置沿着原路径返回,或者从所述原路径中确定一条最佳路径沿着所述最佳路径返回,实现所述路由器分体设备与所述路由器本体设备的合体。所述最佳路径为从原路径中筛选出的距离所述路由器本体设备距离最近的一条路径。
在上述实施例的基础上,所述路由器分体设备还包括:通信断开模块360;
所述通信断开模块360设置为在所述移动模块310实现所述路由器分体设备与所述路由器本体设备的合体之后,断开所述路由器分体设备与所述接入终端和/或路由器本体设备的通信连接。
上述实施例所述的路由器分体设备同样用于执行上述各实施例所述的基于分体路由器的通信方法。
实施例四
本实施例提供一种分体路由器,上述实施例所述的任一路由器分体设备。
在上述实施例的基础上,所述分体路由器还包括:路由器本体;所述路由器本体设备与所述路由器分体设备在硬件上实现可分离连接。其中,所述路由器本体为无线路由器。所述路由器本体与所述路由器分体设备硬件上分离后,采用无线通信连接。
本实施例所述的分体路由器的工作原理如下:所述路由器本体设备实时监 测接入终端的信号强度,当确定所述信号强度未超过第三预设阈值时,则向路由器分体设备发送分离指令;所述路由器分体设备根据所述分离指令移动移动装置,实现与所述路由器本体设备的分离。
所述路由器分体设备与所述路由器本体设备的分离之后,与所述路由器本体设备、所述接入终端分别建立通信连接,且所述路由器本体设备与所述接入终端断开通信连接。
所述路由器分体设备实时检测所述接入终端的信号强度进行路径试探以确定目标移动方向,并沿着所述目标移动方向进行移动,当某一位置处检测到的信号强度超过所述第一预设阈值时,则在所述某一位置处停止移动,并建立与所述路由器本体设备和所述接入终端的通信连接,并在所述路由器本体设备和接入终端之间基于无线方式转发数据包。
或者,所述路由器分体设备实时检测所述接入终端的信号强度进行路径试探以确定目标移动方向,并沿着所述目标移动方向进行移动,当某一位置处检测到的信号强度为预设时间段内检测到的最大值时,则停止在所述某一位置处,并建立与所述路由器本体设备和所述接入终端的通信连接,并在所述路由器本体设备和接入终端之间基于无线方式转发数据包。
其中,所述路由器分体设备在所述路由器本体设备和接入终端之间基于无线方式转发数据包,包括:
所述路由器分体设备接收所述接入终端发送的无线信号并进行放大,将放大后的无线信号发送至所述路由器本体设备,和/或,所述路由器分体设备接收所述路由器本体设备发送的无线信号并进行放大,将放大后的无线信号发送至所述接入终端。
另外,路由器本体设备实时监测接入终端的信号强度,当确定所述信号强度超过所述第三预设阈值时,则向路由器分体设备发送合体指令;所述路由器分体设备移动所述移动装置沿着原路径返回,或者从所述原路径中确定一条最佳路径沿着所述最佳路径返回,实现与所述路由器本体设备的合体。所述最佳路径为从原路径中筛选出的距离所述路由器本体设备距离最近的一条路径。所述路由器分体设备与所述路由器本体设备的合体之后,所述路由器分体设备断 开与所述接入终端的通信连接,所述路由器本体设备与所述接入终端实现通信连接。
本实施例通过使用分体路由器,在所述路由器本体设备接收到的信号强度较弱时,则向路由器分体设备发送分离指令,所述路由器分体设备能够根据分离指令沿着接入终端方向进行自由移动,并在所述路由器本体设备和接入终端之间基于无线方式转发数据包,这样能够提高通信质量,满足用户多方位的通信需求,无论用户怎么移动,都能够保持高质量的通信。
实施例五
本申请实施例还提供了一种非暂态计算机可读存储介质,其中,所述非暂态计算机可读存储介质存储计算机指令,所述计算机指令用于使所述计算机执行上述任意一种路由器分体设备的通信方法。
实施例六
本申请实施例还提供了一种电子设备,参见图4,该电子设备包括:
一个或多个处理器410,图4中以一个处理器410为例;
存储器420。
所述电子设备还可以包括:输入装置430和输出装置440。
所述电子设备中的处理器410、存储器420、输入装置430和输出装置440可以通过总线或者其他方式连接,图4中以通过总线连接为例。
存储器420作为一种非瞬时性计算机可读存储介质,可用于存储软件程序、计算机可执行程序以及模块。处理器410通过运行存储在存储器420中的软件程序、指令以及单元,从而执行各种功能应用以及数据处理,即实现上述方法实施例的基于路由器分体设备的通信方法。
存储器420可以包括存储程序区和存储数据区,其中,存储程序区可存储操作系统、至少一个功能所需要的应用程序;存储数据区可存储根据电子设备的使用所创建的数据等。此外,存储器420可以包括高速随机存取存储器,还可以包括非易失性存储器,例如至少一个磁盘存储器件、闪存器件、或其他非 易失性存储器件。在一些实施例中,存储器420可选包括相对于处理器410远程设置的存储器,这些远程存储器可以通过网络连接至电子设备。上述网络的实例包括但不限于互联网、企业内部网、局域网、移动通信网及其组合。
本实施例的输入装置430可以包括接收输入的数字或字符信息,以及产生与电子设备的用户设置以及功能控制有关的键信号输入的其他输入装置。输出装置440可包括显示屏等显示设备,以及扬声器等音频播放设备。
本领域技术人员可以理解实现上述实施例方法中的全部或部分步骤是可以通过程序来指令相关的硬件来完成,该程序存储在一个非暂态计算机可读存储介质中,包括若干指令用以使得一个设备(可以是单片机,芯片等)或处理器(processor)执行本申请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、移动硬盘、只读存储器(Read-Only Memory,ROM)、随机存取存储器(Random Access Memory,RAM)、磁碟或者光盘等各种可以存储程序代码的介质。注意,上述仅为本申请的可选实施例及所运用技术原理
注意,上述仅为本申请的可选实施例及所运用技术原理。本领域技术人员会理解,本申请不限于这里所述的特定实施例。此外在不冲突的情况下,本申请实施例中的多种特征可以相互任意组合,组合之后的技术方案仍落入本申请的保护范围。
工业实用性
本申请通过分离后的路由器分体设备在所述路由器本体设备和接入终端之间基于无线方式转发数据包,并且路由器分体设备能够根据分离指令进行自由移动,这样能够提高通信质量,满足用户多方位的通信需求。

Claims (19)

  1. 一种基于分体路由器的通信方法,应用于路由器分体设备包括:
    根据路由器本体设备发送的分离指令,控制路由器分体设备的移动装置进行移动,实现所述路由器分体设备与所述路由器本体设备的分离;以及
    与所述路由器本体设备和接入终端分别建立无线通信连接,并在所述路由器本体设备和接入终端之间基于无线方式转发数据包。
  2. 根据权利要求1所述的方法,还包括:
    实时根据检测到的所述接入终端的信号强度进行路径试探,以确定目标移动方向,并控制所述移动装置沿着所述目标移动方向进行移动;
    当检测到的所述信号强度超过第一预设阈值时,则停止移动,并与所述路由器本体设备和所述接入终端分别建立无线通信连接。
  3. 根据权利要求1所述的方法,还包括:
    实时根据检测到的所述接入终端的信号强度进行路径试探,以确定目标移动方向,并控制所述移动装置沿着所述目标移动方向进行移动;
    统计预设时间内检测到的多个信号强度,确定多个信号强度中最大信号强度对应的位置;
    控制所述路由器分体设备移动至所述最大信号强度对应的位置,并与所述路由器本体设备和所述接入终端分别建立无线通信连接。
  4. 根据权利要求1-3任一项所述的方法,其中,在所述路由器本体设备和接入终端之间基于无线方式转发数据包,包括:
    接收所述接入终端发送的无线信号并进行放大,将放大后的无线信号发送至所述路由器本体设备;
    和/或,接收所述路由器本体设备发送的无线信号并进行放大,将放大后的无线信号发送至所述接入终端。
  5. 根据权利要求1-4任一项所述的方法,,还包括:
    根据所述路由器本体设备发送的合体指令,控制所述移动装置沿着原路径返回,或者从所述原路径中确定一条最佳路径沿着所述最佳路径返回,实现所述路由器分体设备与所述路由器本体设备的合体。
  6. 根据权利要求5所述的方法,实现所述路由器分体设备与所述路由器本体设备的合体之后,还包括:
    断开所述路由器分体设备与所述接入终端和/或路由器本体设备的通信连接。
  7. 一种路由器分体设备,包括:移动模块、通信模块和移动装置;
    所述移动模块,设置为根据路由器本体设备发送的分离指令,控制所述移动装置进行移动,实现所述路由器分体设备与所述路由器本体设备的分离;
    所述通信模块,设置为与所述路由器本体设备和接入终端分别建立无线通信连接,并在所述路由器本体设备和接入终端之间基于无线方式转发数据包。
  8. 根据权利要求7所述的路由器分体设备,还包括:第一信号检测模块;
    所述第一信号检测模块:设置为实时根据检测到的所述接入终端的信号强度进行路径试探,以确定目标移动方向,并控制所述移动装置沿着所述目标移动方向进行移动,当检测到的所述信号强度超过第一预设阈值时,则停止移动,并与所述路由器本体设备和所述接入终端分别建立无线通信连接。
  9. 根据权利要求7所述的路由器分体设备,还包括:第二信号检测模块;
    所述第二信号检测模块:设置为实时根据检测到的所述接入终端的信号强度进行路径试探,以确定目标移动方向,并控制所述移动装置沿着所述目标移动方向进行移动,统计预设时间内检测到的多个信号强度,确定多个信号强度中最大信号强度对应的位置,控制所述路由器分体设备移动至所述最大强度对应的位置,并与所述路由器本体设备和所述接入终端分别建立无线通信连接。
  10. 根据权利要求7所述的路由器分体设备,其特征在于,所述通信模块设置为:
    接收所述接入终端发送的无线信号并进行放大,将放大后的无线信号发送至所述路由器本体设备;和/或,接收所述路由器本体设备发送的无线信号并进行放大,将放大后的无线信号发送至所述接入终端。
  11. 根据权利要求7-10任一项所述的路由器分体设备,其中,所述移动模块,设置为根据所述路由器本体设备发送的合体指令,控制所述移动装置沿着原路径返回,实现所述路由器分体设备与所述路由器本体设备的合体。
  12. 根据权利要求11所述的路由器分体设备,还包括:通信断开模块;
    所述通信断开模块,设置为在所述移动模块实现所述路由器分体设备与所述路由器本体设备的合体之后,断开所述路由器分体设备与所述接入终端和/或路由器本体设备的通信连接。
  13. 一种分体路由器,其特征在于,包括权利要求7-12任一项所述的路由器分体设备。
  14. 根据权利要求13所述的分体路由器,还包括:路由器本体设备;
    所述路由器本体设备与所述路由器分体设备在硬件上实现可分离连接。
  15. 根据权利要求13或14所述的分体路由器,其中,所述路由器本体设备为无线路由器。
  16. 根据权利要求13或14所述的分体路由器,其中,所述路由器本体设备与所述路由器分体设备硬件上分离后,采用无线通信连接。
  17. 一种电子设备,包括:
    至少一个处理器;以及,
    与所述至少一个处理器通信连接的存储器;其中,
    所述存储器存储有可被所述一个处理器执行的指令,所述指令被所述至少一个处理器执行,以使所述至少一个处理器能够:
    根据路由器本体设备发送的分离指令,控制路由器分体设备的移动装置进行移动,实现所述路由器分体设备与所述路由器本体设备的分离;以及
    与所述路由器本体设备和接入终端分别建立无线通信连接,并在所述路由器本体设备和接入终端之间基于无线方式转发数据包。
  18. 一种非暂态计算机可读存储介质,其中,所述非暂态计算机可读存储介质存储计算机指令,所述计算机指令用于使所述计算机执行权利要求1-6任一项所述的分体路由器的通信方法。
  19. 一种计算机程序产品,包括存储在非暂态计算机可读存储介质上的计算程序,所述计算机程序包括程序指令,当所述程序指令被计算机执行时,使所述计算机执行权利要求1-6任一项所述的分体路由器的通信方法。
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