WO2020103039A1 - Routeur sans fil et système et procédé de mouvement autonome d'un routeur sans fil - Google Patents

Routeur sans fil et système et procédé de mouvement autonome d'un routeur sans fil

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Publication number
WO2020103039A1
WO2020103039A1 PCT/CN2018/116730 CN2018116730W WO2020103039A1 WO 2020103039 A1 WO2020103039 A1 WO 2020103039A1 CN 2018116730 W CN2018116730 W CN 2018116730W WO 2020103039 A1 WO2020103039 A1 WO 2020103039A1
Authority
WO
WIPO (PCT)
Prior art keywords
preset
wireless router
signal detection
communication quality
signal strength
Prior art date
Application number
PCT/CN2018/116730
Other languages
English (en)
Chinese (zh)
Inventor
刘兴慧
张慧雯
周政霖
Original Assignee
深圳市柔宇科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳市柔宇科技有限公司 filed Critical 深圳市柔宇科技有限公司
Priority to CN201880096017.8A priority Critical patent/CN112703757A/zh
Priority to PCT/CN2018/116730 priority patent/WO2020103039A1/fr
Publication of WO2020103039A1 publication Critical patent/WO2020103039A1/fr

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W16/00Network planning, e.g. coverage or traffic planning tools; Network deployment, e.g. resource partitioning or cells structures
    • H04W16/18Network planning tools
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W16/00Network planning, e.g. coverage or traffic planning tools; Network deployment, e.g. resource partitioning or cells structures
    • H04W16/18Network planning tools
    • H04W16/20Network planning tools for indoor coverage or short range network deployment
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/02Arrangements for optimising operational condition

Definitions

  • the present application relates to the technical field of terminal equipment, in particular to a wireless router and a wireless router autonomous mobile system and method.
  • a wireless router is a device with wireless coverage, which is mainly used for users to access the Internet and wireless coverage.
  • a wireless router can be regarded as a transponder, which forwards broadband network signals to nearby wireless terminal devices, such as mobile phones and laptop computers, through antennas.
  • the present application provides a wireless router and a wireless router autonomous mobile system and method, which can autonomously adjust the spatial position of the wireless router during the use of the wireless router to ensure that multiple terminal devices for network communication through the wireless router have The best comprehensive communication quality.
  • the present application provides a wireless router.
  • the wireless router includes a router body, an antenna, a mobile base, and a controller.
  • the antenna is provided on the router body and used for sending wireless network signals.
  • the mobile base is connected to the router body and used to drive the router body to move.
  • the controller is electrically connected to the mobile base and the antenna, respectively, and the controller is used to control the mobile base to move along a preset path and detect the plurality of terminal devices during the movement of the wireless router Receiving the signal strength information of the wireless network signal, and calculating the target position of the wireless router according to the detected signal strength information, and controlling the mobile base to move and stay at the target position, wherein the multiple Each terminal device has the best comprehensive communication quality when the wireless router is located at the target location.
  • the present application provides a wireless router autonomous mobile system, including a rail and the wireless router described in the first aspect above.
  • the guide rail is used to provide a preset path
  • the wireless router is installed on the guide rail and can move along the preset path under the guidance of the guide rail.
  • the present application provides a method for autonomous movement of a wireless router.
  • the wireless router includes a router body and a mobile base connected to the router body.
  • the mobile base is used to drive the router body to move.
  • the autonomous mobile method of the wireless router includes:
  • the wireless router provided by the present application can realize the self-adjustment according to the signal strength information received by multiple terminal devices by sending wireless network signals and detecting the signal strength information of the wireless network signals received by multiple terminal devices
  • the function of the spatial position of the wireless router and can automatically find the best placement, so that the signal strength of each terminal device receiving the wireless network signal is in a balanced state, ensuring that multiple terminal devices have an optimal synthesis Communication quality, which can improve the user experience under limited resources.
  • FIG. 1 is a schematic diagram of a relationship between a wireless router autonomous mobile system and multiple terminal devices according to an embodiment of the present application.
  • FIG. 2 is a hardware block diagram of a wireless router according to an embodiment of the present application.
  • FIG. 3 is a schematic diagram of the relationship between a signal detection point and a moving path of a wireless router according to an embodiment of the present application.
  • FIG. 4 is a flowchart of a method for autonomous movement of a wireless router provided by the first embodiment of the present application.
  • FIG. 5 is a flowchart of a method for autonomous movement of a wireless router according to a second embodiment of the present application.
  • the wireless router autonomous mobile system 200 includes a wireless router 30, and the wireless router 30 and a plurality of terminal devices 40 located near the wireless router 30 constitute a wireless network system 100.
  • the wireless router 30 connects to multiple terminal devices 40 through a wireless transmission method, converts the broadband network signal into a wireless network signal, and then forwards the wireless network signal to the multiple terminal devices 40.
  • the wireless transmission method may be a transmission method such as Bluetooth or WiFi.
  • the wireless router 30 may support wireless connection functions such as Bluetooth or WiFi
  • the plurality of terminal devices 40 may be terminals that can support wireless connection functions such as Bluetooth or WiFi. For example, mobile phones, laptops, etc.
  • the wireless router 30 includes at least a router body 31, an antenna 32, a mobile base 33, and a controller 34.
  • the antenna 32 is provided on the router body 31 and is used for wireless communication with a plurality of terminal devices 40 and for sending wireless network signals.
  • the antenna 32 includes at least one omnidirectional antenna. In other embodiments, the antenna 32 may also include a directional antenna.
  • the mobile base 33 is connected to the router body 31 to drive the router body 31 to move. This application does not limit the structure of the mobile base 33.
  • the controller 34 is electrically connected to the mobile base 33 and the antenna 32 respectively.
  • the controller 34 is used to control the mobile base 33 to move, thereby driving the router body 31 to move.
  • the controller 34 can be provided in the router body 31.
  • the controller 34 can also be independent of the router body 31 and electrically connected to the mobile base 33 and the antenna 32 by wireless connection.
  • the wireless router 30 uses the mobile base 33 to drive the router body 31 to move, so that it can automatically adjust its spatial position during use.
  • the controller 34 is used to control the mobile base 33 to move along the preset path 50, and detect the signal strength information of the wireless network signals received by multiple terminal devices 40 during the movement of the wireless router 30, and Calculate the target position of the wireless router 30 according to the detected signal strength information, and control the mobile base 33 to move and stay at the target position, where a plurality of terminal devices 40 have the optimal Comprehensive communication quality.
  • the wireless router 30 passes at least from each position on the preset path 50 once.
  • the "comprehensive communication quality" referred to in this application evaluates the overall capabilities of the signal strength of the wireless network signal, the speed and stability of data transmission when multiple terminal devices 40 receive network communication.
  • the preset path 50 may include an initial position.
  • the controller 34 controls the mobile base 33 to move along the preset path 50, the controller 34 first controls the mobile base 33 to move to the initial position, and then controls the mobile base 33 Move along the preset path 50.
  • the controller 34 controls the mobile base 33 to move along the preset path 50 from the current position.
  • the optimal position that is, the target position.
  • a balance point needs to be determined so that the integrated communication quality of all terminal devices 40 connected to the wireless router 30 reaches the optimal level.
  • This balance point is The optimal location may be more than one, as long as the location can comprehensively take into account the communication quality of all accessed terminal devices 40.
  • the wireless router autonomous mobile system 200 further includes a guide rail 60.
  • the guide rail 60 is used to provide a preset path 50.
  • the wireless router 30 can be installed on the guide rail 60 and can be guided on the guide rail 60. Move down along the preset path 50.
  • the mobile base 33 may be installed on the guide rail 60, and the router body 31 is installed on the guide rail 60 through the mobile base 33.
  • the shape of the guide rail 60 may be an arc shape or a linear shape.
  • the guide rail 60 may be fixed to an attached object, such as a wall, ceiling, or floor.
  • the space of the wireless router 30 can be realized by installing the guide rail 60 above the conference room, that is, the ceiling, installing the wireless router 30 of the present application on the guide rail 60, and driving the router body 31 to slide on the guide rail 60 by moving the base 33 The position moves autonomously, and a balance point of network connection can be found for each terminal device 40 to ensure that each terminal device 40 has a better communication quality.
  • the wireless router 30 may further include a limit mechanism (not shown), the limit mechanism is used to restrict the mobile base 33 to move on the guide rail 60 .
  • the preset path 50 may also be a preset ground path.
  • the mobile base 33 can move back and forth along the preset path 50.
  • the wireless router 30 provided in the present application transmits wireless network signals during use and detects the signal strength information of the wireless network signals received by multiple terminal devices 40 to achieve the signal strength information received by the multiple terminal devices 40
  • the controller 34 when the controller 34 detects the signal strength information of the wireless network signal received by the multiple terminal devices 40 during the movement of the wireless router 30, it may specifically include:
  • the controller 34 controls the mobile base 33 to stay at a preset time when passing through a plurality of preset signal detection points on the preset path 50;
  • the signal strength information of the wireless network signal received by the multiple terminal devices 40 received by the multiple antenna devices 40 received by the antenna 32 is detected.
  • FIG. 3 is a schematic diagram of a relationship between a signal detection point and a moving path of a wireless router according to an embodiment of the present application.
  • q preset signal detection points M1 ⁇ Mq are provided on the preset path 50, wherein q preset signal detection points M1 ⁇ Mq may be evenly or unevenly distributed on the preset path 50 .
  • the controller 34 may determine the multiple preset signal detection points according to multiple preset coordinate values on the preset path 50. It can be understood that in the one embodiment, the wireless router 30 may further include a positioning unit 35 (as shown in FIG. 2). The positioning unit 35 is used to detect the position of the wireless router 30 during the movement of the wireless router 30 Information, the controller 34 controls the wireless router 30 to stay at each preset signal detection point during movement according to the preset coordinates of the plurality of preset signal detection points and the position information of the wireless router 30, respectively.
  • the controller 34 can control the mobile base 33 to move along the preset path 50 according to the preset moving speed, and control the mobile base 33 to stay for a second preset time after each first preset time, And determine the resting position of the mobile base 33 as the plurality of preset signal detection points.
  • N terminal devices in the wireless network system 100 are connected to the wireless router 30.
  • the antenna 32 receives the terminal device
  • the signal strength values of the wireless network signals received by the terminal devices 1 to N sent by 1 to N may be expressed as P1, P2, P3, P4, P5, P6, ..., PN.
  • controller 34 when the controller 34 calculates the target location of the wireless router 30 according to the detected signal strength information, it may specifically include:
  • a predetermined signal detection point corresponding to the communication quality with the maximum value is determined as the target position.
  • this application can ensure that the signal strength information detected at each preset signal detection point is stable, To ensure the accuracy of the calculated communication quality corresponding to each preset signal detection point.
  • the controller 34 when the controller 34 calculates the communication quality corresponding to each preset signal detection point based on the multiple signal strength information detected at each preset signal detection point, it may specifically include:
  • the communication quality corresponding to the corresponding preset signal detection point is calculated according to the average value and the variance.
  • Ave (P1 + P2 + P3 + P4 + P5 + P6 + ... + PN) / N.
  • Var ⁇ (P1-Ave) ⁇ 2 + (P2-Ave) ⁇ 2 + (P3-Ave) ⁇ 2 + ... + (PN-Ave) ⁇ 2 ⁇ / N.
  • the controller 34 when the controller 34 calculates the communication quality corresponding to the corresponding preset signal detection point according to the average value and the variance, it may specifically include:
  • the calculation formula of the communication quality may be:
  • Y represents communication quality
  • the first preset weight m and the second preset weight (1-m) can be set by the user according to specific conditions.
  • the value of the first preset weight m may be set to a smaller value, so that in the communication quality Y, the weight m of the average value is smaller , The weight of the variance (1-m) is larger.
  • the value of the first preset weight m may be set to a larger value so that the communication In the quality Y, the weight m of the average value is larger, and the weight (1-m) of the variance is smaller.
  • the controller 34 determines the preset signal detection point corresponding to the communication quality with the maximum value as the target position, it specifically includes:
  • the communication quality corresponding to each preset signal detection point can be calculated, where The maximum communication quality is the optimal comprehensive communication quality.
  • the wireless router 30 can find the best location for receiving the signal.
  • the controller 34 is further configured to detect whether at least one of the signal strength information sent by the multiple terminal devices 40 exceeds a preset threshold after the terminal device 30 stays at the target position Change, and when at least one of the signal strength information sent by the multiple terminal devices 40 changes beyond a preset threshold, the mobile base 33 is re-controlled to move along the preset path 50, and the new target position is re-determined, And control the mobile base 33 to move and stay at the new target position.
  • the controller 34 detects at a preset frequency whether at least one of the signal strengths of the multiple terminal devices 40 has a change that exceeds a preset threshold.
  • the signal strength information of a certain terminal device or some terminal devices 40 changes more than a preset threshold, which indicates that the certain terminal device or some terminal devices 40 have moved positions.
  • the wireless router 30 of the present application automatically adjusts the spatial position of the wireless router 30 by detecting changes in signal strength information sent by a plurality of terminal devices 40, which can ensure that the overall communication quality of the wireless router 30 and the terminal device 40 accessing the wireless router 30 is at Better state.
  • the controller 34 is further configured to detect that the antenna 32 receives after the terminal device 30 stays at the target position, or when the signal strength of each terminal device 40 does not exceed a preset threshold. Whether the amount of signal strength information sent by multiple terminal devices 40 changes, and when the amount of signal strength information sent by multiple terminal devices 40 changes, the mobile base 33 is re-controlled to move along the preset path 50 and re-determined The new target position, and the mobile base 33 is controlled to move and stay at the new target position.
  • the controller 34 detects at a preset frequency whether at least one of the signal strengths of the multiple terminal devices 40 has a change that exceeds a preset threshold.
  • the amount of signal strength information sent by multiple terminal devices 40 changes, indicating that in the existing wireless network connection system, there are newly added terminal devices 40 to access, or some of the connected terminal devices 40 are interrupted Communication connection with the wireless router 30.
  • the wireless router 30 of the present application automatically adjusts the spatial position of the wireless router 30 by detecting changes in the amount of signal strength information, which can ensure that the overall communication quality of the wireless router 30 and the terminal device 40 currently connected to the wireless router 30 is in a better state .
  • Various parameters used by the wireless router 30, such as the coordinate range of the preset path 50, the first preset weight and the second preset weight, the multiple preset coordinate values, the moving speed, Both the first preset time and the second preset time can be initialized and preset.
  • Various formulas used by the wireless router 30, such as an average formula, a variance formula, a communication quality calculation formula, etc., can be set in advance.
  • the wireless router 30 may complete the initialization and / or presetting by wirelessly connecting with an external terminal to exchange data.
  • the wireless router 30 may provide a setting interface, and initialize and / or preset the various parameters or calculation formulas according to information input by the user in the setting interface.
  • the wireless router 30 provided by this application can dynamically adjust its spatial position according to the change of signal strength information sent by multiple terminal devices 40 during use, so as to realize the function of automatically finding the optimal placement position, thereby enabling each The signal strength of the wireless network signal received by the terminal device 40 is in a balanced state to ensure that multiple terminal devices 40 have the best comprehensive communication quality, thereby improving the user experience.
  • FIG. 4 is a flowchart of a method for autonomous movement of a wireless router according to a first embodiment of the present application.
  • the method is used to implement autonomous movement control of the wireless router 30 described above.
  • the method for autonomously moving the wireless router according to the embodiment of the present application is not limited to the steps and sequence in the flowchart shown in FIG. 4. According to different requirements, the steps in the flowchart shown can be added, removed, or changed in order.
  • the wireless router autonomous mobility method includes the following steps.
  • Step 401 Send a wireless network signal and control the mobile base 33 to move along the preset path 50.
  • Step 402 Detect the signal strength information of the wireless network signals received by multiple terminal devices 40 during the movement of the wireless router 30.
  • step 402 may specifically include:
  • the mobile base 33 is controlled to stay for a preset time when passing through a plurality of preset signal detection points on the preset path 50;
  • the signal strength information of the wireless network signal received by the multiple terminal devices 40 received by the wireless router 30 and received by the multiple terminal devices 40 is detected respectively.
  • the plurality of preset signal detection points may be evenly or unevenly distributed on the preset path 50.
  • the plurality of preset signal detection points reference may be made to the description in the related part above, and no repeated description is given here.
  • Step 403 Calculate the target location of the wireless router 30 according to the detected signal strength information.
  • step 403 may specifically include:
  • a predetermined signal detection point corresponding to the communication quality with the maximum value is determined as the target position.
  • the autonomous movement method provided by the present application can ensure that the signal strength detected at each preset signal detection point is controlled by the mobile base 33 staying at the preset signal detection points that have passed for a preset time respectively The information is stable to ensure the accuracy of the calculated communication quality corresponding to each preset signal detection point.
  • the calculating the communication quality corresponding to each preset signal detection point according to the plurality of signal strength information detected at each preset signal detection point may specifically include:
  • the communication quality corresponding to the corresponding preset signal detection point is calculated according to the average value and the variance.
  • the calculating the communication quality corresponding to the corresponding preset signal detection point according to the average value and the variance may specifically include:
  • the determination of the preset signal detection point corresponding to the communication quality with the maximum value as the target position may specifically include:
  • the communication quality corresponding to each preset signal detection point can be calculated, where
  • the maximum communication quality is the optimal comprehensive communication quality.
  • the wireless router autonomous movement method provided by the present application can find the best position for receiving signals for the wireless router 30 by determining the preset signal detection point corresponding to the communication quality with the maximum value as the target position.
  • step 404 the mobile base 33 is controlled to move and stay at the target position.
  • the multiple terminal devices 40 have the best overall communication quality when the wireless router 30 is located at the target position.
  • the autonomous mobility method provided by the present application can implement the wireless terminal 30 by sending a wireless network signal and detecting the signal strength information of the wireless network signal received by multiple terminal devices 40 to achieve multiple terminal devices 40
  • the received signal strength information can autonomously adjust the spatial position of the wireless router 30, and can automatically find the optimal placement position, so that the signal strength of the wireless network signal received by each terminal device 40 is in a balanced state to ensure Multiple terminal devices 40 have the best comprehensive communication quality, so that the user experience can be improved under limited resources.
  • FIG. 5 is a flowchart of a method for autonomously moving a wireless router according to a second embodiment of the present application.
  • the method for autonomously moving a wireless router includes the following steps.
  • Step 501 Send a wireless network signal and control the mobile base 33 to move along a preset path 50.
  • Step 502 During the movement of the wireless router 30, it is detected that multiple terminal devices 40 receive signal strength information of the wireless network signal.
  • Step 503 Calculate the target location of the wireless router 30 according to the detected signal strength information.
  • step 504 the mobile base 33 is controlled to move and stay at the target location, where multiple terminal devices 40 have the best overall communication quality when the wireless router 30 is located at the target location.
  • steps 501-504 of this embodiment reference may be made to the related technical details of steps 401-404 of the embodiment shown in FIG. 4, which will not be repeated here.
  • step 505 it is detected whether at least one of the signal strength information sent by the multiple terminal devices 40 has a change that exceeds a preset threshold.
  • step 501 If at least one of the signal strength information sent by the multiple terminal devices 40 changes beyond the preset threshold, return to step 501 to re-control the mobile base 33 to move along the preset path 50 and re-determine the new target position , And control the mobile base 33 to move and stay at the new target position. If the signal strength information of each terminal device 40 has not changed beyond the preset threshold, step 506 is executed.
  • the signal strength information of a certain terminal device or some terminal devices 40 changes more than a preset threshold, which indicates that the certain terminal device or some terminal devices 40 have moved positions.
  • the autonomous mobility method provided by the present application automatically adjusts the spatial position of the wireless router 30 by detecting changes in signal strength information sent by multiple terminal devices 40, which can ensure the overall communication quality of the wireless router 30 and the terminal devices 40 accessing the wireless router 30 In a better state.
  • Step 506 Detect whether the amount of signal strength information sent by the multiple terminal devices 40 received by the wireless router 30 changes.
  • step 501 If the amount of signal strength information sent by the multiple terminal devices 40 changes, return to step 501, re-control the mobile base 33 to move along the preset path 50, and re-determine the new target position, and control the mobile base 33 to move and Stay in the new target position. If the amount of signal strength information sent by the multiple terminal devices 40 has not changed, return to step 505 to continue to detect whether the strength of each communication signal has changed beyond a preset threshold.
  • the amount of signal strength information sent by multiple terminal devices 40 changes, indicating that in the existing wireless network connection system, there are newly added terminal devices 40 to access, or some of the connected terminal devices 40 are interrupted Communication connection with the wireless router 30.
  • the autonomous mobility method provided by this application automatically adjusts the spatial position of the wireless router 30 by detecting changes in the amount of signal strength information, which can ensure that the overall communication quality of the wireless router 30 and the terminal device 40 currently connected to the wireless router 30 is in a better status.
  • step 505 and step 506 may be interchanged.
  • the wireless router autonomous movement method provided by the present application can dynamically adjust its spatial position according to the change of signal strength information sent by multiple terminal devices 40 during the use of the wireless router 30, so as to automatically find the optimal placement position
  • the function of each terminal device 40 can make the signal strength of the wireless network signal received by each terminal device 40 in a balanced state to ensure that multiple terminal devices 40 have the best comprehensive communication quality, thereby improving the user experience.

Abstract

L'invention concerne un routeur (30) sans fil ainsi qu'un système (200) et un procédé de mouvement autonome de celui-ci. Le routeur (30) sans fil comporte un corps (31) de routeur, une antenne (32), une base (33) de mouvement, et un moyen (34) de commande. L'antenne (32) est utilisée pour émettre un signal de réseau sans fil. La base (33) de mouvement est utilisée pour entraîner le corps (31) de routeur de telle manière qu'il se déplace. Le moyen (34) de commande est relié électriquement à la base (33) de mouvement et à l'antenne (32), et commande la base (33) de mouvement de telle manière qu'elle se déplace le long d'un chemin (50) préconfiguré. Pendant le mouvement du routeur (30) sans fil, des informations d'intensité de signal du signal de réseau sans fil reçues par de multiples dispositifs terminaux (40) sont mesurées, et une position visée du routeur (30) sans fil est calculée d'après les informations d'intensité de signal mesurées. La base (33) de mouvement est commandée de manière à se déplacer jusqu'à la position visée et à y rester. Les multiples dispositifs terminaux (40) présentent une qualité de communication globale optimale lorsque le routeur (30) sans fil est dans la position visée.
PCT/CN2018/116730 2018-11-21 2018-11-21 Routeur sans fil et système et procédé de mouvement autonome d'un routeur sans fil WO2020103039A1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
CN201880096017.8A CN112703757A (zh) 2018-11-21 2018-11-21 无线路由器及无线路由器自主移动系统和方法
PCT/CN2018/116730 WO2020103039A1 (fr) 2018-11-21 2018-11-21 Routeur sans fil et système et procédé de mouvement autonome d'un routeur sans fil

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2018/116730 WO2020103039A1 (fr) 2018-11-21 2018-11-21 Routeur sans fil et système et procédé de mouvement autonome d'un routeur sans fil

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WO2020103039A1 true WO2020103039A1 (fr) 2020-05-28

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PCT/CN2018/116730 WO2020103039A1 (fr) 2018-11-21 2018-11-21 Routeur sans fil et système et procédé de mouvement autonome d'un routeur sans fil

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US20140273877A1 (en) * 2013-03-15 2014-09-18 Sony Computer Entertainment Inc. Method and system for simplifying wifi setup for best performance
CN104853402A (zh) * 2014-02-19 2015-08-19 华为技术有限公司 无线接入服务方法和设备
CN104902491A (zh) * 2014-03-06 2015-09-09 精英电脑(苏州工业园区)有限公司 决定无线存取点位置方法、无线存取点及无线存取点组合
CN107580332A (zh) * 2017-08-02 2018-01-12 上海斐讯数据通信技术有限公司 一种移动式无线访问接入点及其控制方法

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CN105873122A (zh) * 2015-12-02 2016-08-17 乐视致新电子科技(天津)有限公司 无线路由器WiFi信号强度显示方法及装置、无线路由器

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Publication number Priority date Publication date Assignee Title
CN101057157A (zh) * 2004-06-30 2007-10-17 讯宝科技公司 可重新配置的无线接入点阵列
US20140273877A1 (en) * 2013-03-15 2014-09-18 Sony Computer Entertainment Inc. Method and system for simplifying wifi setup for best performance
CN104853402A (zh) * 2014-02-19 2015-08-19 华为技术有限公司 无线接入服务方法和设备
CN104902491A (zh) * 2014-03-06 2015-09-09 精英电脑(苏州工业园区)有限公司 决定无线存取点位置方法、无线存取点及无线存取点组合
CN107580332A (zh) * 2017-08-02 2018-01-12 上海斐讯数据通信技术有限公司 一种移动式无线访问接入点及其控制方法

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