WO2017181800A1 - Système adaptatif de pousser de page d'authentification de portail basé sur un système d'exploitation, et procédé associé - Google Patents

Système adaptatif de pousser de page d'authentification de portail basé sur un système d'exploitation, et procédé associé Download PDF

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Publication number
WO2017181800A1
WO2017181800A1 PCT/CN2017/077407 CN2017077407W WO2017181800A1 WO 2017181800 A1 WO2017181800 A1 WO 2017181800A1 CN 2017077407 W CN2017077407 W CN 2017077407W WO 2017181800 A1 WO2017181800 A1 WO 2017181800A1
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WIPO (PCT)
Prior art keywords
module
portal authentication
wireless terminal
access point
packet
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PCT/CN2017/077407
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English (en)
Chinese (zh)
Inventor
王斌
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上海斐讯数据通信技术有限公司
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Publication of WO2017181800A1 publication Critical patent/WO2017181800A1/fr

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L9/00Cryptographic mechanisms or cryptographic arrangements for secret or secure communications; Network security protocols
    • H04L9/40Network security protocols
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W12/00Security arrangements; Authentication; Protecting privacy or anonymity
    • H04W12/06Authentication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/01Protocols
    • H04L67/02Protocols based on web technology, e.g. hypertext transfer protocol [HTTP]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/50Network services
    • H04L67/55Push-based network services

Definitions

  • the present invention relates to the field of communications technologies, and in particular, to a portal authentication page adaptation system and method thereof.
  • Portal authentication is an authentication method for Internet access. It is usually Web (web) authentication.
  • the Portal authentication web page is usually called a portal.
  • a portal When a user connects to a network that requires Portal authentication but is not authenticated, the terminal is forced to log in to a specific portal site to access the services contained therein free of charge; but when the user needs to use other information on the Internet, it must be on the portal.
  • Internet resources can only be used after the certification has passed.
  • Portal authentication is widely used because it has the advantages of client-free and forced advertisement.
  • the terminal obtains an IP (Internet Protocol) address through DHCP (Dynamic Host Configuration Protocol), and then initiates HTTP (Hyper Text Transfer Protocol) containing user information to any URL.
  • IP Internet Protocol
  • DHCP Dynamic Host Configuration Protocol
  • HTTP Hyper Text Transfer Protocol
  • the transport protocol requests the packet to authenticate to the Portal server.
  • the Portal server authenticates the user successfully, the same Portal authentication interface is pushed to all the terminals.
  • the browser sends an HTTP request message with the User Agent field
  • the User Agent field is only relevant to the browser type and can only distinguish between different browsers, but not different operating systems.
  • the present invention provides an operating system-based portal authentication page adaptation system and method thereof, which are capable of pushing different portal authentication pages according to different operating systems in the wireless terminal.
  • An operating system-based portal authentication page adaptive system comprising: a wireless terminal with a built-in operating system, a wireless access point, and a portal authentication server, wherein
  • the wireless access point is wirelessly connected to the wireless terminal, and the wireless access point intercepts a first Hypertext Transfer Protocol (HTTP) request message sent by the wireless terminal, and is based on The first HTTP request message forges a temporary redirect message and feeds back to the wireless terminal;
  • HTTP Hypertext Transfer Protocol
  • the temporary redirect message specifically includes a second uniform resource locator of the portal authentication server (Uniform Resource Locator) (hereinafter referred to as URL), the second URL includes a type parameter of a system type to which the operating system belongs in the wireless terminal;
  • URL Uniform Resource Locator
  • the portal authentication server is in communication with the wireless access point, and the portal authentication server receives, by the wireless access point, a second hypertext transmission including the second uniform resource locator sent by the wireless terminal.
  • the protocol requests the message, and then automatically pushes the corresponding portal authentication page to the wireless terminal.
  • the second URL mentioned here is a location that the wireless terminal needs to jump to perform portal authentication, so that when the authentication server receives the second HTTP request message, the second URL can be extracted therefrom, thereby obtaining The type of the system to which the operating system belongs in the wireless terminal is included, and finally the authentication server pushes the corresponding portal authentication page based on the system type.
  • the operation is simple and convenient, and the wireless terminal of different operating systems can jump to different portal authentication pages, improve the user experience, expand the application of the portal authentication system, and effectively solve the same push for all wireless terminals in the existing portal authentication system. The problem with the portal authentication page.
  • the wireless access point includes: a first control module, a packet interception module, a first packet generation module, a first storage module, and a message sending module, where
  • the first storage module is connected to the first control module, and the first storage module prestores a first uniform resource locator of the portal authentication server and a type parameter of a system type to which the wireless terminal belongs;
  • the packet intercepting module is connected to the first control module, and the packet intercepting module intercepts the first hypertext transfer protocol request message sent by the wireless terminal under the control of the first control module;
  • the first packet generating module is respectively connected to the packet intercepting module, the first storage module, and the first control module, and the first packet generating module is controlled by the first control module.
  • a first uniform resource locator of the portal authentication server and a type parameter of the system type to which the wireless terminal belongs to generate a second uniform resource locator, and generate a temporary redirect message based on the second uniform resource locator ;
  • the packet sending module is configured to connect the first packet generating module to the first control module, where the packet sending module is configured to send the temporary redirecting packet.
  • the wireless access point intercepts the first HTTP request message sent by the wireless terminal, and adds the system type to which the wireless terminal belongs to the first URL of the authentication server to obtain the second URL and feeds back to the wireless terminal.
  • the following wireless terminal adds the second URL to the second HTTP request message, so that the authentication server receives the second URL and obtains the system type to which the operating system belongs in the wireless terminal.
  • the authentication server includes: a second control module, a second storage module, a message receiving module, and a portal authentication page feedback module, where
  • the second storage module is connected to the second control module, and the second storage module prestores an association relationship between different operating system types and a corresponding portal authentication page;
  • the message receiving module is connected to the second control module, and the message receiving module receives the second HTTP request message sent by the wireless terminal under the control of the second control module;
  • the portal authentication page feedback module is respectively connected to the packet receiving module, the second storage module, and the second control module, and the portal authentication page feedback module is controlled by the second control module, based on the The second URL and the association relationship between the different operating system types pre-stored in the second storage module and the corresponding portal authentication page are fed back to the corresponding portal authentication page.
  • the wireless terminal includes: a monitoring module, a message transceiver module, a second message generation module, and a third control module, where
  • the monitoring module is connected to the third control module, and the monitoring module monitors whether the wireless terminal establishes a connection with the wireless access point under the control of the third control module;
  • the packet sending and receiving module is respectively connected to the monitoring module and the third control module, and the packet sending and receiving module sends an Internet address request message and receives the wireless under the control of the third control module. Temporary redirect message fed back by the access point;
  • the second packet generating module is respectively configured with the monitoring module, the packet sending and receiving module, and the third control The module is connected, and the second packet generating module generates a first HTTP request message based on the monitoring result of the monitoring module, and generates a second HTTP request message based on the temporary redirect message received by the packet sending and receiving module. Text.
  • the first storage module further pre-stores an association relationship between different operating systems and sub-option sorting in a preset option field in the Internet address request message.
  • the wireless access point further includes: an information extraction module and a system type determination module, where
  • the information extraction module is respectively connected to the packet intercepting module and the first control module, and the information extracting module extracts the preset option field included in the Internet address request packet intercepted by the packet intercepting module.
  • the system type determining module is respectively connected to the information extracting module, the first storage module, and the first control module, and the system type determining module is based on the sub-options included in the preset option field extracted by the information extracting module.
  • the sort determines the type of system to which the wireless terminal belongs and stores it in the first storage module.
  • the wireless terminal monitors whether it establishes an intranet connection with the wireless access point at all times, and only sends an Internet address request after detecting that the connection has been established. After that, the wireless access point intercepts the Internet address request and analyzes the order of the sub-options included in the preset option field included therein, thereby determining the system type to which the operating system belongs in the wireless terminal. It should be noted that the arrangement of the sub-options included in the preset option field is different based on different operating systems, and the order of the different operating systems is pre-stored in the wireless access point, so that the subsequent steps can be accurate. Push the corresponding portal authentication page to the wireless terminal. The whole process is simple and precise, and the operability is strong.
  • the invention also provides an operating system-based portal authentication page adaptation method, comprising:
  • the S1 wireless terminal sends the first HTTP request message
  • the S2 wireless access point intercepts the first HTTP request message, and generates a temporary redirect message based on the first HTTP request message falsification;
  • the S3 wireless access point feeds back the generated temporary redirection packet to the wireless terminal.
  • the S4 wireless terminal generates a second HTTP request message based on the received temporary redirection message
  • the S5 portal authentication server receives the second HTTP request message, and automatically pushes a corresponding portal authentication page to the wireless terminal based on the second hypertext transfer protocol request message request.
  • the second URL mentioned here is a location that the wireless terminal needs to jump to perform portal authentication, so that when the authentication server receives the second HTTP request message, the second URL can be extracted therefrom, thereby obtaining The type of the system to which the operating system belongs in the wireless terminal is included, and finally the authentication server pushes the corresponding portal authentication page based on the system type.
  • the operation is simple and convenient, and the wireless terminal of different operating systems can jump to different portal authentication pages, improve the user experience, expand the application of the portal authentication system, and effectively solve the same push for all wireless terminals in the existing portal authentication system. The problem with the portal authentication page.
  • the temporary redirect message specifically includes a second URL of the portal authentication server, where the second URL includes a type parameter of a system type to which the operating system belongs in the wireless terminal.
  • step S2 the method specifically includes:
  • the S21 wireless access point intercepts the first HTTP request message
  • the S22 wireless access point generates a second URL based on the first URL of the pre-stored portal authentication server and the type parameter of the system type to which the wireless terminal belongs, and generates a temporary redirect message based on the second URL;
  • step S3 specifically:
  • the S31 wireless access point generates a second URL based on a first URL of the built-in portal authentication server and a type parameter of the system type to which the wireless terminal belongs;
  • the S32 wireless access point generates a temporary redirect message based on the second URL
  • step S5 specifically:
  • the S51 portal authentication server receives the second HTTP
  • the S52 portal authentication server extracts, at the second URL in the second HTTP, a type parameter of a system type to which the wireless terminal belongs;
  • the S53 portal authentication server pushes the corresponding portal authentication page according to the association relationship between the pre-stored different operating system types and the corresponding portal authentication page.
  • step S1 the following steps are further included:
  • the S11 wireless terminal monitors whether it establishes a connection with the wireless access point
  • the S13 wireless access point intercepts the Internet address request message, and extracts a sequence of sub-options included in the preset option field included therein;
  • the S14 wireless access point determines the system type to which the wireless terminal belongs based on the sorting of the sub-options included in the extracted preset option field and stores the system type.
  • the wireless terminal monitors whether it establishes an intranet connection with the wireless access point at all times, and only sends an Internet address request after detecting that the connection has been established. After that, the wireless access point intercepts the Internet address request and analyzes the order of the sub-options included in the preset option field included therein, thereby determining the system type to which the operating system belongs in the wireless terminal. It should be noted that the arrangement of the sub-options included in the preset option field is different based on different operating systems, and the order of the different operating systems is pre-stored in the wireless access point, so that the subsequent steps can be accurate. Push the corresponding portal authentication page to the wireless terminal. The whole process is simple and precise, and the operability is strong.
  • FIG. 1 is a schematic structural diagram of an operating system-based portal authentication page adaptive system according to the present invention
  • FIG. 2 is a schematic structural diagram of an implementation manner of a wireless access point according to the present invention.
  • FIG. 3 is a schematic structural diagram of an authentication server in the present invention.
  • FIG. 4 is a schematic structural diagram of a wireless terminal according to the present invention.
  • FIG. 5 is a schematic structural diagram of another implementation manner of a wireless access point according to the present invention.
  • FIG. 6 is a schematic flowchart of an operating system-based portal authentication page adaptation method according to the present invention.
  • FIG. 7 is a schematic diagram of a process for determining, by a wireless access point, a type of an operating system in a wireless terminal according to the present invention.
  • 100-Portal Authentication Page Adaptive System 110-Wireless Terminal, 120-Wireless Access Point, 130-gate User authentication server, 111-monitoring module, 112-message transceiver module, 113-second packet generation module, 114-third control module, 121-first control module, 122-message interception module, 123-first Message generation module, 124-first storage module, 125-message sending module, 126-information extraction module, 127-system type determination module, 131-second control module, 132-second storage module, 133-message Receive module, 134-portal authentication page feedback module.
  • FIG. 1 is a schematic structural diagram of an operating system-based portal authentication page adaptation system 100 according to the present invention.
  • the portal authentication page adaptation system 100 includes: a wireless terminal with an internal operating system. 110.
  • the wireless access point 120 and the portal authentication server 130 wherein the wireless access point 120 is wirelessly connected to the wireless terminal 110, and the portal authentication server 130 is communicably connected to the wireless access point 120.
  • the wireless terminal 110 first sends a first HTTP request message based on the TCP (Transmission Control Protocol) 80 port; after the wireless access point 120 intercepts the first HTTP request message, based on the first HTTP
  • the request message forges a temporary redirect message (302 redirect message) and feeds it back to the wireless terminal 110.
  • TCP Transmission Control Protocol
  • the wireless terminal 110 After receiving the temporary redirect message, the wireless terminal 110 generates a second HTTP request message based on the temporary redirect message and sends it to the authentication server. After receiving the second HTTP request message, the portal authentication server 130 automatically pushes the corresponding portal authentication page to the wireless terminal 110 according to the information contained in the second HTTP request message.
  • the wireless terminal 110 may be a smart phone, a tablet, or the like.
  • the second URL of the portal authentication server 130 is specifically included in the temporary redirect message, and the type parameter of the system type to which the operating system belongs in the wireless terminal 110 is included in the second URL.
  • the wireless terminal 110 After receiving the temporary redirect message, the wireless terminal 110 obtains the second URL included therein, and then regenerates the second HTTP request message based on the second URL. In this way, the authentication server can obtain the second HTTP request message after receiving the second HTTP request message.
  • the included second URL further obtains a type parameter of the system type to which the operating system belongs in the wireless terminal 110.
  • the authentication server automatically pushes the portal authentication page corresponding to the Android system; if the operating system in the wireless terminal 110 is an IOS system, the authentication server automatically pushes the corresponding Portal authentication page, and so on.
  • the wireless access point 120 includes: a first control module 121, a packet intercepting module 122, a first packet generating module 123, a first storage module 124, and a packet.
  • the sending module 125 wherein the first control module 121 is connected to the packet intercepting module 122, the first packet generating module 123, the first storage module 124, and the message sending module 125, respectively, for controlling the working of the wireless access point 120.
  • the first packet generating module 123 is connected to the packet intercepting module 122 and the first storage module 124
  • the packet sending module 125 is connected to the first packet generating module 123.
  • the message intercepting module 122 intercepts the first HTTP request message sent by the wireless terminal 110 under the control of the first control module 121, and then sends it to the first message generating module 123.
  • the first message generating module 123 is based on the first URL of the portal authentication server 130 stored in the first storage module 124 and the wireless terminal 110 under the control of the first control module 121.
  • the type parameter of the system type generates a second URL (putting the system type parameter of the wireless terminal 110 into the first URL to obtain the second URL), and then generating a temporary redirect message based on the second URL, and sending the message through the message Module 125 feeds it back to wireless terminal 110.
  • the wireless terminal 110 regenerates the second HTTP request message based on the second URL it includes.
  • the authentication server includes: a second control module 131, a second storage module 132, a message receiving module 133, and a portal authentication page feedback module 134, wherein the second control module 131 respectively
  • the second storage module 132, the message receiving module 133, and the portal authentication page feedback module 134 are connected to control the authentication server to work.
  • the portal authentication page feedback module 134 is connected to the message receiving module 133 and the second storage module 132, respectively.
  • the message receiving module 133 receives the second HTTP request message sent by the wireless terminal 110 under the control of the second control module 131, and sends it to the portal authentication page feedback module 134.
  • the portal authentication page feedback module 134 receives the second HTTP request message, and then extracts the second URL included therein, and then acquires the system type to which the operating system belongs in the wireless terminal 110, and further operates according to different operations prestored in the second storage module 132.
  • the association relationship between the system type and its corresponding portal authentication page is fed back to the corresponding portal authentication page (ie, the corresponding portal authentication page is found in the association relationship stored in the second storage module 132 according to the parsed system type of the wireless terminal 110) .
  • the wireless terminal 110 includes: a monitoring module 111, a message transceiver module 112, a second message generation module 113, and a third control module 114, wherein the monitoring module 111 and the third module
  • the control module 114 is connected to the monitoring module 111 and the third control module 114
  • the second packet generating module 113 is connected to the monitoring module 111, the message transceiver module 112, and the third control module 114, respectively.
  • the wireless access point 120 further includes: an information extraction module 126 and a system type determination module 127, wherein the information extraction module 126 is respectively connected to the message intercepting module 122 and the first control module 121, and the system type determining module 127 is connected to the information extraction module 126, the first storage module 124, and the first control module 121, respectively.
  • the first storage module 124 further pre-stores the association relationship between the sub-options in the preset option fields in different operating systems and Internet address request messages.
  • the monitoring module 111 in the wireless terminal 110 monitors in real time whether the wireless terminal 110 is connected to the wireless device under the control of the third control module 114. Entry point 120 establishes a connection.
  • the message transceiver module 112 sends an Internet address request message (DHCP discovery message) to the DHCP server under the control of the third control module 114.
  • the wireless access point 120 serves as a necessary path between the wireless terminal 110 and the DHCP server, and the packet intercepting module in the wireless access point 120 before the DHCP server receives the Internet address request message.
  • the information extraction module 122 intercepts the Internet address request message and sends it to the information extraction module 126.
  • the information extraction module 126 extracts and analyzes the mutual The ordering of the sub-options contained in the preset option field included in the networked address request message is sent to the system type decision module 127.
  • the system type determining module 127 sorts the sub-options included in the preset option field extracted by the information extracting module 126 in the first storage module 124. The system type corresponding to the system is found and stored in the first storage module 124, thereby completing the acquisition of the system type of the operating system in the wireless terminal 110 in the wireless access point 120.
  • the wireless terminal 110 sends a DHCP discovery message for obtaining an IP address to the DHCP server.
  • the wireless access point 120 intercepts the DHCP discovery message
  • the wireless terminal 110 analyzes the order of the sub-items included in the option 55 field of the DHCP discovery message (the order of the sub-options included in the preset option field).
  • the operating system's system type is stored locally.
  • the wireless access point 120 intercepts the first HTTP request message, and then falsifies the temporary redirect message to the wireless terminal 110.
  • the temporary redirect message includes a second URL of the portal authentication. That is, the wireless access point 120 places the system type information of the operating system of the wireless terminal 110 found in the DHCP discovery message as a parameter in the first URL of the authentication server to obtain the second URL.
  • the wireless terminal 110 receives the temporary redirect message and sends the second HTTP request message including the second URL to the authentication server, the system type of the operating system of the wireless terminal 110 is merged with the second URL. Brought to the authentication server. After receiving the second URL, the authentication server knows the system type of the operating system of the wireless terminal 110, and can further push different portal authentication pages according to different operating systems.
  • the present invention further provides an operating system-based portal authentication page adaptation method.
  • the portal authentication page adaptation method includes: S1 wireless terminal 110 sends a first HTTP request message; S2 wireless connection The inbound point 120 intercepts the first HTTP request message, and generates a temporary redirection message based on the first HTTP request message spoofing; the S3 wireless access point 120 feeds the generated temporary redirection message back to the wireless terminal 110; The S4 wireless terminal 110 generates a second HTTP request message based on the received temporary redirect message; the S5 portal authentication server 130 receives the second HTTP request message, and automatically pushes the corresponding portal authentication page based on the second HTTP request message. To the wireless terminal 110.
  • the temporary redirect message specifically includes the second URL of the portal authentication server 130, and the second URL includes a type parameter of the system type to which the operating system belongs in the wireless terminal 110.
  • the wireless terminal 110 acquires the second URL included therein, and then regenerates the second HTTP request message based on the second URL.
  • the authentication server can obtain the second URL included in the second HTTP request message, and obtain the type parameter of the system type to which the operating system belongs in the wireless terminal 110.
  • the authentication server automatically pushes the portal authentication page corresponding to the Android system; if the operating system in the wireless terminal 110 is an IOS system, the authentication server automatically pushes the corresponding Portal authentication page, and so on.
  • step S2 the method specifically includes: the S21 wireless access point 120 intercepts the first HTTP request message; and the S22 wireless access point 120 is based on the pre-stored first URL of the portal authentication server 130 and the wireless terminal 110
  • the type parameter of the system type generates a second URL, and generates a temporary redirect message based on the second URL.
  • step S3 the method specifically includes: S31, the wireless access point 120 generates a second URL based on the first URL of the built-in portal authentication server 130 and the type parameter of the system type to which the wireless terminal 110 belongs; the S32 wireless access point 120 is based on the The second URL generates a temporary redirect message.
  • step S5 the method specifically includes: the S51 portal authentication server 130 receives the second HTTP; the S52 portal authentication server 130 extracts the type parameter of the system type to which the wireless terminal 110 belongs in the second URL in the second HTTP; and the S53 portal authentication server 130 The corresponding portal authentication page is pushed according to the association relationship between the pre-stored different operating system types and their corresponding portal authentication pages.
  • the method further includes the following steps: S11: the wireless terminal 110 monitors whether it establishes a connection with the wireless access point 120; and S12 establishes a connection between the wireless terminal 110 and the wireless access point 120.
  • the wireless terminal 110 sends an Internet address request message;
  • the S13 wireless access point 120 intercepts the Internet address request message, and extracts the order of the sub-options contained in the preset option field included therein;
  • the S14 wireless access point 120 extracts the The ordering of the sub-options contained in the preset option field determines the type of system to which the wireless terminal 110 belongs and stores it.
  • the wireless terminal 110 After the terminal 110 and the wireless access point 120 are associated, the wireless terminal 110 then obtains an IP address through the DHCP service. Since all the packets sent by the wireless terminal 110 pass through the wireless access point 120, the wireless access point 120 can learn the type of the operating system of the wireless terminal 110 by intercepting the DHCP discovery message of the wireless terminal 110.
  • the wireless access point 120 intercepts the HTTP message and spoofs the temporary redirect message to the wireless terminal 110.
  • the temporary redirect message includes a second URL of the portal authentication, and the learned wireless terminal 110 operation type information is included in the second URL.
  • the wireless terminal 110 When the wireless terminal 110 receives the temporary redirect message and sends the second HTTP request message to the authentication server, the wireless terminal 110 includes the second URL in the second HTTP request message.
  • the authentication server receives the second URL and knows the operating system type of the wireless terminal 110, and can push different Portal pages according to different operating systems. For example, the portal authentication page of the IOS system is different from the portal authentication page of the Android system.

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Computer Security & Cryptography (AREA)
  • Mobile Radio Communication Systems (AREA)
  • Information Transfer Between Computers (AREA)

Abstract

La présente invention concerne un système adaptatif de pousser de page d'authentification de portail basé sur un système d'exploitation, et un procédé associé. Le système adaptatif de pousser de page d'authentification de portail comprend les étapes suivantes : un point d'accès sans fil connecté à un terminal sans fil d'une manière sans fil intercepte un premier message de requête de protocole de transfert hypertexte envoyé par le terminal sans fil, et falsifie et renvoie un message de redirection temporaire au terminal sans fil, le message de redirection temporaire contenant spécifiquement un second localisateur uniforme de ressources dans un serveur d'authentification de portail, et le second localisateur uniforme de ressources comprenant un paramètre de type du type de système d'un système d'exploitation dans le terminal sans fil ; et le serveur d'authentification de portail, connecté au terminal sans fil pour une communication, reçoit un second message de requête de protocole de transfert hypertexte contenant un second localisateur uniforme de ressources et envoyé par le terminal sans fil, puis pousse automatiquement une page d'authentification de portail correspondante vers le terminal sans fil. La présente invention permet à des terminaux sans fil ayant différents systèmes d'exploitation de sauter à différentes pages d'authentification de portail, ce qui améliore significativement l'expérience de l'utilisateur et améliore l'applicabilité d'un système d'authentification de portail.
PCT/CN2017/077407 2016-04-22 2017-03-21 Système adaptatif de pousser de page d'authentification de portail basé sur un système d'exploitation, et procédé associé WO2017181800A1 (fr)

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CN105933900A (zh) * 2016-04-22 2016-09-07 上海斐讯数据通信技术有限公司 一种基于操作系统的门户认证页面自适应系统及其方法
CN106447580A (zh) * 2016-10-10 2017-02-22 天津泰达城市轨道投资发展有限公司 基于轨道交通建设安全风险管控平台的展示方法及装置
CN107809427A (zh) * 2017-10-26 2018-03-16 迈普通信技术股份有限公司 页面推送方法、装置、系统及信息获取方法、装置

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