WO2017008580A1 - Procédé et dispositif d'accès à réseau local pour station sans fil - Google Patents

Procédé et dispositif d'accès à réseau local pour station sans fil Download PDF

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Publication number
WO2017008580A1
WO2017008580A1 PCT/CN2016/083040 CN2016083040W WO2017008580A1 WO 2017008580 A1 WO2017008580 A1 WO 2017008580A1 CN 2016083040 W CN2016083040 W CN 2016083040W WO 2017008580 A1 WO2017008580 A1 WO 2017008580A1
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WIPO (PCT)
Prior art keywords
wireless stations
access
wireless
accessed
user state
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PCT/CN2016/083040
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English (en)
Chinese (zh)
Inventor
陈国强
马涛
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中兴通讯股份有限公司
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Publication of WO2017008580A1 publication Critical patent/WO2017008580A1/fr

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/02Access restriction performed under specific conditions
    • H04W48/06Access restriction performed under specific conditions based on traffic conditions
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/20Selecting an access point

Definitions

  • the present application relates to, but is not limited to, the field of communications, and in particular, to a method and apparatus for wireless stations accessing a wireless local area network.
  • an AP Wireless Access Point
  • a WiFi chip only provides a simple access technology, that is, a router or a WiFi chip has a maximum number of access wireless stations when the wireless station is accessed. When the number reaches the maximum number, other wireless stations that are not connected can no longer access.
  • each terminal connected to the wireless network such as a laptop, a PDA, and other user equipment that can be networked
  • the maximum number of currently accessed wireless stations is set for the router.
  • the wireless station connects to the AP according to the name of the AP (Service Set Identity, SSID), when the AP is in the maximum user or full user state, That is, when the maximum number of preset user accesses or the maximum number of APs supporting access users is reached, other wireless stations within the coverage of the AP may not be able to access the AP. However, not all wireless stations are always transmitting data to users accessing the AP, which wastes bandwidth resources and does not allow access to very important wireless stations or specific wireless stations.
  • SSID Service Set Identity
  • the present application provides a method and apparatus for a wireless station to access a wireless local area network to at least solve the problem that the AP cannot access the wireless station when the user is in a full user state or a maximum user state.
  • a method for a wireless station to access a wireless local area network includes: determining, when the first number of wireless stations send an access request to an access point AP in the same wireless local area network, Whether the number of wireless stations connected is preset to the full user status The number of the wireless stations to be accessed, wherein each of the access requests respectively carries a media access control MAC address of the wireless station that sends the access request; if the number of wireless stations currently accessed by the AP is Predetermining the number of wireless stations accessed in the full user state, determining whether the MAC address stored in the AP includes the MAC address of the first number of wireless stations; if the MAC address stored by the AP is included in the The MAC address of the second number of wireless stations in the first number of wireless stations, by increasing the number of wireless stations accessed in the full number of users and/or prohibiting the fourth number of wireless stations currently accessed by the associated AP Entering the AP, so that a third number of wireless stations in the second number of wireless
  • the third number of wireless stations are connected by increasing the number of wireless stations that are accessed in the full user state and prohibiting the fourth number of wireless stations currently accessed by the AP from accessing the AP. Entering the AP, the third number is the number of wireless stations that are added after increasing the number of wireless stations that are accessed in the full user state, and the wireless stations that are currently accessed by the AP that are prohibited from accessing the AP. The sum of the quantities;
  • the fourth quantity is the The third quantity.
  • the accessing the AP by adding the number of wireless stations accessed in the full user state and/or prohibiting the wireless station currently accessed by the AP to access the AP includes: if the wireless station in the full user state accesses The number is not the maximum number of wireless stations that the AP can access, and the number of wireless stations accessed by the number of full users is increased to enable some or all of the third number of wireless stations to access the station.
  • the fourth number of wireless stations that are currently accessed by the AP are prohibited from being accessed.
  • the AP such that some or all of the third number of wireless stations access the AP.
  • the step of increasing the number of the wireless stations that are accessed in the full user state, so that part or all of the third number of wireless stations access the AP includes: acquiring a maximum number of wireless stations that the AP can access; increasing the number of wireless stations accessed in the full user state, so that the third number of wireless stations access the AP, wherein the access is increased
  • the number of wireless stations accessed in the full user state after the number of wireless stations is less than or equal to the maximum number of wireless stations that the AP can access.
  • the step of prohibiting the fourth number of wireless stations currently accessed by the AP from accessing the AP, so that part or all of the third number of wireless stations access the AP includes: Obtaining a fourth number of wireless stations with the least amount of data traffic in the wireless station currently accessed by the AP; and prohibiting the fourth number of data traffic with the least amount of data traffic within the predetermined time in the wireless station currently accessed by the AP
  • the wireless station accesses the AP such that some or all of the third number of wireless stations access the AP.
  • the method further includes: storing one or more in the AP The MAC address of the wireless station.
  • the application further provides a computer readable storage medium storing computer executable instructions that are implemented when the computer executable instructions are executed.
  • an apparatus for wireless station accessing a wireless local area network comprising: a determining module configured to: when a first number of wireless stations send an access request to an access point AP in the same wireless local area network Determining whether the number of wireless stations currently accessed by the AP is a preset number of wireless stations that are accessed in a full user state, where each of the access requests carries the The media access control MAC address of the wireless station; the matching module is configured to determine the MAC address stored in the AP if the number of wireless stations currently accessed by the AP is a preset number of wireless stations accessed in the full user state.
  • the access module is configured to: if the MAC address stored by the AP includes a MAC address of a second number of wireless stations in the first number of wireless stations And by adding the number of wireless stations accessed in the full user state and/or prohibiting the fourth number of wireless stations currently accessed by the AP from accessing the AP to make its MAC address It includes a third number of the MAC address of the AP is stored in a second number of wireless station in a wireless access station to the AP;
  • the fourth quantity is the The third quantity.
  • the access module is configured to increase the number of wireless stations that are accessible if the full user state is not the maximum number of wireless stations that the AP can access.
  • the number of wireless stations accessed by the state such that some or all of the third number of wireless stations access the AP; or, is the number of wireless stations that are set to access if the full user state is
  • the maximum number of APs that can access the wireless station is obtained by prohibiting the fourth number of wireless stations currently accessed by the AP from accessing the AP, so that some or all of the third number of wireless stations are connected. Enter the AP.
  • the access module includes: a first acquiring unit, configured to acquire a maximum number of wireless stations that the AP can access; and a first access unit, configured to increase access in the full user state The number of wireless stations such that the third wireless station accesses the AP, wherein the number of wireless stations accessed in the full user state after increasing the number of access wireless stations is less than or equal to the AP The maximum number of wireless stations that can be accessed.
  • the second obtaining unit is configured to acquire a fourth number of wireless stations with the least amount of data traffic in the wireless station currently accessed by the AP, and the second access unit is configured to prohibit the current AP
  • a fourth number of wireless stations in the accessed wireless station that have the least amount of data traffic within a predetermined time period access the AP such that some or all of the third number of wireless stations access the AP.
  • the device further includes: a configuration module, configured to: before the determining module determines whether the number of wireless stations currently accessed by the AP is preset to be the number of wireless stations accessed in the full user state, The AP stores the MAC address of one or more wireless stations.
  • a configuration module configured to: before the determining module determines whether the number of wireless stations currently accessed by the AP is preset to be the number of wireless stations accessed in the full user state, The AP stores the MAC address of one or more wireless stations.
  • the AP when the AP is currently in the full user state, it is determined whether the MAC address of the wireless station that needs to be accessed is included in the MAC address stored in the AP, and is increased in the full user state.
  • the number of accessing wireless stations and/or prohibiting the fourth number of wireless stations currently accessed by the AP from accessing the AP, such that all of the MAC addresses are included in part or all of the MAC addresses stored by the AP The wireless station accesses the AP, that is, the wireless station that pre-stores its MAC address in the AP can access the AP when the user is in the full user state, and solves the problem that the access point AP is in the full user state or the maximum user state in the related art. The problem of not being able to access the wireless site improves the user experience.
  • FIG. 1 is a flow chart of a method for a wireless station to access a wireless local area network according to an embodiment of the present invention
  • FIG. 2 is a structural block diagram of an apparatus for a wireless station to access a wireless local area network according to an embodiment of the present invention
  • FIG. 3 is a block diagram 1 of an optional structure of an access module 26 of a device for accessing a wireless local area network by a wireless station according to an embodiment of the present invention
  • FIG. 4 is a block diagram 2 of an optional structure of an access module 26 of a device for accessing a wireless local area network by a wireless station according to an embodiment of the present invention
  • FIG. 5 is a block diagram showing an optional structure of an apparatus for a wireless station to access a wireless local area network according to an embodiment of the present invention
  • FIG. 6 is a flow chart of a method of intelligently controlling wireless station access in accordance with an alternative embodiment of the present application.
  • FIG. 1 is a flowchart of a method for a wireless station to access a wireless local area network according to an embodiment of the present invention. As shown in FIG. 1 , the process includes the following steps:
  • Step S102 When the first number of wireless stations send an access request to the access point AP in the same WLAN, determine whether the number of wireless stations currently accessed by the AP is a preset wireless station accessed in the full user state. The number, wherein each access request carries a media access control MAC address of the wireless station that sends the access request;
  • Step S104 If the number of wireless stations currently accessed by the AP is a preset number of wireless stations that are accessed in the full user state, determine whether the MAC address stored in the AP includes the MAC of the first number of wireless stations. address;
  • Step S106 If the MAC address stored by the AP includes the MAC address of the second number of wireless stations in the first number of wireless stations, by increasing the number of wireless stations accessed in the full user state and/or prohibiting And the fourth number of wireless stations currently accessed by the AP accesses the AP, such that the MAC address thereof includes a third number of wireless stations in the second number of wireless stations in the MAC address stored by the AP. Access to the AP;
  • the third number of wireless stations are connected by increasing the number of wireless stations that are accessed in the full user state and prohibiting the fourth number of wireless stations currently accessed by the AP from accessing the AP. Entering the AP, the third number is the number of wireless stations that are added after increasing the number of wireless stations that are accessed in the full user state, and the wireless stations that are currently accessed by the AP that are prohibited from accessing the AP. The sum of the quantities;
  • the fourth quantity is the The third quantity.
  • the MAC address of the wireless station that requests the access includes the MAC address stored in the AP, such as the MAC address stored by the AP. Included in the MAC address of the second number of wireless stations in the first number of wireless stations requesting access, by increasing the number of wireless stations accessed in the full user state and/or disabling the AP from currently accessing
  • the fourth number of wireless stations accesses the The AP accesses the AP by a third number of the wireless stations in the second number of the wireless stations whose MAC addresses are included in the MAC address stored by the AP, that is, their MAC addresses pre-stored for the AP.
  • the wireless station can also access the AP when the user is full, thereby solving the problem that the AP cannot access the wireless station in the full user state or the maximum user state in the related art, and the user experience is improved.
  • the number of wireless stations that access the full user state of the AP involved in this embodiment may be the maximum number of wireless stations that the AP can access, or the maximum number of wireless stations that are preset in the access wireless station.
  • the maximum number of the preset access wireless stations is less than or equal to the maximum number of wireless stations that the AP can access; for different types of the number of wireless stations accessed by the full user state, different access APs are used respectively.
  • the AP device WiFi chip supports up to 10 wireless stations, and the maximum number of wireless stations connected to the AP software is 5, and the number of wireless stations connected to the full user state is 5; if the AP is set to access The maximum number of wireless stations is 10, and the number of wireless stations that are connected to full user status and the maximum number of wireless stations that can be accessed are 10.
  • Manner 1 If the number of wireless stations that are accessed in the full user state is not the maximum number of wireless stations that the AP can access, increase the number of wireless stations that are accessed in the full user state to make part or All of the third number of wireless stations access the AP, wherein the increased number is greater than or equal to 1, but the increase cannot exceed the maximum number of wireless stations that the AP can access.
  • Manner 2 If the number of the wireless stations that are accessed in the full user state is the maximum number of wireless stations that the AP can access, the fourth number of wireless stations currently accessed by the AP are prohibited from accessing the The AP is such that some or all of the third number of wireless stations access the AP.
  • Step S11 Obtain a maximum number of wireless stations that the AP can access
  • Step S12 Increasing the number of wireless stations accessed in the full user state, so that the third wireless station accesses the AP, wherein the wireless station accessing the full user state after increasing the number of access wireless stations The number is less than or equal to the maximum number of APs that can access the wireless station.
  • the AP may be: if the AP is in the step S11 and the step S12.
  • the maximum number of wireless stations that can be accessed is 10, and the number of wireless stations that are preset to be accessed in the full user state is 5, and the number of wireless stations that can be added in the slow user state can be 1 to 5 Any integer.
  • the added number is 1, the number of wireless stations accessing in the full user state is 6, and at this time, a wireless station accessing the AP can be added.
  • the method for accessing the AP by prohibiting the fourth number of wireless stations currently accessed by the AP in the second mode to enable a part or all of the third number of wireless stations to access the AP may be implemented by the following steps:
  • Step S21 Acquire a fourth number of wireless stations in the wireless station currently accessed by the AP with the least data traffic within a predetermined time;
  • Step S22 The fourth number of wireless stations with the least data traffic within the predetermined time in the wireless station currently accessed by the AP is prohibited from accessing the AP, so that some or all of the third number of wireless stations access the AP.
  • the wireless station currently accessed by the AP may be obtained when the number of wireless stations accessed by the full user state is the maximum number of wireless stations that the AP can access.
  • the fourth number of wireless stations with the least amount of data traffic within a predetermined time period that is, the fourth number of currently accessed wireless stations require the least amount of data traffic at this time, and the fourth number of currently accessed wireless stations can be disabled.
  • the station accesses the AP such that its MAC address includes the fourth number of wireless stations that are pre-stored in the AP's MAC address to access the AP, making full use of the bandwidth resources.
  • the method in this embodiment further includes: storing one or more wireless stations in the AP. MAC address.
  • Embodiments of the present invention further provide a computer readable storage medium storing computer executable instructions that are implemented when the computer executable instructions are executed.
  • the method according to the above embodiment can be implemented by means of software plus a necessary general hardware platform, and of course, by hardware, but in many cases, the former is A better implementation.
  • the technical solution of the present application which is essential or contributes to the prior art, may be embodied in the form of a software product stored in a storage medium (such as ROM/RAM, magnetic
  • the disc, the optical disc includes a plurality of instructions for causing a terminal device (which may be a mobile phone, a computer, a server, or a network device, etc.) to perform the method described in the various embodiments of the present application.
  • a device for accessing a wireless local area network is also provided, and the device is configured to implement the foregoing embodiments and optional implementations, and details are not described herein.
  • the term "module” may implement a combination of software and/or hardware of a predetermined function.
  • the apparatus described in the following embodiments is preferably implemented in software, hardware, or a combination of software and hardware, is also possible and contemplated.
  • the apparatus includes: a determining module 22 configured to be in a same number of wireless stations to the same wireless local area network.
  • the access point AP sends an access request, it determines whether the number of the wireless stations currently accessed by the AP is the number of the preset wireless users in the full user state, where each access request carries the connection The media access control MAC address of the requesting wireless station; the matching module 24 is coupled to the determining module 22, and is configured to set the wireless station to be accessed in the full user state if the number of wireless stations currently accessed by the AP is preset.
  • the number of the MAC address stored in the AP includes whether the MAC address of the first number of wireless stations is included; the access module 26 is coupled to the matching module 24, and is configured to: if the MAC address stored by the AP is included in the The MAC address of the second number of wireless stations in the first number of wireless stations, by increasing the number of wireless stations accessed in the full user state and/or disabling the current connection of the AP Entering a fourth number of wireless stations to access the AP, such that a MAC address thereof includes a third number of wireless stations in the second number of wireless stations in the AP stored in the AP to access the AP;
  • the third number of wireless stations are connected by increasing the number of wireless stations that are accessed in the full user state and prohibiting the fourth number of wireless stations currently accessed by the AP from accessing the AP. Entering the AP, the third number is the number of wireless stations that are added after increasing the number of wireless stations that are accessed in the full user state, and the wireless stations that are currently accessed by the AP that are prohibited from accessing the AP. The sum of the quantities;
  • the fourth quantity is the The third quantity.
  • the access module 26 is configured to increase the number of wireless stations accessed in the full user state such that some or all of the third number of wireless stations access the AP;
  • the number of accessing wireless stations is the maximum number of wireless stations that the AP can access.
  • the access module 26 is configured to access the AP by prohibiting the fourth number of wireless stations currently accessed by the AP, so that the part is Or all of the third number of wireless stations access the AP.
  • FIG. 3 is a block diagram of an optional structure of an access module 26 of a device for accessing a wireless local area network of a wireless station according to an embodiment of the present invention.
  • the access module 26 includes: a first acquiring unit 32, configured to Obtaining a maximum number of wireless stations that the AP can access; the first access unit 34 is coupled to the first obtaining unit 32, and is configured to increase the number of wireless stations accessed in the full user state, so that the third wireless station is connected.
  • the AP is entered, wherein the number of wireless stations accessed in the full user state after increasing the number of access wireless stations is less than or equal to the maximum number of wireless stations that the AP can access.
  • the access module 26 includes: a second acquiring unit 42 configured to Obtaining a fourth number of wireless stations that have the least amount of data traffic in the wireless station currently accessed by the AP, and the second access unit 44 is coupled to the second acquiring unit 42 and configured to disable the wireless access currently accessed by the AP.
  • a fourth number of wireless stations in the station that have the least amount of data traffic within a predetermined time period access the AP such that some or all of the third number of wireless stations access the AP.
  • the determining module determines whether the number of wireless stations currently accessed by the AP is preset.
  • the device further includes: a configuration module 52 coupled to the determining module 22 and configured to store the MAC addresses of the one or more wireless stations in the AP.
  • the present invention provides an apparatus for intelligently controlling access to a wireless station, which can determine the full user state and the maximum user state by itself, and automatically control access to the wireless station to solve the related problem in the related art.
  • a software or device is installed on the AP side to store the preset letter.
  • the preset information is the MAC address of the wireless station, and obtains the MAC address of the wireless station by using the access request sent by the wireless station, and determines whether the MAC address stored in the AP includes the MAC address of the first number of wireless stations.
  • the AP determines whether it is in a full user state or a maximum user state: if the user state is full The number of wireless stations is not the number of wireless stations that are accessed in the maximum user state, the administrator user rights are obtained, and the number of APs accessing the wireless stations is modified so that the MAC addresses are included in the MAC addresses stored in the APs. The third number of wireless stations in the second number of wireless stations access the AP; if the current state is the maximum user state, the AP will prohibit the third number of wireless stations currently accessed by the AP from accessing the AP.
  • a third number of wireless stations in the second number of wireless stations whose MAC addresses are included in the MAC address stored by the AP access the AP, prohibiting the third number
  • the third number of users with the least data traffic is prohibited from accessing the AP, so that the MAC address is included in the MAC stored by the AP.
  • a third number of wireless stations of the second number of wireless stations in the address access the AP.
  • the device of the optional embodiment includes: a VIP wireless station management module, an information packet capture module, an information matching module, a full user status and a maximum user status distinguishing module, a wireless station forbidden access module, and an administrator permission control module.
  • a VIP wireless station management module includes: a VIP wireless station management module, an information packet capture module, an information matching module, a full user status and a maximum user status distinguishing module, a wireless station forbidden access module, and an administrator permission control module.
  • the VIP wireless station management module is configured to store the wireless station's MAC address (for example, 0C-12-B5-AC-ED-A2) in the VIP wireless station management list, and the wireless station can be set to the VIP.
  • a wireless station, or a wireless station whose MAC address is not in the wireless station management list, is a normal wireless station. Only the VIP wireless station can access the AP in the full user state or the maximum user state, and the normal access procedure is adopted for the ordinary wireless station, that is, the ordinary wireless station cannot access in the full user state or the maximum user state.
  • the information matching module is configured to receive the MAC address of the wireless station carried in the request message of the wireless station, and determine whether the MAC address reported to the AP by the wireless station that initiated the access request includes the MAC address stored in the VIP wireless station management module. If the MAC address of the wireless station requesting access is included in the preset MAC address, the full user state and the maximum user status area are run. The sub-determination module terminates the process if the MAC address portion of the wireless station requesting access is included in the preset MAC address.
  • the full user status and maximum user status distinguishing module is configured to determine whether the AP status is a full user status or a maximum user status.
  • the judging module compares the number of currently connected wireless stations with the maximum number of set wireless stations. If the number of wireless stations that have been accessed is less than the maximum number of wireless stations that are set, the full user status is not reached. If the number of wireless stations that have been accessed is the maximum number of wireless stations set, the full user state is reached.
  • the maximum number of wireless stations that the WiFi chip of the AP device can access is 10, and the maximum number of APs that the AP software sets to access the wireless station is 5, and the number of wireless stations in the full user state is 5, and the maximum user state is The number of wireless stations is 10. If the AP software sets the maximum number of APs to access the wireless station to be 10, the number of wireless stations in the full user state and the number of wireless stations in the maximum user state are both 10.
  • the wireless station determines whether the AP is currently in the full user state.
  • the maximum number of access wireless stations is modified by the WiFi driver API module to ensure that the wireless station can connect. After entering the AP, the wireless station accesses the administrator and the process ends.
  • the foregoing optional embodiment first determines whether the MAC address stored by the AP includes the MAC address of the wireless station, and if the MAC address of the wireless station is included, determines whether the AP is in a full user state, that is, only its MAC address. The wireless station that stores the MAC address stored in the AP will proceed to the next step. Of course, it can also be determined that the AP is currently in the full user state, and then determine whether the MAC address of the wireless station includes the MAC address stored in the AP. Both modes are achievable in this alternative embodiment, and the first case is mainly described in the alternative embodiment.
  • the WiFi driver API module is configured to modify the maximum number of wireless stations accessing the AP, that is, the number of wireless stations that can be accessed by any modification.
  • the MAC address of the wireless station is included in the pre-stored MAC address. If it is determined that the AP is currently in the maximum user state, that is, the number of currently accessed wireless stations has reached the maximum wireless station that the WiFi chip can access. Quantity, at this time AP passes through the wireless site The reported MAC address is matched to the preset MAC address in the VIP user management module. At this time, the AP will prohibit some or all of the currently accessed wireless stations from accessing the AP, and the wireless station accesses and obtains the administrator authority. The process ends.
  • the AP obtains the MAC address in the access request of the wireless station, and the MAC address in the access request includes the MAC address stored in the AP, and the AP prohibits the data.
  • the wireless station with the smallest traffic accesses the AP, so that the wireless station whose MAC address is included in the MAC address stored by the AP accesses the AP, and the number of wireless stations accessed by the AP does not change.
  • the access rights of the AP are obtained.
  • the system has its own permission system in the background of the embedded AP module.
  • the highest authority of the system can be obtained.
  • FIG. 6 is a flowchart of a method for intelligently controlling wireless station access according to an optional embodiment of the present application. As shown in FIG. 6, the steps of the method include:
  • Step S601 The wireless station that presets the module preset MAC address in the AP sends an access request.
  • Step S602 The information matching module determines whether the wireless station that initiates the access request is a wireless station that has a preset MAC address, and if the MAC address of the wireless station that requests the access is not included in the preset MAC address, the process ends; if the request is The MAC address of the accessed wireless station is included in the preset MAC address, and then proceeds to step S603.
  • Step S603 The full user state and maximum user state distinguishing module determines whether the current state of the AP is a full user state. If it is determined that the AP is not in the full user state, the process ends, and the normal process of accessing the wireless station is performed; if it is determined that the AP is currently in the full user state, then the process proceeds to S604.
  • Step S604 The full user state and the maximum user state distinguishing module determines whether the number of wireless stations currently accessed by the AP is the number of wireless stations accessed in the maximum user state. If it is determined that the number of wireless stations currently accessed by the AP is not the number of wireless stations accessed in the maximum user state, proceed to step S606; if it is determined that the number of wireless stations currently accessed by the AP is wirelessly accessed in the maximum user state The number of sites proceeds to step S605.
  • Step S605 The AP prohibits some or all of the currently accessed wireless stations from accessing the AP according to the rules, and then the same number of wireless stations that are prohibited from accessing, and the wireless station that sends the access request and its MAC address is included in the preset MAC address.
  • the wireless station of the address accesses the AP, and the number of AP connected users remains unchanged.
  • Step S606 The AP modifies the maximum number of access wireless stations through the WiFi driving API module, so as to increase the number of access wireless stations, and let the wireless station access the AP, and the number of wireless stations accessed by the AP increases accordingly.
  • Step S607 After the wireless station accesses the AP, the administrator authority is obtained, and the process ends.
  • the AP obtains the MAC address of the wireless station by using the access request sent by the wireless station, and determines whether the wireless station that initiates the request establishment is a wireless station that has a preset MAC address, and if the wireless station that initiates the request is initiated, For a wireless station with a preset MAC address, the AP determines whether it is in a full user state or a maximum user state: if the number of wireless stations accessed in the full user state is not the number of wireless stations accessed in the maximum user state, then the acquire The administrator user right, modifying the number of accessing the wireless stations by the AP, so that the MAC address thereof is included in the third number of wireless station access stations in the second number of wireless stations in the MAC address stored by the AP If the current state is the maximum user state, the AP will prohibit the third number of wireless stations currently accessed by the AP from accessing the AP, so that the MAC address is included in the MAC address stored by the AP.
  • the third number of wireless stations in the second number of wireless stations access the AP, and the third number of wireless stations are prohibited from accessing the AP, according to 10 minutes.
  • the data traffic of each wireless station is prohibited, and the third number of users whose data traffic is the smallest is prohibited from accessing the AP, so that the MAC address thereof is included in the third of the second number of wireless stations in the MAC address stored by the AP.
  • a number of wireless stations access the AP.
  • each of the above modules may be implemented by software or hardware.
  • the foregoing may be implemented by, but not limited to, the foregoing modules are all located in the same processor; or, the modules are located in multiple In the processor.
  • Embodiments of the present invention also provide a storage medium.
  • the foregoing storage medium may be configured to store program code for performing the following steps:
  • Step S1 When the first wireless station sends an access request to the access point AP in the WLAN, determine whether the number of users currently accessed by the AP is a preset number of wireless stations that are in the full user state.
  • Step S2 If the number of users currently accessed by the AP is the preset number of accessing the wireless stations in the full user state, determine whether the MAC address of the wireless station that sends the access request includes the MAC address stored in the AP;
  • Step S3 If the MAC address of the wireless station that sends the access request includes the MAC address stored in the AP, increase the number of wireless stations that are accessed in the full user state and/or prohibit the current access of the AP.
  • Four number of wireless stations access the AP such that a MAC address thereof includes a third number of wireless stations in the second number of wireless stations in the MAC address stored by the AP.
  • the specific examples in this embodiment may refer to the examples described in the foregoing embodiments and the optional embodiments, and details are not described herein again.
  • each module/unit in the above embodiment may be implemented in the form of hardware, for example, by implementing an integrated circuit to implement its corresponding function, or may be implemented in the form of a software function module, for example, executing a program stored in the memory by a processor. / instruction to achieve its corresponding function.
  • Embodiments of the invention are not limited to any specific form of combination of hardware and software.
  • modules or steps of the present application can be implemented by a general computing device, which can be concentrated on a single computing device or distributed in a network composed of multiple computing devices. Alternatively, they may be implemented by program code executable by the computing device such that they may be stored in the storage device by the computing device and, in some cases, may be different from the order herein.
  • the steps shown or described are performed, or they are separately fabricated into individual integrated circuit modules, or a plurality of modules or steps thereof are fabricated as a single integrated circuit module.
  • the application is not limited to any particular combination of hardware and software.
  • the AP when the AP is currently in the full user state, it is determined whether the MAC address of the wireless station that needs to be accessed includes the MAC address stored in the AP, and by increasing the number of wireless stations accessed in the full user state and/or Or prohibiting the fourth number of wireless stations currently accessed by the AP from accessing the AP, and the wireless station whose MAC address is included in some or all of the MAC addresses stored in the AP accesses the AP, that is, For a wireless station that pre-stores its MAC address in the AP, the AP can also access the AP in the full user state, which solves the problem that the access point AP cannot access the wireless station when the user is in the full user state or the maximum user state in the related art. Improve the user experience.

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  • Engineering & Computer Science (AREA)
  • Computer Security & Cryptography (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Mobile Radio Communication Systems (AREA)
  • Small-Scale Networks (AREA)

Abstract

La présente invention concerne un procédé et un dispositif permettant à une station sans fil d'accéder à un réseau local sans fil. Le procédé consiste : à déterminer, lorsqu'un premier nombre de stations sans fil envoie une requête d'accès à un point d'accès (AP) dans le même réseau local sans fil, si le nombre de stations sans fil en cours d'accès par le point d'accès (AP) est ou n'est pas un nombre préétabli de stations sans fil accessibles dans un état complet d'utilisateurs, chaque requête d'accès portant une adresse de commande d'accès au support (MAC) d'une station sans fil qui envoie la requête d'accès ; à déterminer si des adresses MAC mémorisées au niveau du point d'accès (AP) comprennent ou non des adresses MAC du premier nombre de stations sans fil ; à augmenter le nombre de stations sans fil accessibles dans l'état complet d'utilisateurs et/ou à empêcher un quatrième nombre de stations sans fil en cours d'accès par le point d'accès d'accéder au point d'accès, de sorte qu'un troisième nombre de stations sans fil, dont les adresses MAC sont toutes comprises dans les adresses MAC mémorisées au niveau de l'AP, dans un deuxième nombre de stations sans fil, accède au point d'accès AP. La solution résout le problème selon lequel un point d'accès (AP) ne peut pas accéder à une station sans fil dans un état complet d'utilisateurs ou dans un état de nombre maximal d'utilisateurs.
PCT/CN2016/083040 2015-07-15 2016-05-23 Procédé et dispositif d'accès à réseau local pour station sans fil WO2017008580A1 (fr)

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