WO2017185741A1 - Procédé et dispositif pour optimiser la synchronisation d'un indice de tarif de réseau sur une page d'authentification d'accès - Google Patents

Procédé et dispositif pour optimiser la synchronisation d'un indice de tarif de réseau sur une page d'authentification d'accès Download PDF

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Publication number
WO2017185741A1
WO2017185741A1 PCT/CN2016/107884 CN2016107884W WO2017185741A1 WO 2017185741 A1 WO2017185741 A1 WO 2017185741A1 CN 2016107884 W CN2016107884 W CN 2016107884W WO 2017185741 A1 WO2017185741 A1 WO 2017185741A1
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Prior art keywords
user terminal
network
access
tariff indicator
network tariff
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PCT/CN2016/107884
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English (en)
Chinese (zh)
Inventor
乐毅
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上海斐讯数据通信技术有限公司
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Publication of WO2017185741A1 publication Critical patent/WO2017185741A1/fr

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/02Details
    • H04L12/14Charging, metering or billing arrangements for data wireline or wireless communications
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/02Details
    • H04L12/14Charging, metering or billing arrangements for data wireline or wireless communications
    • H04L12/1432Metric aspects
    • H04L12/1435Metric aspects volume-based
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/02Details
    • H04L12/14Charging, metering or billing arrangements for data wireline or wireless communications
    • H04L12/1432Metric aspects
    • H04L12/1439Metric aspects time-based
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W12/00Security arrangements; Authentication; Protecting privacy or anonymity
    • H04W12/06Authentication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W12/00Security arrangements; Authentication; Protecting privacy or anonymity
    • H04W12/08Access security
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/24Accounting or billing
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W56/00Synchronisation arrangements
    • H04W56/001Synchronization between nodes
    • H04W56/002Mutual synchronization
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/30Connection release

Definitions

  • the present invention relates to the field of network tariff indicator synchronization technology for access authentication page, and more particularly to a method and device for synchronizing network tariff index synchronization optimization of an access authentication page.
  • Portal authentication is one of the popular technologies for wireless network access authentication.
  • the portal access authentication page is automatically popped up, prompting the user terminal to input account information to complete the access authentication.
  • the Portal authentication success page displays the remaining Internet access time (that is, how long the user has left the Internet time) or the remaining Internet traffic (that is, how much Internet traffic the user currently has). The user will use the network during the network. Keep abreast of your Internet time, sometimes refresh the page frequently, and synchronize data with the Portal server in time.
  • the AP wireless access device
  • the user usage is relatively large, especially in shopping malls, tourist attractions, etc.
  • the Internet access time or Internet traffic synchronization can cause a lot of pressure on the Portal server.
  • the user opens the Portal page and becomes very slow, which directly affects the user's Internet experience.
  • the remaining Internet access time or remaining Internet traffic displayed on the Portal authentication success page is synchronized with the Portal server in real time.
  • the synchronization frequency is very high, even reaching seconds or minutes, which causes the Portal server to be very
  • the large pressure affects the normal Portal function of the Portal server, which leads to a decrease in the user experience.
  • the implementation is sent to the STA (user terminal) for a long time, it will be measured on the local authentication page, but it is not synchronized with the Portal server. Data of duration or traffic is seriously erroneous in the case of roaming or temporary offline.
  • the present invention provides a method for synchronizing optimization of network tariff indicators of an access authentication page, and the method includes:
  • the access server After the user terminal successfully accesses the authentication, the access server starts to measure the first network tariff indicator; the first network tariff indicator is the Internet duration or the Internet traffic;
  • the method further includes:
  • the access server sends a release command to the first wireless access device to release the user terminal, so that the first wireless access device is configured according to the Dissolving the command to release the association with the user terminal;
  • the access server When the remaining first network tariff indicator of the user terminal first reaches zero, the access server allows the user terminal to continue to access the Internet until the first network tariff indicator remaining by the access server reaches zero.
  • the method further includes:
  • the access server When the user terminal actively leaves the network, the access server receives a message that the user terminal sends the first wireless access device to leave the network;
  • the access server stops measuring the first network tariff indicator.
  • the method further includes:
  • the access server receives an inquiry that the user terminal sent by the second wireless access device has successfully accessed the authentication.
  • the access server After the access server confirms that the user terminal has successfully accessed the authentication, notifying the second wireless access device to open the access authority of the user terminal;
  • the access server When the access server confirms that the user terminal does not successfully access the authentication, and after the user terminal logs in to the second wireless access device to successfully access the authentication, the access server restarts the metering second network. a tariff indicator, and the second network tariff indicator is sent to the user terminal, so that the user terminal re-measures according to the second network tariff indicator; the second network tariff indicator is the current remaining online duration or The current remaining Internet traffic.
  • the invention also provides a synchronization optimization method for the network tariff indicator of the access authentication page, the method comprising:
  • the user terminal successfully accesses the authentication
  • the first network tariff indicator is an online time duration or an online traffic
  • the method further includes:
  • the user terminal When the remaining first network tariff indicator of the user terminal first reaches zero, the user terminal continues to access the Internet until the first network tariff indicator remaining by the access server reaches zero;
  • the method further includes:
  • the user terminal determines that it has been disconnected from the access server
  • the method further includes:
  • the user terminal When the user terminal is to associate with the second wireless access device within a roaming validity time, the user terminal sends an association request to the second wireless access device, so that the second wireless access device Confirming whether the user terminal is allowed to be associated according to the association request;
  • the user terminal When the user terminal receives the unsuccessful access authentication sent by the access server and cannot associate with the second wireless access device, the user terminal logs in to the second wireless access device to perform access authentication;
  • the user terminal When the user terminal successfully accesses the authentication, the user terminal receives the second network tariff indicator delivered by the access server, and re-measures according to the second network tariff indicator; the second network tariff indicator is The current remaining Internet time or the current remaining Internet traffic.
  • the invention also provides an access server, the access server comprising:
  • the metering module is started to start measuring the first network tariff indicator after the user terminal successfully accesses the authentication;
  • the first network tariff indicator is the online time length or the Internet traffic;
  • the first sending module is configured to send the first network tariff indicator to the user terminal in a preset synchronization period, so that the user terminal starts to measure according to the first network tariff indicator.
  • the access server further includes:
  • a first sending module configured to: after the first sending module sends the first network tariff indicator to the user terminal, when the first network tariff indicator remaining by the access server reaches zero first, Sending, to the first wireless access device, a release command for releasing the user terminal, so that the first wireless access device releases the association with the user terminal according to the release command;
  • the network access module is configured to allow the user terminal to continue to access the Internet until the remaining first network tariff indicator of the user terminal reaches zero.
  • the access server further includes:
  • a first receiving module configured to: after the first sending module sends the first network tariff indicator to the user terminal, when the user terminal actively leaves the network, receive the first wireless access a message that the user terminal sent by the device leaves the network;
  • the first stopping metering module is configured to stop measuring the first network tariff indicator.
  • the access server further includes:
  • a second receiving module configured to: after the first sending module sends the first network tariff indicator to the user terminal, when the user terminal is within a roaming validity period, to associate with the second wireless connection Receiving, by the second wireless access device, whether the user terminal has successfully accessed the authentication query message;
  • a first confirmation module configured to confirm that the user terminal has successfully accessed the authentication
  • a notification module configured to: after the user terminal confirms that the user terminal has successfully accessed the authentication, Knowing that the second wireless access device opens the access right of the user terminal;
  • a second confirmation module configured to confirm that the user terminal does not successfully access the authentication
  • the metering module is restarted, and after the user terminal logs in to the second wireless access device to successfully access the authentication, the second network tariff indicator is restarted;
  • a second sending module configured to send the second network tariff indicator to the user terminal, so that the user terminal re-measures according to the second network tariff indicator; the second network tariff indicator is current remaining The length of the Internet or the current remaining Internet traffic.
  • the invention also provides a user terminal, the user terminal comprising:
  • Access authentication module for successful access authentication
  • the third receiving module is configured to receive, by using a first network tariff indicator measured by the access server, in the preset synchronization period, where the first network tariff indicator is an online time length or an online traffic flow;
  • the metering module is configured to start measuring according to the first network tariff indicator.
  • the user terminal further includes:
  • the metering module starts measuring according to the first network tariff indicator, when the remaining first network tariff indicator of the user terminal first reaches zero, continuing to access the Internet until the remaining of the access server The first network tariff indicator reaches zero;
  • the network module is stopped, and when the first network tariff indicator remaining in the access server reaches zero first, the network is stopped.
  • the user terminal further includes:
  • a second sending module configured to: after the metering module starts to measure according to the first network tariff indicator, when the user terminal is to associate with the second wireless access device within a roaming effective time, The second wireless access device sends an association request, so that the second wireless access device confirms whether to allow the user terminal to associate according to the association request;
  • a login module configured to log in to the second wireless access device to perform access authentication when the user terminal receives the unsuccessful access authentication sent by the access server and cannot associate with the second wireless access device;
  • a fourth receiving module configured to receive a second network tariff indicator delivered by the access server when the login module successfully accesses the authentication;
  • the second network tariff indicator is a current remaining online duration or currently remaining Internet traffic;
  • the first re-measurement module is configured to re-measure according to the second network tariff indicator.
  • the technical solution of the present invention is implemented by embedding a local measuring instrument on the access authentication success page of the user terminal.
  • the access server and the user terminal simultaneously time, only when the user re-authenticates, goes online, or sets the synchronization period.
  • the necessary data synchronization is performed within the network, thereby greatly reducing the number of synchronizations between the user terminal and the access server, reducing the synchronization pressure of the access server, and improving the user experience.
  • FIG. 1 is a flowchart of an embodiment of a method for synchronizing optimization of a network tariff indicator of an access authentication page according to the present invention
  • FIG. 2 is a flowchart of another embodiment of a method for synchronously optimizing a network tariff indicator of an access authentication page according to the present invention
  • FIG. 3 is a flowchart of another embodiment of a method for synchronizing network tariff indicators in an access authentication page according to the present invention.
  • FIG. 4 is a flowchart of another embodiment of a method for synchronously optimizing a network tariff indicator of an access authentication page according to the present invention
  • FIG. 5 is a flowchart of an embodiment of a method for synchronously optimizing a network tariff indicator of an access authentication page according to the present invention
  • FIG. 6 is a flowchart of another embodiment of a method for synchronously optimizing a network tariff indicator of an access authentication page according to the present invention.
  • FIG. 7 is a flowchart of another embodiment of a method for synchronously optimizing a network tariff indicator of an access authentication page according to the present invention.
  • FIG. 8 is a flowchart of another embodiment of a method for synchronously optimizing a network tariff indicator of an access authentication page according to the present invention.
  • FIG. 9 is a flowchart of another embodiment of a method for synchronously optimizing a network tariff indicator of an access authentication page according to the present invention.
  • FIG. 10 is a structural diagram of an embodiment of an access server according to the present invention.
  • FIG. 11 is a structural diagram of another embodiment of an access server according to the present invention.
  • FIG. 12 is a structural diagram of another embodiment of an access server according to the present invention.
  • FIG. 13 is a structural diagram of another embodiment of an access server according to the present invention.
  • FIG. 14 is a structural diagram of another embodiment of an access server according to the present invention.
  • FIG. 15 is a structural diagram of an embodiment of a user terminal according to the present invention.
  • FIG. 16 is a structural diagram of another embodiment of a user terminal according to the present invention.
  • FIG. 17 is a structural diagram of another embodiment of a user terminal according to the present invention.
  • FIG. 18 is a structural diagram of another embodiment of a user terminal according to the present invention.
  • FIG. 19 is a structural diagram of another embodiment of a user terminal according to the present invention.
  • FIG. 20 is a structural diagram of an embodiment of a network tariff indicator synchronization optimization system for an access authentication page according to the present invention.
  • the access server After the user terminal successfully accesses the authentication, the access server starts to measure the first network tariff indicator; the first network tariff indicator is the Internet access time or the Internet traffic; and the first network tariff indicator is issued. Giving the user terminal, so that the user terminal starts measuring according to the first network tariff indicator.
  • FIG. 1 is a flowchart of an embodiment of a method for synchronizing and optimizing a network tariff indicator of an access authentication page according to the present invention, which is suitable for accessing a server side, and the specific process is as follows:
  • Step S101 after the user terminal successfully accesses the authentication, the access server starts to measure the first network tariff indicator
  • the first network tariff indicator is an online time length or an online traffic flow, where the measurement is a reverse measurement, for example, the online time length can be measured as the remaining online time, and the online traffic can be measured as the remaining online traffic.
  • step S102 the first network tariff indicator is sent to the user terminal in a preset synchronization period, so that the user terminal starts to measure according to the first network tariff indicator.
  • the user terminal starts to measure according to the first network tariff indicator, that is, the user terminal and the access server simultaneously measure the first network tariff indicator, so that the access server synchronizes with the user terminal only in the preset synchronization period.
  • a network tariff indicator in this way, the access server does not need to frequently synchronize the remaining first network tariff indicators with the user terminal, and the user terminal can also timely and accurately understand the current remaining first network tariff indicator;
  • the access server presets the synchronization period, and sends the preset synchronization period to the user terminal, so that the user terminal synchronizes the remaining first network tariff indicator when the preset synchronization period arrives; here, the preset synchronization period is less than the online duration (Scheduled for the length of the Internet).
  • the network optimization index synchronization optimization method of the access authentication page of the present invention is also shown in FIG. 2, and the specific steps are as follows:
  • Step S201 When the first network tariff indicator remaining by the access server reaches zero first, the access server sends a release command to the first wireless access device to cancel the user terminal.
  • the access server sends a release command to the first wireless access device to release the user terminal, the first wireless After receiving the release command sent by the access server, the access device releases the association with the user terminal according to the release command.
  • Step S202 When the remaining first network tariff indicator of the user terminal reaches zero first, the access server allows the user terminal to continue to access the Internet until the first network tariff indicator remaining by the access server reaches zero.
  • the access server allows the user to continue to access the Internet, and the access server confirms that the remaining first network resource indicator is zero. The server does not allow users to continue to go online.
  • the network optimization index synchronization optimization method of the access authentication page of the present invention is also shown in FIG. 3, and the specific steps are as follows:
  • Step S301 when the user terminal actively leaves the network, the access server receives a message that the user terminal sent by the first wireless access device leaves the network;
  • the user terminal when the user terminal actively leaves the network, the user terminal first cancels the association with the first wireless access device, and the first wireless access device learns that the user terminal leaves the network, and sends the learned user terminal to leave the network. Give access to the server.
  • Step S302 the access server stops measuring the first network tariff indicator.
  • the access server keeps the remaining first network tariff indicator at the moment of stopping.
  • the network optimization index synchronization optimization method of the access authentication page of the present invention is also shown in FIG. 4, and the specific steps are as follows:
  • Step S401 When the user terminal is to associate with the second wireless access device within the roaming validity time, the access server receives whether the user terminal sent by the second wireless access device has successfully accessed Certified inquiry message;
  • the user terminal when the user terminal wants to associate with the second wireless access device, the user terminal sends an association request to the second wireless access device, and after receiving the association request of the user terminal, the second wireless access device sends the connection request to the access server. Whether the user terminal has successfully accessed the authentication inquiry message.
  • Step S402 the access server confirms that the user terminal has successfully accessed the authentication, and then notifies the second wireless access device to open the access authority of the user terminal;
  • the access server queries that the user terminal has successfully accessed the first wireless access device, and the user terminal is successfully connected. If the user terminal does not need to perform access authentication again, the second wireless access device activates the user terminal to access the Internet and returns the user terminal association response.
  • the user terminal initiates an Internet connection to the access server every N seconds by using the reconnection mechanism; during the period, the user terminal and the user terminal Stop synchronizing network tariff indicators between access servers.
  • Step S403 when the access server confirms that the user terminal does not successfully access the authentication, and after the user terminal logs in to the second wireless access device to successfully access the authentication, the access server restarts the measurement. And the second network tariff indicator is sent to the user terminal.
  • the access server re-measures the second network tariff indicator (the current remaining first network tariff indicator), and delivers the second network tariff indicator to the user terminal, where The user terminal re-measures according to the second network tariff indicator, and the synchronization between the user terminal and the access server reaches the remaining first network tariff indicator again; the second network tariff indicator (the current remaining first network tariff indicator) ) is the current remaining Internet time or the current remaining Internet traffic.
  • the access server sends the measured first network tariff indicator to the user terminal.
  • the user terminal is re-measured according to the remaining first network tariff indicator.
  • the remaining first network tariff indicator is not displayed on the access authentication page after reopening, and the access server is measured by interacting with the access server.
  • the remaining first network tariff indicator is re-measured according to the remaining first network tariff indicator delivered by the access server, so that the user terminal and the access server again reach the synchronization of the remaining first network tariff indicators.
  • FIG. 5 is a flowchart of an embodiment of a network tariff indicator synchronization optimization method for an access authentication page according to the present invention, which is suitable for a user terminal side, and the specific steps are as follows:
  • Step S501 the user terminal successfully accesses the authentication
  • the user terminal 1400 associates with one SSID (Service Set Identifier) of the first radio access device, and the first radio access device redirects the HTTP response of the user terminal to the access service.
  • the server 1000 obtains the URL (WWW Uniform Resource Locator) address, and the user terminal 1400 obtains the network page redirected by the first wireless access device, prompts the user terminal 1400 to input the user name and password, and initiates access to the access server 1000.
  • the access server 1000 audits the user name and password, sends an authentication success message to the first wireless access device, and the authentication result and the remaining online time of the user or the remaining Internet access.
  • the traffic is fed back to the user terminal 1400, and after receiving the message that the access authentication succeeded by the access server 1000, the first wireless access device authorizes the user terminal to access the Internet;
  • Redirect is to redirect various network requests to other locations through various methods (for example, web page redirection, domain name redirection, and routing changes are also a kind of heavy on the data packet path). Orientation);
  • Each subnet has an SSID. Each subnet requires independent authentication. Only authenticated users can enter the corresponding subnet to prevent unauthorized users from entering the network.
  • the access authentication page is a page specified by the access server, and the network address is a URL address.
  • Step S502 the user terminal receives the first network tariff indicator measured by the access server in a preset synchronization period
  • the first network tariff indicator is an online time length or an online traffic flow. Because it is a reverse measurement, the online time length is the remaining online time, and the online traffic is the remaining online traffic;
  • the preset synchronization period is preset by the access server, and is sent to the user terminal.
  • the user terminal receives the first network tariff indicator measured by the access server; where the preset synchronization period is less than the Internet access Duration (default internet time).
  • Step S503 the user terminal starts measuring according to the first network tariff indicator.
  • the user terminal is locally implanted with a measuring instrument, and the measuring time for the Internet access time can be selected by a timer, and the measuring flow rate can be selected by using a flow measuring instrument;
  • the user terminal starts to measure according to the first network tariff indicator, that is, the user terminal and the access server simultaneously measure the first network tariff indicator, so that the access server does not need to frequently update the remaining first network tariff indicator of the user terminal.
  • the user terminal can also keep abreast of the remaining first network tariff indicators.
  • the network tariff indicator synchronization optimization method of the access authentication page of the present invention is also shown in FIG. 6, and the specific steps are as follows:
  • Step S601 when the remaining first network tariff indicator of the user terminal reaches zero first, the user terminal continues to access the Internet until the first network tariff indicator remaining by the access server reaches zero;
  • the access server allows the user to continue to access the Internet.
  • the remaining first network resource indicator of the access server is zero, the access server is accessed. The user is not allowed to continue surfing the Internet, and the user terminal is forced to stop surfing the Internet.
  • Step S602 When the remaining first network tariff indicator of the access server first reaches zero, the user terminal stops surfing the Internet.
  • the access server sends a release command to the first wireless access device to release the user terminal, the first wireless After receiving the release command sent by the access server, the access device releases the association with the user terminal according to the release command.
  • the network tariff indicator synchronization optimization method of the access authentication page of the present invention is also shown in FIG. 7, and the specific steps are as follows:
  • Step S701 when the user terminal leaves the network, the user terminal determines that it is disconnected from the access server;
  • the user terminal determines whether it is disconnected from the access server by sending a ping message to the access server, where ping is a command under Windows, Unix, and Linux systems.
  • Ping is also a communication protocol and is part of the TCP/IP protocol. Use the "ping" message to check if the network is connected, which can help us analyze and determine network failures.
  • Step S702 stopping measuring the first network tariff indicator
  • the user terminal confirms that the user terminal is disconnected from the access server, and the user terminal stops measuring the first network tariff indicator (the remaining first network tariff indicator).
  • Step S703 and disconnecting the network connection with the access server
  • the feedback received by the user terminal for the ping packet is unreachable, and the user terminal disconnects the connection with the access server.
  • Step S704 reconnecting to the access server every predetermined time.
  • the user terminal initiates an Internet connection to the access server every N seconds; during the period, the user terminal and the access server stop synchronizing the network tariff indicator.
  • the network tariff indicator synchronization optimization method of the access authentication page of the present invention is also shown in FIG. 8. The specific steps are as follows:
  • Step S801 When the user terminal is to associate with the second wireless access device within a roaming validity time, the user terminal sends an association request to the second wireless access device.
  • the user terminal when the user terminal wants to associate with the second wireless access device, the user terminal sends an association request to the second wireless access device, and after receiving the association request of the user terminal, the second wireless access device sends the connection request to the access server.
  • the second wireless access device confirms whether the user terminal is allowed to be associated; when the access server feeds back that the user terminal has successfully accessed the authentication, the second wireless access The device allows the user terminal to associate; otherwise, the second wireless access device does not allow the user terminal to associate;
  • the user terminal initiates an Internet connection to the access server every N seconds by using the reconnection mechanism; during the period, the user terminal and the user terminal Stop synchronizing network tariff indicators between access servers.
  • Step S802 when the user terminal receives the unsuccessful access authentication sent by the access server When the second wireless access device cannot be associated, the user terminal logs in to the second wireless access device to perform access authentication;
  • the access server re-measures the second network tariff indicator (the current remaining first network tariff indicator), and the second network tariff indicator is Send to the user terminal.
  • Step S803 when the user terminal successfully accesses the authentication, the user terminal receives the second network tariff indicator delivered by the access server, and re-measures according to the second network tariff indicator;
  • the user terminal re-measures according to the second network tariff indicator, that is, the synchronization between the user terminal and the access server reaches the remaining first network tariff indicator; the second network tariff indicator (the current remaining number)
  • a network tariff indicator is the current remaining Internet time or the current remaining Internet traffic.
  • the network tariff indicator synchronization optimization method of the access authentication page of the present invention is also shown in FIG. 9, and the specific steps are as follows:
  • Step S901 When the user terminal re-opens the access authentication page after the user terminal is forced to close the access authentication page, the user terminal receives the remaining first network tariff indicator sent by the access server.
  • the remaining first network tariff indicator is not displayed on the access authentication page after reopening, and the access server is measured by interacting with the access server. The remaining first network tariff indicator.
  • Step S902 and re-measuring according to the remaining first network tariff indicators.
  • the user terminal re-measures according to the remaining first network tariff indicator delivered by the access server, that is, the user terminal and the access server once again reach the synchronization of the remaining first network tariff indicators.
  • the access server receives the second wireless connection. a status inquiry message of the user terminal sent by the device;
  • the user terminal when the user terminal cancels the account, leaves the network, the remaining network tariff indicator is zero, or is not within the roaming effective time, the user terminal is in the offline state, and at this time, if the user terminal wants to associate with the second wireless access device Sending an association request to the second wireless access device to the user terminal, and after receiving the association request of the user terminal, the second wireless access device sends an inquiry message to the access server whether the user terminal has successfully accessed the authentication; Whether the user terminal sent by the second wireless access device has successfully accessed the authentication query message, and the access server queries the user to find that the user terminal has gone offline, and then informs the user terminal to perform access authentication again;
  • the user terminal cancels the account as an active cancellation account or a passive cancellation account; the user terminal leaves the network to actively leave the network; the remaining network tariff indicator of the user terminal is zero without passive Internet access or without the Internet access time and passively leaves the network.
  • FIG. 10 is a structural diagram of an embodiment of an access server according to the present invention.
  • the access server 1000 includes a startup metering module 1001 and a first sending module 1002.
  • the metering module 1001 is configured to start to measure the first network tariff indicator after the user terminal successfully accesses the authentication;
  • the first network tariff indicator is an online time length or an online traffic flow, where the measurement is a reverse measurement, for example, the online time length can be measured as the remaining online time, and the online traffic can be measured as the remaining online traffic.
  • the first sending module 1002 is configured to send the first network tariff indicator to the user terminal in a preset synchronization period, so that the user terminal starts to measure according to the first network tariff indicator.
  • the user terminal starts to measure according to the first network tariff indicator, that is, the user terminal and the access server 1000 simultaneously measure the first network tariff indicator, so that the access server 1000 synchronizes with the user terminal only in the preset synchronization period.
  • the first network tariff indicator is such that the access server 1000 does not need to frequently synchronize the remaining first network tariff indicator with the user terminal, and the user terminal can also accurately and accurately know the current remaining first network tariff indicator;
  • the access server 1000 presets the synchronization period, and sends the preset synchronization period to the user terminal, so that the user terminal synchronizes the remaining first network tariff indicator when the preset synchronization period arrives; here, the preset synchronization period is less than the Internet access. Duration (scheduled for the duration of the Internet).
  • FIG. 11 is a structural diagram of another embodiment of an access server according to the present invention.
  • the access server 1000 includes a startup metering module 1001, a first sending module 1002, a first sending module 1003, and an allowed internet module 1004. 1001 and the first sending module 1002 are specifically shown in FIG. 10,
  • the first sending module 1003 is configured to: after the first sending module 1002 sends the first network tariff indicator to the user terminal, when the first network tariff indicator remaining in the access server 1000 reaches the first Zero-time, transmitting, to the first wireless access device, a release command for releasing the user terminal, so that the first wireless access device releases the association with the user terminal according to the release command;
  • the first sending module 1003 sends a release command to the first wireless access device to cancel the user terminal. After receiving the release command sent by the first sending module 1003, the wireless access device cancels the association with the user terminal according to the release command.
  • the accessing module 1004 is configured to allow the user terminal to continue to access the Internet until the remaining first network tariff indicator of the user terminal reaches zero.
  • the first network tariff indicator remaining in the user terminal first reaches zero when compared with the access server 1000, and the access module 1004 is allowed to continue to access the Internet.
  • the remaining first network resource indicator of the access server 1000 is zero, The access server 1000 does not allow the user to continue to access the Internet.
  • FIG. 12 is a structural diagram of another embodiment of an access server according to the present invention.
  • the access server 1000 includes a startup metering module 1001, a first sending module 1002, a first receiving module 1005, and a first stopping metering module 1006.
  • the metering module 1001 and the first sending module 1002 are specifically as shown in FIG. 10 .
  • the first receiving module 1005 is configured to: after the first sending module 1002 sends the first network tariff indicator to the user terminal, when the user terminal actively leaves the network, receive the first wireless access a message that the user terminal sent by the device leaves the network;
  • the user terminal when the user terminal actively leaves the network, the user terminal first cancels the association with the first wireless access device, and the first wireless access device learns that the user terminal leaves the network, and sends the learned user terminal to leave the network.
  • the access server 1000 is provided.
  • the first stop measurement module 1006 is configured to stop measuring the first network tariff indicator.
  • the access server 1000 keeps the remaining first network tariff indicator at the moment of stopping.
  • FIG. 13 is a structural diagram of another embodiment of an access server according to the present invention.
  • the access server 1000 includes a startup metering module 1001, a first sending module 1002, a second receiving module 1007, a first confirming module 1008, and a notification module 1009.
  • the second receiving module 1007 is configured to: after the first sending module 1002 sends the first network tariff indicator to the user terminal, when the user terminal is within a roaming prescribed valid time, the second wireless connection is to be associated Receiving, by the second wireless access device, whether the user terminal has successfully accessed the authentication query message;
  • the user terminal when the user terminal wants to associate with the second wireless access device, the user terminal sends an association request to the second wireless access device, and after receiving the association request of the user terminal, the second wireless access device sends the connection request to the access server 1000. Whether the user terminal has successfully accessed the authentication inquiry message.
  • the first confirmation module 1008 is configured to confirm that the user terminal has successfully accessed the authentication
  • the access server 1000 determines that the user terminal has successfully accessed the first wireless access device, and the user terminal is considered to have succeeded. Access authentication.
  • the notification module 1009 is configured to notify the second wireless access device to open the access authority of the user terminal after the user terminal confirms that the user terminal has successfully accessed the authentication;
  • the user terminal when the user terminal has successfully accessed the authentication, the user terminal does not need to perform access authentication again, and the second wireless access device activates the user terminal's access right, and returns the user terminal association response.
  • the second confirmation module 1010 is configured to confirm that the user terminal does not successfully access the authentication.
  • the metering module 1011 is restarted, and after the user terminal logs in to the second wireless access device to successfully access the authentication, the second network tariff indicator is restarted;
  • the access server 1000 re-measures the second network tariff indicator (the current remaining first network tariff indicator).
  • the second sending module 1012 is configured to send the second network tariff indicator to the user terminal, so that the user terminal re-measures according to the second network tariff indicator.
  • the second sending module 1012 sends the second network tariff indicator to the user terminal, and the user terminal re-measures according to the second network tariff indicator, and the remaining between the user terminal and the access server 1000 is reached again. Synchronization of the first network tariff indicator; the second network tariff indicator (currently remaining first network tariff indicator) is the current remaining online duration or the current remaining Internet traffic.
  • FIG. 14 is a structural diagram of another embodiment of an access server according to the present invention.
  • the access server 1000 includes a startup metering module 1001, a first sending module 1002, and a third sending module 1013, wherein the metering module 1001 and the first device are started.
  • the delivery module 1002 is specifically shown in FIG. 10,
  • the third sending module 1013 is configured to: after the first sending module sends the first network tariff indicator to the user terminal, after the user terminal forcibly closes the access authentication page, and then restarts hit When the access authentication page is opened, the remaining first network tariff indicator is delivered to the user terminal, so that the user terminal re-measures according to the remaining first network tariff indicator.
  • the remaining first network tariff indicator is not displayed on the re-opened access authentication page, and the access server 1000 is obtained by interacting with the access server 1000.
  • the remaining first network tariff indicator is measured and re-measured according to the remaining first network tariff indicator delivered by the access server 1000, so that the user terminal and the access server 1000 reach the remaining first network tariff indicator again.
  • FIG. 15 is a structural diagram of an embodiment of a user terminal according to the present invention.
  • the user terminal 1400 includes an access authentication module 1401, a third receiving module 1402, and a metering module 1403.
  • the access authentication module 1401 is configured to successfully access the authentication.
  • the user terminal 1400 associates with one SSID (Service Set Identifier) of the first radio access device, and the first radio access device redirects the HTTP response packet of the user terminal 1400 to the access server 1000.
  • the URL WWW Uniform Resource Locator
  • the user terminal 1400 obtains the network page redirected by the first wireless access device, prompts the user terminal 1400 to input the user name and password, and initiates an access authentication request to the access server 1000, and accesses
  • the server 1000 verifies the user name and password, sends an authentication success message to the first wireless access device, and feeds back the authentication result and the remaining online time of the user or the remaining Internet traffic to the user terminal 1400.
  • the first wireless access device authorizes the user terminal 1400 to access the Internet;
  • Each subnet has an SSID. Each subnet requires independent authentication. Only authenticated users can enter the corresponding subnet to prevent unauthorized users from entering the network.
  • the access authentication page is a page specified by the access server 1000, and the network address is a URL address.
  • the third receiving module 1402 is configured to receive, by using a preset synchronization period, a first network tariff indicator measured by the access server 1000;
  • the first network tariff indicator is an online time length or an online traffic flow. Because it is a reverse measurement, the online time length is the remaining online time, and the online traffic is the remaining online traffic;
  • the preset synchronization period is preset by the access server, and is sent to the user terminal.
  • the user terminal receives the first network tariff indicator measured by the access server; where the preset synchronization period is less than the Internet access Duration (default internet time).
  • the metering module 1403 is configured to start measuring according to the first network tariff indicator.
  • the metering module 1403 for measuring the duration of the Internet access may select a timer, and the metering module 1403 for measuring the Internet traffic may select a flow meter;
  • the metering module 1403 starts to measure according to the first network tariff indicator, that is, the user terminal 1400 and the access server 1000 simultaneously measure the first network tariff indicator, so that the access server 1000 does not need to frequently update the remaining number of the user terminal 1400.
  • a network tariff indicator, the user terminal 1400 can also timely know the current remaining first network tariff indicator.
  • FIG. 16 is a structural diagram of another embodiment of a user terminal according to the present invention, where the user terminal 1400 includes an access authentication.
  • the online access module 1404 is configured to: after the metering module 1403 starts measuring according to the first network tariff indicator, when the remaining first network tariff indicator of the user terminal first reaches zero, continue to access the Internet until the access server The remaining first network tariff indicator of 1000 reaches zero;
  • the access server 1000 allows the user to continue to access the Internet.
  • the access server 1000 confirms that the remaining first network resource indicator is zero
  • the access server 1000 confirms that the remaining first network resource indicator is zero.
  • the user terminal 1400 is forced to stop surfing the Internet.
  • the network access module 1405 is configured to stop the Internet when the first network tariff indicator remaining in the access server 1000 reaches zero first.
  • the access server 1000 sends a release command to the first wireless access device to release the user terminal 1400. After receiving the release command sent by the access server 1000, the first wireless access device releases the association with the user terminal 1400 according to the release command.
  • FIG. 17 is a structural diagram of another embodiment of a user terminal according to the present invention.
  • the user terminal 1400 includes an access authentication module 1401, a third receiving module 1402, a metering module 1403, a determining module 1406, a second stopping metering module 1407, and a disconnecting module. 1408 and a synchronization module 1409, wherein the access authentication module 1401, the third receiving module 1402, and the metering module 1403 are specifically as shown in FIG.
  • the determining module 1406 is configured to determine that the user terminal 1400 and the access server 1000 have been disconnected after the metering module 1403 starts measuring according to the first network tariff indicator;
  • the user terminal 1400 determines whether the ping is disconnected from the access server by sending a ping message to the access server 1000, where ping is a command under Windows, Unix, and Linux systems. Ping is also a communication protocol and is part of the TCP/IP protocol. Use the "ping" message to check if the network is connected, which can help us analyze and determine network failures.
  • a second stop measurement module 1407 configured to stop measuring the first network tariff indicator
  • the user terminal 1400 when the user terminal 1400 is unreachable by receiving the ping message, the user terminal 1400 is disconnected from the access server 1000, and the user terminal 1400 stops measuring the first network tariff indicator (the remaining first network) Tariff indicator).
  • Disconnecting module 1408, configured to disconnect a network connection with the access server 1000
  • the user terminal 1400 receives the feedback of the ping message as unreachable, and the user terminal 1400 disconnects the connection with the access server 1000.
  • the synchronization module 1409 is configured to initiate reconnection to the access server 1000 every predetermined time.
  • the synchronization module 1409 initiates an Internet connection to the access server 1000 every N seconds; during this period, the synchronization of the network tariff indicator between the user terminal 1400 and the access server 1000 is stopped.
  • FIG. 18 is a structural diagram of another embodiment of a user terminal according to the present invention.
  • the user terminal 1400 includes an access authentication module 1401, a third receiving module 1402, a metering module 1403, a second sending module 1410, and a login mode.
  • the block 1411, the fourth receiving module 1412, and the first re-metering module 1413, wherein the access authentication module 1401, the third receiving module 1402, and the metering module 1403 are specifically as shown in FIG.
  • a second sending module 1410 configured to: when the metering module 1403 starts to measure according to the first network tariff indicator, when the user terminal 1400 is to associate with the second wireless access device during a roaming defined effective time Sending an association request to the second wireless access device, so that the second wireless access device confirms whether to allow the user terminal 1400 to associate according to the association request;
  • the user terminal 1400 when the user terminal 1400 wants to associate with the second wireless access device, the user terminal 1400 sends an association request to the second wireless access device, and after receiving the association request of the user terminal 1400, the second wireless access device accesses
  • the server 1000 sends whether the user terminal 1400 has successfully accessed the authentication query message, and according to the feedback of the access server 1000, the second wireless access device confirms whether the user terminal 1400 is allowed to be associated; when the access server 1000 feeds back the user terminal 1400 has successfully received Entering the authentication, the second wireless access device allows the user terminal 1400 to associate; otherwise, the second wireless access device does not allow the user terminal 1400 to associate;
  • the domain name of the access server 1000 is generally whitelisted, and the user terminal 1400 initiates an Internet connection to the access server 1000 every N seconds by using the reconnection mechanism;
  • the user network 1400 and the access server 1000 stop synchronizing the network tariff indicator.
  • the login module 1411 is configured to log in to the second wireless access device to connect when the user terminal 1400 receives the unsuccessful access authentication sent by the access server 1000 and cannot associate with the second wireless access device. Enter the certification;
  • the access server 1000 re-measures the second network tariff indicator (the current remaining first network tariff indicator), and the second network tariff is The indicator is sent to the user terminal 1400.
  • the fourth receiving module 1412 is configured to receive the second network tariff indicator delivered by the access server 1000 when the login module 1411 successfully accesses the authentication;
  • the second network tariff indicator (the current remaining first network tariff indicator) is the current remaining online duration or the current remaining Internet traffic;
  • the first re-metric module 1413 is configured to re-measure according to the second network tariff indicator.
  • the user terminal 1400 re-measures according to the second network tariff indicator, that is, the synchronization between the user terminal 1400 and the access server 1000 reaches the remaining first network tariff indicator again.
  • FIG. 19 is a structural diagram of another embodiment of a user terminal according to the present invention.
  • the user terminal 1400 includes an access authentication module 1401, a third receiving module 1402, a metering module 1403, a fifth receiving module 1414, and a second re-metering module 1415.
  • the access authentication module 1401, the third receiving module 1402, and the metering module 1403 are specifically as shown in FIG.
  • the fifth receiving module 1414 is configured to: after the metering module 1403 starts to measure according to the first network tariff indicator, when the user terminal 1400 forcibly closes the access authentication page online, and then reopens the access authentication page, Receiving the remaining first network tariff indicator sent by the access server 1000;
  • the remaining first network tariff indicator is not displayed on the access authentication page, and the remaining first network tariff indicator measured by the access server 1000 is obtained by interacting with the access server 1000.
  • the second re-measurement module 1415 is configured to re-measure according to the remaining first network tariff indicators.
  • the user terminal 1400 re-measures according to the remaining first network tariff indicator delivered by the access server 1000, that is, the user terminal 1400 and the access server 1000 once again reach the synchronization of the remaining first network tariff indicators.
  • the system 2000 is a structural diagram of an embodiment of a network tariff indicator synchronization system of an access authentication page according to the present invention.
  • the system 2000 includes an access server 1000 and a user terminal 1400.
  • the access server 1000 is configured to start measuring the first network tariff indicator after the user terminal 1400 successfully accesses the authentication; the first network tariff indicator is an online time length or an online traffic; and the first network is preset in a synchronization period.
  • the tariff indicator is sent to the user terminal 1400, so that the user terminal 1400 starts to measure according to the first network tariff indicator.
  • the user terminal 1400 is configured to successfully access the authentication; and receive the first network tariff indicator measured by the access server 1000 in the preset synchronization period; the first network tariff indicator is the Internet access time or the Internet traffic; and according to the first network The tariff indicator begins to measure.
  • the function modules of the access server 1000 and the user terminal 1400 provided by the embodiment may be software modules or functional modules combined with software and hardware, which may be implemented by a processor to implement the functions as described above.
  • the access server 1000 and the user terminal 1400 may also have other functional modules to implement the specific steps of overcoming the timely synchronization of the Internet access time or the Internet traffic. For details, refer to the corresponding description of the foregoing method embodiments.
  • the processor executes, and when the aforementioned program is executed, the processor can execute all or part of the steps including the above method embodiments.
  • the processor may be implemented as one or more processor chips, or may be part of one or more application specific integrated circuits (ASICs); and the foregoing storage medium may include but not be limited to the following types. Storage medium: Flash memory, Read-Only Memory (ROM), Random Access Memory (RAM), removable hard disk, disk or optical disk, and other media that can store program code.

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Abstract

L'invention concerne un procédé pour optimiser la synchronisation d'un indice de tarif de réseau sur une page d'authentification d'accès. Le procédé comprend les opérations suivantes : lorsque le terminal utilisateur réussit l'authentification d'accès, un serveur d'accès commence à mesurer un premier indice de tarif de réseau, le premier indice de tarif de réseau étant une durée de navigation sur Internet ou un trafic Internet ; le premier indice de tarif de réseau est émis au terminal utilisateur à un temps de synchronisation préréglé, de façon à faciliter le début de la mesure par le terminal utilisateur selon le premier indice de tarif de réseau. Ainsi, dans la solution technique de la présente invention, par implantation d'un instrument de mesure local dans une page d'authentification d'accès réussie d'un terminal utilisateur, lorsque le terminal utilisateur réussit l'authentification d'accès, un serveur d'accès et le terminal utilisateur sont synchrones, et une synchronisation de données nécessaire est réalisée uniquement lorsque le terminal utilisateur est de nouveau authentifié, et en ligne ou règle une période de synchronisation, de telle sorte que le nombre de synchronisations entre le terminal utilisateur et le serveur d'accès peut être considérablement réduit, la pression de synchronisation du serveur d'accès peut être atténuée et l'expérience d'utilisateur est améliorée.
PCT/CN2016/107884 2016-04-26 2016-11-30 Procédé et dispositif pour optimiser la synchronisation d'un indice de tarif de réseau sur une page d'authentification d'accès WO2017185741A1 (fr)

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