WO2016019796A1 - 实现信息推送的方法、服务器、共享者客户端、第三方客户端 - Google Patents

实现信息推送的方法、服务器、共享者客户端、第三方客户端 Download PDF

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Publication number
WO2016019796A1
WO2016019796A1 PCT/CN2015/084338 CN2015084338W WO2016019796A1 WO 2016019796 A1 WO2016019796 A1 WO 2016019796A1 CN 2015084338 W CN2015084338 W CN 2015084338W WO 2016019796 A1 WO2016019796 A1 WO 2016019796A1
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WO
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Prior art keywords
wireless network
identifier
mac address
server
client
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PCT/CN2015/084338
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English (en)
French (fr)
Inventor
周建波
熊益斌
修超
吴明
Original Assignee
阿里巴巴集团控股有限公司
周建波
熊益斌
修超
吴明
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by 阿里巴巴集团控股有限公司, 周建波, 熊益斌, 修超, 吴明 filed Critical 阿里巴巴集团控股有限公司
Priority to KR1020187021429A priority Critical patent/KR102051244B1/ko
Priority to JP2017506918A priority patent/JP6298217B2/ja
Priority to EP15829515.4A priority patent/EP3179750B1/en
Priority to EP19209220.3A priority patent/EP3629608A1/en
Priority to SG11201700639PA priority patent/SG11201700639PA/en
Priority to KR1020177006405A priority patent/KR101883682B1/ko
Priority to US15/326,908 priority patent/US10136317B2/en
Publication of WO2016019796A1 publication Critical patent/WO2016019796A1/zh
Priority to US16/152,194 priority patent/US11063934B2/en

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L63/00Network architectures or network communication protocols for network security
    • H04L63/08Network architectures or network communication protocols for network security for authentication of entities
    • H04L63/0853Network architectures or network communication protocols for network security for authentication of entities using an additional device, e.g. smartcard, SIM or a different communication terminal
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L63/00Network architectures or network communication protocols for network security
    • H04L63/08Network architectures or network communication protocols for network security for authentication of entities
    • H04L63/0876Network architectures or network communication protocols for network security for authentication of entities based on the identity of the terminal or configuration, e.g. MAC address, hardware or software configuration or device fingerprint
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L63/00Network architectures or network communication protocols for network security
    • H04L63/10Network architectures or network communication protocols for network security for controlling access to devices or network resources
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L63/00Network architectures or network communication protocols for network security
    • H04L63/10Network architectures or network communication protocols for network security for controlling access to devices or network resources
    • H04L63/104Grouping of entities
    • 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
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W12/00Security arrangements; Authentication; Protecting privacy or anonymity
    • H04W12/06Authentication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/02Arrangements for optimising operational condition
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/06Selective distribution of broadcast services, e.g. multimedia broadcast multicast service [MBMS]; Services to user groups; One-way selective calling services
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W60/00Affiliation to network, e.g. registration; Terminating affiliation with the network, e.g. de-registration
    • H04W60/04Affiliation to network, e.g. registration; Terminating affiliation with the network, e.g. de-registration using triggered events
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W68/00User notification, e.g. alerting and paging, for incoming communication, change of service or the like
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L2101/00Indexing scheme associated with group H04L61/00
    • H04L2101/60Types of network addresses
    • H04L2101/618Details of network addresses
    • H04L2101/622Layer-2 addresses, e.g. medium access control [MAC] addresses
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/80Services using short range communication, e.g. near-field communication [NFC], radio-frequency identification [RFID] or low energy communication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/08Access restriction or access information delivery, e.g. discovery data delivery
    • H04W48/14Access restriction or access information delivery, e.g. discovery data delivery using user query or user detection
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/16Discovering, processing access restriction or access information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/10Connection setup
    • H04W76/14Direct-mode setup
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W84/00Network topologies
    • H04W84/02Hierarchically pre-organised networks, e.g. paging networks, cellular networks, WLAN [Wireless Local Area Network] or WLL [Wireless Local Loop]
    • H04W84/10Small scale networks; Flat hierarchical networks
    • H04W84/12WLAN [Wireless Local Area Networks]

Definitions

  • the present application relates to the field of communications technologies, and in particular, to a method, a server, a sharer client, and a third-party client for implementing information push.
  • the server often sends information to the client through polling. Specifically, the server detects the connection with the client every time interval, or establishes a connection with the client periodically, so that the server sends the generated information to the client in the presence of an effective connection.
  • the timing of pushing information in the prior art cannot be associated with the establishment of a particular connection.
  • the purpose of the embodiment of the present application is to provide a method for implementing information push, a server, a sharer client, and a third-party client to associate the push timing of information with the establishment of a specific connection.
  • the embodiment of the present application provides a method for implementing information push, a server, a sharer client, and a third-party client, which are implemented as follows:
  • a method for implementing information push comprising:
  • the wireless network sharer client obtains the first identifier of the selected wireless network in the scanned/stored wireless network list of the wireless network sharer terminal and sends the first identifier to the server;
  • the server generates a second identifier and sends the identifier to the wireless network sharer client;
  • the wireless network sharer client acquires a wireless network list updated by the wireless network sharer mobile terminal and sends the selected third identifier of the wireless network to the server;
  • the server compares the second identifier with the third identifier, and verifies and registers information of the device of the wireless network when the two are the same;
  • the method further includes:
  • the wireless network sharer sets the wireless network sharer client/the wireless network device to send push information to the third party terminal after receiving the message that the third party terminal accesses the wireless network successfully.
  • a method for implementing information push comprising:
  • the wireless network sharer client obtains the first identifier of the selected wireless network in the scanned/stored wireless network list of the wireless network sharer terminal and sends the first identifier to the server;
  • the server generates a second identifier and sends the identifier to the wireless network sharer client;
  • the wireless network sharer client acquires a wireless network list updated by the wireless network sharer mobile terminal and sends the selected third identifier of the wireless network to the server;
  • the server compares the second identifier with the third identifier, and verifies and registers information of the device of the wireless network when the two are the same;
  • the method further includes:
  • the wireless network sharer client sends the push information to the server, and notifies the server to send the push information to the third party terminal after receiving the message that the third party terminal accesses the wireless network successfully.
  • a method for implementing information push comprising:
  • the wireless network sharer client acquires the first identifier of the selected wireless network and the MAC address of the corresponding wireless network device in the scanned/stored wireless network list of the wireless network sharer terminal and sends the MAC address to the server;
  • the server generates a second identifier and sends the identifier to the wireless network sharer client;
  • the wireless network sharer client obtains a wireless network list updated by the wireless network sharer mobile terminal, and sends the third identifier of the selected wireless network and the MAC address of the corresponding wireless network device to the server;
  • the server compares the second identifier with the third identifier, and compares the MAC address of the wireless network device corresponding to the first identifier with the MAC address of the wireless network device corresponding to the third identifier, and passes the verification when the comparison results are the same;
  • the method further includes:
  • the wireless network sharer sets the wireless network sharer client/the wireless network device to send push information to the third party terminal after receiving the message that the third party terminal accesses the wireless network successfully.
  • a method for implementing information push comprising:
  • the wireless network sharer client acquires the first identifier of the selected wireless network and the MAC address of the corresponding wireless network device in the scanned/stored wireless network list of the wireless network sharer terminal and sends the MAC address to the server;
  • the server generates a second identifier and sends the identifier to the wireless network sharer client;
  • the wireless network sharer client obtains a wireless network list updated by the wireless network sharer mobile terminal, and sends the third identifier of the selected wireless network and the MAC address of the corresponding wireless network device to the server;
  • the server compares the second identifier with the third identifier, and compares the MAC address of the wireless network device corresponding to the first identifier Corresponding to the MAC address of the wireless network device corresponding to the third identifier, and verifying when the comparison result is the same;
  • the method further includes:
  • the wireless network sharer client sends the push information to the server, and notifies the server to send the push information to the third party terminal after receiving the message that the third party terminal accesses the wireless network successfully.
  • a method for implementing information push comprising:
  • the server generates a second identifier and sends the identifier to the wireless network sharer client;
  • the server compares the second identifier with the third identifier and verifies and registers information of the device of the wireless network when the two are the same.
  • a method for implementing information push comprising:
  • the server generates a second identifier and sends the identifier to the wireless network sharer client;
  • the server compares the second identifier with the third identifier, and compares the MAC address of the wireless network device corresponding to the first identifier with the MAC address of the wireless network device corresponding to the third identifier, and passes the verification when the comparison results are the same.
  • a method for implementing information push comprising:
  • the wireless network sharer client obtains the first identifier of the selected wireless network in the scanned/stored wireless network list of the wireless network sharer terminal and sends the first identifier to the server;
  • the wireless network sharer client obtains a wireless network list updated by the wireless network sharer mobile terminal and transmits the selected third identifier of the wireless network to the server.
  • a method for implementing information push comprising:
  • the wireless network sharer client acquires the first identifier of the selected wireless network and the MAC address of the corresponding wireless network device in the scanned/stored wireless network list of the wireless network sharer terminal and sends the MAC address to the server;
  • the wireless network sharer client receives the second identifier sent by the server and the MAC address of the corresponding wireless network device;
  • the wireless network sharer client obtains a wireless network list updated by the wireless network sharer mobile terminal and sends the selected third identifier of the wireless network and the MAC address of the corresponding wireless network device to the server.
  • a method for implementing information push comprising:
  • the third-party terminal enters the wireless shared network area, and the third-party client obtains the MAC address of the device broadcast by the wireless shared network;
  • the third-party client compares the obtained MAC address with the MAC address in the stored MAC address list, and when the obtained MAC address is in the stored MAC address list, the third-party client reads the stored MAC address. Obtaining a corresponding wireless network identifier in a correspondence relationship with the wireless network identifier;
  • the third-party client uses the obtained wireless network identifier to initiate a connection request to the wireless network corresponding to the MAC address;
  • the method further includes: receiving the push information sent by the connected wireless network device/wireless network sharer client/server.
  • a method for implementing information push comprising:
  • the third-party terminal enters the wireless shared network area, and the third-party client obtains the MAC address of the device broadcast by the wireless shared network;
  • the third-party client compares the obtained MAC address with the MAC address in the stored MAC address list, and when the obtained MAC address is in the stored MAC address list, the third-party client reads the stored MAC address. Obtaining a corresponding wireless network identifier and a connection key in a correspondence between the wireless network identifier and the connection key;
  • the third-party client initiates a connection request to the wireless network corresponding to the MAC address by using the obtained wireless network identifier and the connection key;
  • the method further includes: receiving the push information sent by the connected wireless network device/wireless network sharer client/server.
  • a method for implementing information push comprising:
  • the third-party terminal enters the wireless shared network area, and the third-party client obtains the first set of device MAC addresses broadcast by the wireless shared network;
  • the third party client compares the obtained first set of MAC addresses with the second set of MAC addresses in the stored MAC address list of the same wireless network shared area, and when the MAC address of the intersection reaches or exceeds the predetermined number, the The third-party client obtains the wireless network identifier corresponding to the MAC address in the intersection from the correspondence between the stored MAC address and the wireless network identifier;
  • the third party client initiates a connection request to the wireless network corresponding to the MAC address by using at least one of the obtained wireless network identifiers;
  • the method further includes: the third-party client receiving the connected wireless network device/wireless network sharer client/ Push information sent by the server.
  • a method for implementing information push comprising:
  • the third-party terminal enters the wireless shared network area, and the third-party client obtains the first set of device MAC addresses broadcast by the wireless shared network;
  • the third-party client compares the obtained first set of MAC addresses with the second set of MAC addresses in the stored MAC address list, and when the MAC address of the intersection reaches or exceeds a predetermined number, the third-party client stores from the third-party client. Obtaining, by the correspondence between the MAC address and the wireless network identifier and the connection key, the wireless network identifier and the connection key corresponding to the MAC address in the intersection;
  • the third party client initiates a connection request to the wireless network of the corresponding MAC address by using at least one pair of the obtained wireless network identifier and the corresponding connection key;
  • the method further includes: the third-party client receiving the connected wireless network device/wireless network Push information sent by the sharer client/server.
  • a server that includes:
  • a first receiving unit configured to receive a first identifier of the selected wireless network sent by the wireless network sharer client
  • a generating unit configured to generate a second identifier and send the same to the wireless network sharer client;
  • a second receiving unit configured to receive a third identifier of the selected wireless network that is sent by the wireless network sharer client;
  • a comparing unit configured to compare the second identifier with the third identifier, and verify and register information of the device of the wireless network when the two are the same.
  • a server that includes:
  • a first receiving unit configured to receive a first identifier of the selected wireless network and a MAC address of the corresponding wireless network device that are sent by the wireless network sharer client;
  • a generating unit configured to generate a second identifier and send the same to the wireless network sharer client;
  • a second receiving unit configured to receive, by the wireless network sharer client, the third identifier of the selected wireless network and a MAC address of the corresponding wireless network device;
  • the comparing unit is configured to compare the second identifier with the third identifier, and compare the MAC address of the wireless network device corresponding to the first identifier with the MAC address of the wireless network device corresponding to the third identifier, and pass the verification when the comparison results are the same.
  • a wireless network sharer client including:
  • a first acquiring unit configured to acquire a first identifier of the wireless network selected by the wireless network sharer terminal in the scanned/stored wireless network list, and send the first identifier to the server;
  • a fifth receiving unit configured to receive, by the wireless network sharer client, a second identifier sent by the server
  • a second acquiring unit configured to acquire a wireless network list updated by the wireless network sharer mobile terminal, and send the selected third identifier of the wireless network to the server.
  • a wireless network sharer client including:
  • a first acquiring unit configured to acquire a first identifier of the wireless network selected by the wireless network sharer terminal in the scanned/stored wireless network list and a MAC address of the corresponding wireless network device, and send the MAC address to the server;
  • a fifth receiving unit configured to receive, by the wireless network sharer client, a second identifier sent by the server and a MAC address of the corresponding wireless network device;
  • a second acquiring unit configured to acquire a wireless network list updated by the wireless network sharer mobile terminal, and send the selected third identifier of the wireless network and a MAC address of the corresponding wireless network device to the server.
  • a third-party client that includes:
  • a third acquiring unit configured to obtain, when the third-party terminal enters the wireless shared network area, the MAC address of the device broadcast by the wireless shared network;
  • a fourth obtaining unit configured to compare the obtained MAC address with a MAC address in the stored MAC address list, and when the obtained MAC address is in the stored MAC address list, the stored MAC address and the wireless network Obtaining a corresponding wireless network identifier in the corresponding relationship of the identifier;
  • the requesting unit by using the obtained wireless network identifier, to initiate a connection request to the wireless network corresponding to the MAC address;
  • a seventh receiving unit configured to receive the push information sent by the connected wireless network device/wireless network sharer client/server.
  • a third-party client that includes:
  • a third acquiring unit configured to obtain, when the third-party terminal enters the wireless shared network area, the MAC address of the device broadcast by the wireless shared network;
  • a fourth obtaining unit configured to compare the obtained MAC address with a MAC address in the stored MAC address list, and when the obtained MAC address is in the stored MAC address list, the third-party client stores from Obtaining a corresponding wireless network identifier and a connection key in the correspondence between the MAC address and the wireless network identifier and the connection key;
  • the requesting unit by using the obtained wireless network identifier and the connection key, to initiate a connection request to the wireless network corresponding to the MAC address;
  • a seventh receiving unit configured to receive the push information sent by the connected wireless network device/wireless network sharer client/server.
  • a third-party client that includes:
  • a third acquiring unit configured to obtain a first set of device MAC addresses broadcast by the wireless shared network when the third-party terminal enters the wireless shared network area;
  • a fourth acquiring unit configured to compare the obtained first set of MAC addresses with the second set of MAC addresses in the stored MAC address list of the same wireless network shared area, when the MAC address of the intersection meets or exceeds a predetermined number And obtaining, by the third-party client, the wireless network identifier corresponding to the MAC address in the intersection from the correspondence between the stored MAC address and the wireless network identifier;
  • a requesting unit configured to initiate a connection request to the wireless network corresponding to the MAC address by using at least one of the obtained wireless network identifiers
  • a seventh receiving unit configured to receive the push information sent by the connected wireless network device/wireless network sharer client/server.
  • a third-party client that includes:
  • a third acquiring unit configured to obtain a first set of device MAC addresses broadcast by the wireless shared network when the third-party terminal enters the wireless shared network area;
  • a fourth obtaining unit configured to compare the obtained first set of MAC addresses with a second set of MAC addresses in the stored MAC address list, and when the MAC address of the intersection reaches or exceeds a predetermined number, the third-party client Obtaining a wireless network identifier and a connection key corresponding to the MAC address in the intersection from the correspondence between the stored MAC address and the wireless network identifier and the connection key;
  • a requesting unit configured to initiate a connection request to the wireless network of the corresponding MAC address by using at least one pair of the obtained wireless network identifier and the corresponding connection key;
  • a seventh receiving unit configured to receive the push information sent by the connected wireless network device/wireless network sharer client/server.
  • the embodiment of the present application can set the push timing of information to be associated with the establishment of a specific connection.
  • FIG. 1 is a flowchart of an embodiment of a method for implementing information push according to the present application
  • FIG. 2 is a flowchart of an embodiment of a method for implementing information push according to the present application
  • FIG. 3 is a flowchart of an embodiment of a method for implementing information push according to the present application.
  • FIG. 4 is a flowchart of an embodiment of a method for implementing information push according to the present application.
  • FIG. 5 is a flowchart of an embodiment of a method for implementing information push according to the present application.
  • FIG. 6 is a flowchart of an embodiment of a method for implementing information push according to the present application.
  • FIG. 7 is a flowchart of an embodiment of a method for implementing information push according to the present application.
  • FIG. 8 is a flowchart of an embodiment of a method for implementing information push according to the present application.
  • FIG. 9 is a flowchart of an embodiment of a method for implementing information push according to the present application.
  • FIG. 10 is a flowchart of an embodiment of a method for implementing information push according to the present application.
  • FIG. 11 is a flowchart of an embodiment of a method for implementing information push according to the present application.
  • FIG. 13 is a block diagram of an embodiment of a server for implementing information push according to the present application.
  • FIG. 14 is a block diagram of an embodiment of a server for implementing information push according to the present application.
  • 15 is a block diagram of an embodiment of a wireless network sharer client implementing information push in the present application
  • 16 is a block diagram of an embodiment of a wireless network sharer client implementing information push in the present application
  • 17 is a block diagram of an embodiment of a third party client implementing information push in the present application.
  • the embodiment of the present application provides a method, a server, a sharer client, and a third-party client for implementing information push.
  • connection involved in the present application may include a communication connection in a short-range wireless communication mode, such as Bluetooth, IrDA, WLAN (WI-FI or WLAN, mostly using the 802.11 series protocol), and WIFI direct connection ( Communication technologies such as Wi-Fi Direct), Ultra Wide Band, Zigbee, and Near Field Communication (NFC).
  • a short-range wireless communication mode such as Bluetooth, IrDA, WLAN (WI-FI or WLAN, mostly using the 802.11 series protocol)
  • WIFI direct connection Communication technologies such as Wi-Fi Direct), Ultra Wide Band, Zigbee, and Near Field Communication (NFC).
  • the wireless communication method of WIFI is exemplified, and the WIFI sharing is taken as an example for illustration.
  • the establishment of a WIFI network or the owner of a WIFI network may share the WIFI network to other terminals in a paid or unpaid form.
  • the WIFI network may be implemented by a WIFI device, such as a router with a WIFI function.
  • WIFI sharer the above-mentioned WIFI network creator or WIFI network owner sharing the WIFI network and the main body of similar situations are collectively referred to as WIFI sharer.
  • the application also relates to a network platform, which can manage WIFI sharers and WIFI users through a server.
  • the information push implemented by the application may be a preset page, link, short message, multimedia file, etc. of the WIFI sharer.
  • the WIFI sharer can join the network platform by using the process shown in FIG. 1 and set the to-be pushed information to send the push information to the third-party terminal after receiving the message that the third-party terminal accesses the WIFI network successfully:
  • the WIFI sharer client obtains the first identifier of the selected WIFI network in the scanned/stored WIFI network list of the WIFI sharer terminal and sends the first identifier to the server.
  • the WIFI sharer can hold the terminal, which can be a terminal device such as a mobile terminal or a desktop computer.
  • the terminal can be a terminal device such as a mobile terminal or a desktop computer.
  • an application can be installed on the terminal, in order to facilitate the WIFI sharer to communicate with the server of the network platform.
  • the application can be, for example, an application installed on a terminal operating system or a web page. Subsequent clients can focus on terminals that have an application installed or can open a web page to achieve the same functionality.
  • the WIFI sharer client can obtain a list of WIFI networks scanned/stored by the terminal on which it is installed.
  • the WIFI sharer may select a specific WIFI network in the WIFI network list on the client interface, such as an operation such as a mouse click, a scroll wheel, or a touch selection.
  • the WIFI sharer client can obtain the first identifier of the selected WIFI network, and the identifier is usually, for example, a Service Set Identifier (SSID) of the WIFI network.
  • SSID Service Set Identifier
  • the WIFI sharer client can send the selected first identity to the server.
  • the selected WIFI network is generally a WIFI network established or owned by a WIFI sharer, for example, a wireless router with a certain coverage of the WIFI sharer, and provides access sharing of the wireless router.
  • the WIFI sharer can log in to the client by using a user account and a password.
  • the user account may be pre-registered, and details are not described herein.
  • the WIFI sharer client sends the first identifier to the server, and may be sent through the WIFI network connected to the WIFI sharer mobile terminal, or may be sent through a communication network such as 2G, 3G, or 4G, which is not limited herein.
  • S110 The server generates a second identifier and sends the identifier to the WIFI sharer client.
  • the server may trigger the generation of the second identifier.
  • the character sequence may be obtained by using a hash algorithm based on the first identifier, or may be a random character sequence generated according to a predetermined rule.
  • the character sequence can be used as the second identifier, and the identifier meets the requirements of the normal SSID.
  • the maximum length is not more than 32 characters, and the letters must be letters, numbers, or a combination thereof.
  • the server can send the generated second identifier to the WIFI sharer client.
  • the WIFI sharer changes the first identifier of the WIFI network to a third identifier based on the second identifier.
  • the WIFI sharer can manually change the first identifier of the WIFI network to a third identifier, for example, by using a terminal login. WIFI device.
  • the modification may be that the terminal logs in to the WIFI device, and the SSID is changed on the WIFI device configuration page. It may be modified based on the second identity generated by the server and sent to the WIFI sharer client. Ideally, the modified third identifier is a second identifier generated by the server and sent to the WIFI sharer client.
  • the WIFI sharer client obtains a WIFI network list updated by the WIFI sharer mobile terminal, and sends the selected third identifier of the WIFI network to the server.
  • the WIFI sharer mobile terminal can update the list of WIFI networks it detects.
  • the updated WIFI network list may include the third identified WIFI network.
  • the WIFI sharer may select a WIFI network corresponding to the third identifier in the WIFI network list on the client interface.
  • the WIFI sharer client may receive a specific WIFI network in the WIFI network list selected by the WIFI sharer on the client interface.
  • the WIFI sharer client may send the selected third identifier of the WIFI network to the server.
  • S140 The server compares the second identifier with the third identifier, and verifies and registers information of the device of the WIFI network when the two are the same.
  • the server may compare the third identifier with the foregoing second identifier generated by the server. When the comparison result is the same, it may be determined that the WIFI sharer has control or ownership of the WIFI network corresponding to the third identifier (or the second identifier), thereby allowing the WIFI sharer to share the WIFI network to the The network platform. Conversely, if the third identifier is different from the second identifier, the WIFI sharer generally does not have control or ownership of the WIFI network corresponding to the third identifier, and thus may not pass the verification of the shared network. .
  • the information of the WIFI network device may be a Media Access Control (MAC) address of the WIFI network device.
  • the MAC address is unique and can be used to distinguish it from other WIFI devices.
  • the server may register the information of the WIFI network device by using the WIFI sharer client to send the information of the WIFI network device to the server, or may be directly obtained by the server from the WIFI network device, or Directly sent by the WIFI network device to the server.
  • the method further includes:
  • the WIFI sharer sends a push message to the third-party terminal after receiving the message that the third-party terminal accesses the WIFI network successfully.
  • the object of the setting may be setting the WIFI sharer client, or setting a WIFI network device. That is, after the WIFI network sharer sets the message that the third party terminal accesses the WIFI network successfully, the WIFI network sharer client/the WIFI network device sends the push information to the third party terminal.
  • execution order of the above S150 and the above S100 to S140 is not particularly limited.
  • the WIFI sharer can also join the network platform by using the process shown in FIG. 2 and set the to-be-pushed information to send the push information to the third-party terminal after receiving the message that the third-party terminal accesses the WIFI network successfully:
  • the WIFI sharer client obtains the first identifier of the WIFI network selected by the WIFI sharer terminal in the scanned/stored WIFI network list and the MAC address of the corresponding WIFI device, and sends the MAC address to the server.
  • the server in addition to transmitting the first identifier of the selected WIFI network, the MAC address of the corresponding WIFI device is also sent. In this way, the server can know the first identifier of the selected WIFI network and the MAC address of the corresponding WIFI device.
  • S210 The server generates a second identifier and sends the identifier to the WIFI sharer client.
  • the server may trigger the generation of the second identifier.
  • the character sequence may be obtained by using a hash algorithm based on the first identifier, or may be a random character sequence generated according to a predetermined rule.
  • the character sequence can be used as the second identifier, and the identifier meets the requirements of the usual SSID.
  • the maximum length is not more than 32 characters, and the letters must be letters, numbers, or a combination thereof.
  • the WIFI sharer changes the first identifier of the WIFI network to a third identifier based on the second identifier.
  • the WIFI sharer can manually change the first identifier of the WIFI network to the third identifier, for example, by logging in to the WIFI device through the terminal.
  • the modification may be that the terminal logs in to the WIFI device, and the SSID is changed on the WIFI device configuration page. It may be modified based on the second identity generated by the server and sent to the WIFI sharer client.
  • the modified third identifier is a second identifier generated by the server and sent to the WIFI sharer client.
  • the WIFI sharer client obtains a WIFI network list updated by the WIFI network sharer mobile terminal, and sends the selected third identifier of the WIFI network and the MAC address of the corresponding WIFI device to the server.
  • the WIFI sharer client in S230 may send the third identifier of the selected WIFI network to the server, and may also select the MAC address of the WIFI device corresponding to the WIFI network. Send to the server. In this way, the server can know the third identifier of the selected WIFI network and the MAC address of the corresponding WIFI device.
  • S240 The server compares the second identifier with the third identifier, and compares the MAC address of the WIFI network device corresponding to the first identifier with the MAC address of the WIFI device corresponding to the third identifier, and passes the verification when the comparison results are the same.
  • the method may further include:
  • the WIFI network sharing client sends the push information to the server, and notifies the server to send the push information to the third-party terminal after receiving the message that the third-party terminal accesses the WIFI network successfully.
  • the WIFI sharer may also join the network platform through the process shown in FIG. 3 and set the to-be-pushed information to send the push information to the third-party terminal after receiving the message that the third-party terminal accesses the WIFI network successfully:
  • the WIFI sharer client obtains the first identifier of the WIFI network selected by the WIFI network sharer terminal in the scanned/stored WIFI network list and the MAC address of the corresponding WIFI network device, and sends the MAC address to the server;
  • S310 The server generates a second identifier and sends the identifier to the WIFI network sharer client.
  • the WIFI network sharer changes the first identifier of the WIFI network to a third identifier based on the second identifier.
  • the WIFI network sharer client obtains a WIFI network list updated by the WIFI network sharer mobile terminal, and sends the third identifier of the selected WIFI network and the MAC address of the corresponding WIFI network device to the server;
  • S340 The server compares the second identifier with the third identifier, and compares the MAC address of the WIFI network device corresponding to the first identifier with the MAC address of the WIFI network device corresponding to the third identifier, and passes the verification when the comparison result is the same;
  • the method further includes:
  • the WIFI network sharer sets the WIFI network sharer client/the WIFI network device to send the push information to the third party terminal after receiving the message that the third party terminal accesses the WIFI network successfully.
  • the WIFI sharer may also join the network platform through the process shown in FIG. 4 and set the to-be-pushed information to receive the message that the third-party terminal accesses the WIFI network successfully, and then send the push information to the third-party terminal:
  • the WIFI sharer client obtains the first identifier of the WIFI network selected by the WIFI network sharer terminal in the scanned/stored WIFI network list, and sends the first identifier to the server;
  • S410 The server generates a second identifier and sends the identifier to the WIFI network sharer client.
  • the WIFI network sharer changes the first identifier of the WIFI network to a third identifier based on the second identifier.
  • the WIFI network sharer client obtains a WIFI network list updated by the WIFI network sharer mobile terminal And sending a third identifier of the selected WIFI network to the server;
  • S440 The server compares the second identifier with the third identifier, and verifies and registers information of the device of the WIFI network when the two are the same;
  • the method further includes:
  • the WIFI network sharing client sends the push information to the server, and notifies the server to send the push information to the third party terminal after receiving the message that the third party terminal accesses the WIFI network successfully.
  • FIG. 5 The following describes the flow of the server-based process in the embodiment of FIG. 1 and FIG. 4, which is shown in FIG. 5, and includes:
  • S500 The server receives the first identifier of the selected WIFI network sent by the WIFI network sharer client.
  • S510 The server generates a second identifier and sends the identifier to the WIFI network sharer client.
  • S520 The server receives the third identifier of the selected WIFI network sent by the WIFI network sharer client.
  • S530 The server compares the second identifier with the third identifier, and verifies and registers information of the device of the WIFI network when the two are the same.
  • the method of FIG. 5 may further include:
  • S540 The server receives the push information sent by the WIFI network sharer client, and sends the push information to the third-party terminal after receiving a message that the third-party terminal accesses the WIFI network successfully.
  • FIG. 2 The flow of the steps of the server as the main body in the embodiment of the present application is shown in FIG. 2 and FIG. 3, which is shown in FIG.
  • the server receives the first identifier of the selected WIFI network sent by the WIFI network sharer client and the MAC address of the corresponding WIFI network device;
  • S610 The server generates a second identifier and sends the identifier to the WIFI network sharer client.
  • S620 The server receives the third identifier of the selected WIFI network sent by the WIFI network sharer client and the MAC address of the corresponding WIFI network device.
  • S630 The server compares the second identifier with the third identifier, and compares the MAC address of the first identifier and the corresponding WIFI network device with the MAC address of the WIFI network device corresponding to the third identifier, and passes the verification when the comparison result is the same.
  • method of FIG. 6 may further include:
  • S640 The server receives the push information sent by the WIFI network sharer client, and sends the push information to the third party terminal after receiving the message that the third party terminal accesses the WIFI network successfully.
  • FIG. 7 which includes:
  • the WIFI network sharer client obtains the first identifier of the selected WIFI network in the scanned/stored WIFI network list of the WIFI network sharer terminal and sends the first identifier to the server.
  • the WIFI network sharer client receives the second identifier sent by the server.
  • the WIFI network sharer client obtains a WIFI network list updated by the WIFI network sharer mobile terminal, and sends the selected third identifier of the WIFI network to the server.
  • the method may further include:
  • the WIFI network sharer client receives the following setting: after receiving the message that the third party terminal accesses the WIFI network successfully, sending the push information to the third party terminal.
  • the WIFI network sharer client obtains the first identifier of the WIFI network selected by the WIFI network sharer terminal in the scanned/stored WIFI network list and the MAC address of the corresponding WIFI network device, and sends the MAC address to the server.
  • the WIFI network sharer client receives the second identifier sent by the server and the MAC address of the corresponding WIFI network device.
  • the WIFI network sharer client obtains the WIFI network list updated by the WIFI network sharer mobile terminal, and sends the selected third identifier of the WIFI network and the MAC address of the corresponding WIFI network device to the server.
  • the method may further include:
  • the WIFI network sharer client receives the following setting: after receiving the message that the third party terminal accesses the WIFI network successfully, sending the push information to the third party terminal.
  • the process for the server to generate the second identifier may include:
  • Manner 1 The server obtains a sequence of characters as a second identifier by using a hash algorithm based on the received first identifier;
  • Manner 2 The server generates a random character sequence as a second identifier according to a predetermined rule.
  • a connection key may be set.
  • the connection key of the selected WIFI network sent by the WIFI network sharer client to the server.
  • Received by the server The connection key of the selected WIFI network sent by the WIFI network sharer client may be saved.
  • a connection key may be set, and the server may verify the correctness of the key.
  • the WIFI network sharer can choose to connect to the selected WIFI shared network and can enter the connection key at the prompt.
  • the WIFI network sharer client obtains a connection key that connects the selected WIFI network.
  • the WIFI network sharer client may send the acquired connection key to the server, and further The server can save the connection key.
  • the server may send the connection key of the WIFI network to the third party terminal after the third party terminal enters the WIFI network coverage area, or send the connection key to the third party terminal when receiving the request of the third party terminal. In this way, the subsequent third party terminal can use the connection key to access the WIFI network.
  • the above embodiment describes how to set the push timing of information to be associated with the establishment of a particular connection.
  • the method for connecting to the shared network and receiving the push information when the third party terminal enters the shared network in the present application is described below with reference to FIG. 9 :
  • S900 The third-party terminal enters the WIFI shared network area, and the third-party client obtains the MAC address of the device broadcasted by the WIFI shared network.
  • an application can be installed on the third-party client.
  • the application can be, for example, an application installed on a terminal operating system or a web page.
  • the third-party terminal may focus on a terminal that has an application installed or can open a webpage to implement a similar function.
  • the third-party terminal can obtain the information of the location by means of a positioning system such as a satellite positioning system or a base station positioning system. In this way, in the case that the coverage area is preset for the WIFI network device, the third-party terminal can determine the coverage area of the WIFI network device through the positioning system.
  • a positioning system such as a satellite positioning system or a base station positioning system.
  • the third-party terminal can scan the received wireless signal when the WIFI function is enabled, and can obtain the MAC address of the WIFI network device from the broadcast signal.
  • the third-party client compares the obtained MAC address with the MAC address in the stored MAC address list, and when the obtained MAC address is in the stored MAC address list, the third-party client reads the MAC address from the stored MAC address.
  • the corresponding WIFI network identifier is obtained in the correspondence between the address and the WIFI network identifier.
  • the third-party client may pre-receive and store the WIFI network list and the correspondence between the MAC address and the WIFI identifier from the server, and store the same in the third-party client; or the third-party terminal enters the WIFI.
  • the third-party client sends the geographic location to the server, and the server sends the MAC address list of the area where the third-party client is located and the correspondence between the MAC address and the WIFI network identifier to the third party according to the geographical location of the third-party client.
  • the client, and then the third party client stores the MAC address list and MAC address with the WIFI network standard Correspondence of knowledge.
  • the third-party client initiates a connection request to the WIFI network corresponding to the MAC address by using the obtained WIFI network identifier.
  • the third-party client uses the obtained WIFI network identifier to successfully connect to the WIFI network corresponding to the MAC address, and further includes: the third-party client receiving the push information sent by the WIFI network device, or The third-party client receives the push information sent by the WIFI network device via the WIFI network sharer client.
  • the WIFI shared network may not set the connection key, and may choose not to broadcast the SSID.
  • the WIFI shared network cannot be directly connected, thereby preventing unauthorized third-party terminals from accessing the WIFI shared network.
  • the third-party terminal can query the obtained MAC address list by using the received broadcast MAC address to obtain the WIFI network identifier, that is, the SSID, so that the SSID is used to connect the SSID in a subsequent step. WIFI network.
  • the above embodiment describes how to set the push timing of information to be associated with the establishment of a particular connection.
  • a method for connecting to a shared network and receiving push information when a third party terminal enters the shared network in the present application is described below with reference to FIG. 10:
  • S1000 The third-party terminal enters the WIFI shared network area, and the third-party client obtains the MAC address of the device broadcasted by the WIFI shared network.
  • an application can be installed on the third-party client.
  • the application can be, for example, an application installed on a terminal operating system or a web page.
  • the third-party terminal may focus on a terminal that has an application installed or can open a webpage to implement a similar function.
  • the third-party client compares the obtained MAC address with the MAC address in the stored MAC address list, and when the obtained MAC address is in the stored MAC address list, the third-party client reads the MAC address from the stored MAC address.
  • the corresponding WIFI network identifier and connection key are obtained in the correspondence between the address and the WIFI network identifier and the connection key.
  • the third-party client may pre-receive and store the WIFI network list and the correspondence between the MAC address and the WIFI identifier from the server, and store the same in the third-party client; or the third-party terminal enters the WIFI.
  • the third-party client sends the geographic location to the server, and the server sends the MAC address list of the area where the third-party client is located and the correspondence between the MAC address and the WIFI network identifier to the third party according to the geographical location of the third-party client.
  • the client, and then the third party client stores the correspondence between the MAC address list and the MAC address and the WIFI network identifier.
  • connection key may also be obtained and stored by the third-party client from the server in advance, for example, acquired and stored from the server together with the MAC address list; or the third-party terminal may enter the WIFI sharing.
  • the third-party client sends the geographic location to the server, and the server will be the third according to the geographic location of the third-party client.
  • the connection key corresponding to the MAC address of the area where the client is located is sent to the third-party client, and the third-party client can store the connection key corresponding to the MAC address.
  • S1020 The third-party client initiates a connection request to the WIFI network corresponding to the MAC address by using the obtained WIFI network identifier and the connection key.
  • the third-party client uses the obtained WIFI network identifier to successfully connect to the WIFI network corresponding to the MAC address, and further includes: the third-party client receiving the push information sent by the WIFI network device, or The third-party client receives the push information sent by the WIFI network device via the WIFI network sharer client.
  • the above embodiment describes how to set the push timing of information to be associated with the establishment of a particular connection.
  • the method for connecting to the shared network and receiving the push information when the third party terminal enters the shared network in the present application is described below with reference to FIG. 11 :
  • the third-party terminal enters the WIFI shared network area, and the third-party client obtains the first set of device MAC addresses of the WIFI shared network broadcast;
  • the first set of MAC addresses obtained by the third-party client is compared with the second set of MAC addresses in the stored MAC address list of the same WIFI network shared area.
  • the third-party client obtains the WIFI network identifier corresponding to the MAC address in the intersection from the correspondence between the stored MAC address and the WIFI network identifier;
  • the third-party client initiates a connection request to the WIFI network corresponding to the MAC address by using at least one of the obtained WIFI network identifiers.
  • the third party client receives the push information sent by the connected WIFI network device/WIFI network sharer client.
  • the above embodiment describes how to set the push timing of information to be associated with the establishment of a particular connection.
  • a method for connecting to a shared network and receiving push information when a third party terminal enters the shared network in the present application is described below with reference to FIG. 12:
  • S1200 The third-party terminal enters the WIFI shared network area, and the third-party client obtains the first set of device MAC addresses of the WIFI shared network broadcast;
  • S1210 The first set of MAC addresses obtained by the third-party client is compared with the second set of MAC addresses in the stored MAC address list. When the MAC address of the intersection meets or exceeds the predetermined number, the third-party client Obtaining, by the correspondence between the stored MAC address and the WIFI network identifier and the connection key, the WIFI network identifier and the connection key corresponding to the MAC address in the intersection;
  • the third-party client initiates a connection request to the WIFI network of the corresponding MAC address by using at least one pair of the obtained WIFI network identifier and the connection key;
  • the third party client receives the push information sent by the connected WIFI network device/WIFI network sharer client/server.
  • the MAC address list stored by the third-party client and the correspondence between the MAC address and the WIFI network identifier may include:
  • the third-party client When the third-party terminal enters the WIFI shared network area, the third-party client sends the geographic location to the server, and the server obtains the MAC address list, the MAC address, and the WIFI network identifier of the area where the third-party client is located according to the geographical location of the third-party client. The corresponding relationship is sent to the third-party client, and the third-party client stores the correspondence between the MAC address list and the MAC address and the WIFI network identifier.
  • connection key stored by the third-party client may include:
  • connection key obtained and stored by the third party client from the server in advance
  • the third-party client When the third-party terminal enters the WIFI shared network area, the third-party client sends the geographic location to the server, and the server sends the connection key corresponding to the MAC address of the area where the third-party client is located to the third-party client according to the geographical location of the third-party client. And the third party client stores the connection key corresponding to the MAC address.
  • FIG. 13 may include:
  • the first receiving unit 1301 is configured to receive a first identifier of the selected wireless network that is sent by the wireless network sharer client;
  • the generating unit 1302 is configured to generate a second identifier and send the identifier to the wireless network sharer client.
  • a second receiving unit 1303, configured to receive a third identifier of the selected wireless network that is sent by the wireless network sharer client;
  • the comparing unit 1304 is configured to compare the second identifier with the third identifier, and verify and register information of the device of the wireless network when the two are the same.
  • a server that can include:
  • the first receiving unit 1301 is configured to receive a first identifier of the selected wireless network and a MAC address of the corresponding wireless network device that are sent by the wireless network sharer client;
  • the generating unit 1302 is configured to generate a second identifier and send the identifier to the wireless network sharer client.
  • the second receiving unit 1303 is configured to receive, by the wireless network sharer client, the selected third identifier of the wireless network and a MAC address of the corresponding wireless network device;
  • the comparing unit 1304 is configured to compare the second identifier with the third identifier, and compare the MAC address of the first identifier corresponding to the wireless network device with the MAC address of the third identifier corresponding wireless network device, and pass the verification when the comparison results are the same.
  • the server shown in FIG. 13 may further include:
  • the third receiving unit 1305 is configured to receive the push information sent by the wireless network sharer client.
  • the notification receiving unit 1306 is configured to receive the following notification: the server sends the push information to the third-party terminal after receiving a message that the third-party terminal accesses the wireless network successfully.
  • the first obtaining unit 1501 is configured to acquire a first identifier of the wireless network selected by the wireless network sharer terminal in the scanned/stored wireless network list, and send the first identifier to the server;
  • the fifth receiving unit 1502 is configured to receive a second identifier sent by the server.
  • the second obtaining unit 1503 is configured to acquire a wireless network list updated by the wireless network sharer mobile terminal, and send the selected third identifier of the wireless network to the server.
  • wireless network sharer client which can include:
  • the first obtaining unit 1501 is configured to acquire a first identifier of the wireless network selected by the wireless network sharer terminal in the scanned/stored wireless network list and a MAC address of the corresponding wireless network device, and send the MAC address to the server;
  • the fifth receiving unit 1502 is configured to receive, by the wireless network sharer client, a second identifier sent by the server and a MAC address of the corresponding wireless network device;
  • the second obtaining unit 1503 is configured to acquire a wireless network list updated by the wireless network sharer mobile terminal, and send the selected third identifier of the wireless network and a MAC address of the corresponding wireless network device to the server.
  • the wireless network sharing client shown in FIG. 15 further includes, as shown in FIG.
  • the sixth receiving unit 1601 is configured to receive the following setting: receiving the success of the third-party terminal accessing the wireless network Sending push information to the third party terminal after the message is
  • the notification unit 1602 is configured to send the push information to the server, and notify the server to send the push information to the third-party terminal after receiving a message that the third-party terminal accesses the wireless network successfully.
  • the third obtaining unit 1701 is configured to obtain, when the third-party terminal enters the wireless shared network area, the MAC address of the device broadcast by the wireless shared network;
  • the fourth obtaining unit 1702 is configured to compare the obtained MAC address with the MAC address in the stored MAC address list, and when the obtained MAC address is in the stored MAC address list, the stored MAC address and the wireless Obtaining a corresponding wireless network identifier in the correspondence between the network identifiers;
  • the requesting unit 1703 by using the obtained wireless network identifier, initiates a connection request to the wireless network corresponding to the MAC address;
  • the seventh receiving unit 1704 is configured to receive the push information sent by the connected wireless network device/wireless network sharer client/server.
  • third-party client that can include:
  • the third obtaining unit 1701 is configured to obtain, when the third-party terminal enters the wireless shared network area, the MAC address of the device broadcast by the wireless shared network;
  • the fourth obtaining unit 1702 is configured to compare the obtained MAC address with the MAC address in the stored MAC address list, and when the obtained MAC address is in the stored MAC address list, the third-party client Obtaining a corresponding wireless network identifier and a connection key in a correspondence between the stored MAC address and the wireless network identifier and the connection key;
  • the requesting unit 1703 by using the obtained wireless network identifier and the connection key, initiate a connection request to the wireless network corresponding to the MAC address;
  • the seventh receiving unit 1704 is configured to receive the push information sent by the connected wireless network device/wireless network sharer client/server.
  • third-party client that can include:
  • the third obtaining unit 1701 is configured to obtain, when the third-party terminal enters the wireless shared network area, the first set of device MAC addresses broadcast by the wireless shared network;
  • the fourth obtaining unit 1702 is configured to compare the obtained first set of MAC addresses with the second set of MAC addresses in the stored MAC address list of the same wireless network shared area, when the MAC address of the intersection meets or exceeds a predetermined number. And obtaining, by the third-party client, the wireless network identifier corresponding to the MAC address in the intersection from the correspondence between the stored MAC address and the wireless network identifier;
  • the requesting unit 1703 is configured to initiate a connection request to the wireless network corresponding to the MAC address by using at least one of the obtained wireless network identifiers;
  • the seventh receiving unit 1704 is configured to receive the push information sent by the connected wireless network device/wireless network sharer client/server.
  • third-party client that can include:
  • the third obtaining unit 1701 is configured to obtain, when the third-party terminal enters the wireless shared network area, the first set of device MAC addresses broadcast by the wireless shared network;
  • the fourth obtaining unit 1702 is configured to compare the obtained first set of MAC addresses with the second set of MAC addresses in the stored MAC address list, and when the MAC address of the intersection reaches or exceeds a predetermined number, the third party The client obtains the wireless network identifier and the connection key corresponding to the MAC address in the intersection from the correspondence between the stored MAC address and the wireless network identifier and the connection key;
  • the requesting unit 1703 is configured to initiate a connection request to the wireless network of the corresponding MAC address by using at least one pair of the obtained wireless network identifier and the corresponding connection key;
  • the seventh receiving unit 1704 is configured to receive the push information sent by the connected wireless network device/wireless network sharer client/server.
  • PLD Programmable Logic Device
  • FPGA Field Programmable Gate Array
  • HDL Hardware Description Language
  • the controller can be implemented in any suitable manner, for example, the controller can take the form of, for example, a microprocessor or processor and a computer readable medium storing computer readable program code (eg, software or firmware) executable by the (micro)processor.
  • computer readable program code eg, software or firmware
  • examples of controllers include, but are not limited to, the following microcontrollers: ARC 625D, Atmel AT91SAM, The Microchip PIC18F26K20 and the Silicone Labs C8051F320, the memory controller can also be implemented as part of the memory's control logic.
  • the controller can be logically programmed by means of logic gates, switches, ASICs, programmable logic controllers, and embedding.
  • Such a controller can therefore be considered a hardware component, and the means for implementing various functions included therein can also be considered as a structure within the hardware component.
  • a device for implementing various functions can be considered as a software module that can be both a method of implementation and a structure within a hardware component.
  • the system, device, module or unit illustrated in the above embodiments may be implemented by a computer chip or an entity, or by a product having a certain function.
  • the present application can be implemented by means of software plus a necessary general hardware platform. Based on such understanding, the technical solution of the present application may be embodied in the form of a software product in essence or in the form of a software product, which may be stored in a storage medium such as a ROM/RAM or a disk. , an optical disk, etc., includes instructions for causing a computer device (which may be a personal computer, server, or network device, etc.) to perform the methods described in various embodiments of the present application or portions of the embodiments.
  • a computer device which may be a personal computer, server, or network device, etc.
  • This application can be used in a variety of general purpose or special purpose computer system environments or configurations.
  • the application can be described in the general context of computer-executable instructions executed by a computer, such as a program module.
  • program modules include routines, programs, objects, components, data structures, and the like that perform particular tasks or implement particular abstract data types.
  • the present application can also be practiced in distributed computing environments where tasks are performed by remote processing devices that are connected through a communication network.
  • program modules can be located in both local and remote computer storage media including storage devices.

Abstract

本申请实施例公开了一种实现信息推送的方法,包括:无线网络共享者客户端获取无线网络共享者终端在扫描/存储的无线网络列表中被选定的无线网络的第一标识并发送至服务器;服务器生成第二标识并发送至所述无线网络共享者客户端;所述无线网络共享者基于所述第二标识将所述无线网络的第一标识更改为第三标识;所述无线网络共享者客户端获取无线网络共享者移动终端更新的无线网络列表并将其中被选定的所述无线网络的第三标识发送至服务器;所述服务器比较第二标识与第三标识,并在两者相同时通过验证并登记该无线网络的设备的信息。

Description

实现信息推送的方法、服务器、共享者客户端、第三方客户端 技术领域
本申请涉及通信技术领域,特别涉及一种实现信息推送的方法、服务器、共享者客户端、第三方客户端。
背景技术
现有技术中,实现信息推送,往往是服务器通过轮询的方式将信息发送至客户端。具体的,服务器每间隔一定的时间检测与客户端的连接,或者定时与客户端建立连接,从而在存在有效连接的情况下,服务器将产生的信息发送至客户端。
在实现本申请过程中,发明人发现现有技术中至少存在如下问题:
现有技术的推送信息的时机不能与特定连接的建立相关联。
发明内容
本申请实施例的目的是提供一种实现信息推送的方法、服务器、共享者客户端、第三方客户端,以将信息的推送时机与特定连接的建立相关联。
为解决上述技术问题,本申请实施例提供一种实现信息推送的方法、服务器、共享者客户端、第三方客户端,是这样实现的:
一种实现信息推送的方法,包括:
无线网络共享者客户端获取无线网络共享者终端在扫描/存储的无线网络列表中被选定的无线网络的第一标识并发送至服务器;
服务器生成第二标识并发送至所述无线网络共享者客户端;
所述无线网络共享者基于所述第二标识将所述无线网络的第一标识更改为第三标识;
所述无线网络共享者客户端获取无线网络共享者移动终端更新的无线网络列表并将其中被选定的所述无线网络的第三标识发送至服务器;
所述服务器比较第二标识与第三标识,并在两者相同时通过验证并登记该无线网络的设备的信息;
所述方法还包括:
所述无线网络共享者设置接收到第三方终端接入所述无线网络成功的消息后所述无线网络共享者客户端/所述无线网络设备发送推送信息至所述第三方终端。
一种实现信息推送的方法,包括:
无线网络共享者客户端获取无线网络共享者终端在扫描/存储的无线网络列表中被选定的无线网络的第一标识并发送至服务器;
服务器生成第二标识并发送至所述无线网络共享者客户端;
所述无线网络共享者基于所述第二标识将所述无线网络的第一标识更改为第三标识;
所述无线网络共享者客户端获取无线网络共享者移动终端更新的无线网络列表并将其中被选定的所述无线网络的第三标识发送至服务器;
所述服务器比较第二标识与第三标识,并在两者相同时通过验证并登记该无线网络的设备的信息;
所述方法还包括:
所述无线网络共享者客户端将推送信息发送至所述服务器,并通知所述服务器接收到第三方终端接入所述无线网络成功的消息后发送所述推送信息至所述第三方终端。
一种实现信息推送的方法,包括:
无线网络共享者客户端获取无线网络共享者终端在扫描/存储的无线网络列表中被选定的无线网络的第一标识及对应无线网络设备的MAC地址并发送至服务器;
服务器生成第二标识并发送至所述无线网络共享者客户端;
所述无线网络共享者基于所述第二标识将所述无线网络的第一标识更改为第三标识;
所述无线网络共享者客户端获取无线网络共享者移动终端更新的无线网络列表并将其中被选定的所述无线网络的第三标识及对应无线网络设备的MAC地址发送至服务器;
所述服务器比较第二标识与第三标识,并比较第一标识对应无线网络设备的MAC地址与第三标识对应无线网络设备的MAC地址,在比较结果均相同时通过验证;
所述方法还包括:
所述无线网络共享者设置接收到第三方终端接入所述无线网络成功的消息后所述无线网络共享者客户端/所述无线网络设备发送推送信息至所述第三方终端。
一种实现信息推送的方法,包括:
无线网络共享者客户端获取无线网络共享者终端在扫描/存储的无线网络列表中被选定的无线网络的第一标识及对应无线网络设备的MAC地址并发送至服务器;
服务器生成第二标识并发送至所述无线网络共享者客户端;
所述无线网络共享者基于所述第二标识将所述无线网络的第一标识更改为第三标识;
所述无线网络共享者客户端获取无线网络共享者移动终端更新的无线网络列表并将其中被选定的所述无线网络的第三标识及对应无线网络设备的MAC地址发送至服务器;
所述服务器比较第二标识与第三标识,并比较第一标识对应无线网络设备的MAC地址 与第三标识对应无线网络设备的MAC地址,在比较结果均相同时通过验证;
所述方法还包括:
所述无线网络共享者客户端将推送信息发送至所述服务器,并通知所述服务器接收到第三方终端接入所述无线网络成功的消息后发送所述推送信息至所述第三方终端。
一种实现信息推送的方法,包括:
服务器接收无线网络共享者客户端发送的被选定无线网络的第一标识;
服务器生成第二标识并发送至所述无线网络共享者客户端;
服务器接收所述无线网络共享者客户端发送的被选定的所述无线网络的第三标识;
所述服务器比较第二标识与第三标识,并在两者相同时通过验证并登记该无线网络的设备的信息。
一种实现信息推送的方法,包括:
服务器接收无线网络共享者客户端发送的被选定无线网络的第一标识及对应无线网络设备的MAC地址;
服务器生成第二标识并发送至所述无线网络共享者客户端;
服务器接收所述无线网络共享者客户端发送的被选定的所述无线网络的第三标识及对应无线网络设备的MAC地址;
所述服务器比较第二标识与第三标识,并比较第一标识对应无线网络设备的MAC地址与第三标识对应无线网络设备的MAC地址,在比较结果均相同时通过验证。
一种实现信息推送的方法,包括:
无线网络共享者客户端获取无线网络共享者终端在扫描/存储的无线网络列表中被选定的无线网络的第一标识并发送至服务器;
所述无线网络共享者客户端接收所述服务器发送的第二标识;
所述无线网络共享者客户端获取无线网络共享者移动终端更新的无线网络列表并将其中被选定的所述无线网络的第三标识发送至服务器。
一种实现信息推送的方法,包括:
无线网络共享者客户端获取无线网络共享者终端在扫描/存储的无线网络列表中被选定的无线网络的第一标识及对应无线网络设备的MAC地址并发送至服务器;
所述无线网络共享者客户端接收所述服务器发送的第二标识及对应无线网络设备的MAC地址;
所述无线网络共享者客户端获取无线网络共享者移动终端更新的无线网络列表并将其中被选定的所述无线网络的第三标识及对应无线网络设备的MAC地址发送至服务器。
一种实现信息推送的方法,包括:
第三方终端进入无线共享网络区域,第三方客户端获得所述无线共享网络广播的设备MAC地址;
第三方客户端将获得的MAC地址与存储的MAC地址列表中的MAC地址进行比对,当获得的MAC地址在所述存储的MAC地址列表中时,所述第三方客户端从存储的MAC地址与无线网络标识的对应关系中获得对应的无线网络标识;
第三方客户端利用所述获得的无线网络标识向所述MAC地址对应的无线网络发起连接请求;
第三方客户端利用所述获得的无线网络标识与所述MAC地址对应的无线网络连接成功后,还包括:接收所述连接的无线网络设备/无线网络共享者客户端/服务器发送的推送信息。
一种实现信息推送的方法,包括:
第三方终端进入无线共享网络区域,第三方客户端获得所述无线共享网络广播的设备MAC地址;
第三方客户端将获得的MAC地址与存储的MAC地址列表中的MAC地址进行比对,当获得的MAC地址在所述存储的MAC地址列表中时,所述第三方客户端从存储的MAC地址与无线网络标识及连接密钥的对应关系中获得对应的无线网络标识和连接密钥;
第三方客户端利用所述获得的无线网络标识和连接密钥向所述MAC地址对应的无线网络发起连接请求;
第三方客户端利用所述获得的无线网络标识与所述MAC地址对应的无线网络连接成功后,还包括:接收所述连接的无线网络设备/无线网络共享者客户端/服务器发送的推送信息。
一种实现信息推送的方法,包括:
第三方终端进入无线共享网络区域,第三方客户端获得所述无线共享网络广播的设备MAC地址第一集合;
第三方客户端将获得的MAC地址第一集合与存储的同一无线网络共享区域的MAC地址列表中的MAC地址第二集合进行比对,当交集中的MAC地址达到或超过预定数量时,所述第三方客户端从存储的MAC地址与无线网络标识的对应关系中获得所述交集中的MAC地址对应的无线网络标识;
第三方客户端利用所述获得的无线网络标识中的至少一个向对应MAC地址的无线网络发起连接请求;
第三方客户端利用所述发起连接请求的无线网络标识与所述MAC地址对应的无线网络连接成功后,还包括:第三方客户端接收所述连接的无线网络设备/无线网络共享者客户端/ 服务器发送的推送信息。
一种实现信息推送的方法,包括:
第三方终端进入无线共享网络区域,第三方客户端获得所述无线共享网络广播的设备MAC地址第一集合;
第三方客户端将获得的MAC地址第一集合与存储的MAC地址列表中的MAC地址第二集合进行比对,当交集中的MAC地址达到或超过预定数量时,所述第三方客户端从存储的MAC地址与无线网络标识及连接密钥的对应关系中获得所述交集中的MAC地址对应的无线网络标识和连接密钥;
第三方客户端利用所述获得的无线网络标识和对应连接密钥的至少一对向所述对应MAC地址的无线网络发起连接请求;
第三方客户端利用所述发起连接请求的无线网络标识和对应连接密钥与所述MAC地址对应的无线网络连接成功后,还包括:第三方客户端接收所述连接的无线网络设备/无线网络共享者客户端/服务器发送的推送信息。
一种服务器,包括:
第一接收单元,用于接收无线网络共享者客户端发送的被选定无线网络的第一标识;
生成单元,用于生成第二标识并发送至所述无线网络共享者客户端;
第二接收单元,用于接收所述无线网络共享者客户端发送的被选定的所述无线网络的第三标识;
比较单元,用于比较第二标识与第三标识,并在两者相同时通过验证并登记该无线网络的设备的信息。
一种服务器,包括:
第一接收单元,用于接收无线网络共享者客户端发送的被选定无线网络的第一标识及对应无线网络设备的MAC地址;
生成单元,用于生成第二标识并发送至所述无线网络共享者客户端;
第二接收单元,用于接收所述无线网络共享者客户端发送的被选定的所述无线网络的第三标识及对应无线网络设备的MAC地址;
比较单元,用于比较第二标识与第三标识,并比较第一标识对应无线网络设备的MAC地址与第三标识对应无线网络设备的MAC地址,在比较结果均相同时通过验证。
一种无线网络共享者客户端,包括:
第一获取单元,用于获取无线网络共享者终端在扫描/存储的无线网络列表中被选定的无线网络的第一标识并发送至服务器;
第五接收单元,用于所述无线网络共享者客户端接收所述服务器发送的第二标识;
第二获取单元,用于获取无线网络共享者移动终端更新的无线网络列表并将其中被选定的所述无线网络的第三标识发送至服务器。
一种无线网络共享者客户端,包括:
第一获取单元,用于获取无线网络共享者终端在扫描/存储的无线网络列表中被选定的无线网络的第一标识及对应无线网络设备的MAC地址并发送至服务器;
第五接收单元,用于所述无线网络共享者客户端接收所述服务器发送的第二标识及对应无线网络设备的MAC地址;
第二获取单元,用于获取无线网络共享者移动终端更新的无线网络列表并将其中被选定的所述无线网络的第三标识及对应无线网络设备的MAC地址发送至服务器。
一种第三方客户端,包括:
第三获取单元,用于在第三方终端进入无线共享网络区域时,获得所述无线共享网络广播的设备MAC地址;
第四获取单元,用于将获得的MAC地址与存储的MAC地址列表中的MAC地址进行比对,当获得的MAC地址在所述存储的MAC地址列表中时,从存储的MAC地址与无线网络标识的对应关系中获得对应的无线网络标识;
请求单元,利用所述获得的无线网络标识向所述MAC地址对应的无线网络发起连接请求;
第七接收单元,用于接收所述连接的无线网络设备/无线网络共享者客户端/服务器发送的推送信息。
一种第三方客户端,包括:
第三获取单元,用于在第三方终端进入无线共享网络区域时,获得所述无线共享网络广播的设备MAC地址;
第四获取单元,用于将获得的MAC地址与存储的MAC地址列表中的MAC地址进行比对,当获得的MAC地址在所述存储的MAC地址列表中时,所述第三方客户端从存储的MAC地址与无线网络标识及连接密钥的对应关系中获得对应的无线网络标识和连接密钥;
请求单元,利用所述获得的无线网络标识和连接密钥向所述MAC地址对应的无线网络发起连接请求;
第七接收单元,用于接收所述连接的无线网络设备/无线网络共享者客户端/服务器发送的推送信息。
一种第三方客户端,包括:
第三获取单元,用于在第三方终端进入无线共享网络区域时,获得所述无线共享网络广播的设备MAC地址第一集合;
第四获取单元,用于将获得的MAC地址第一集合与存储的同一无线网络共享区域的MAC地址列表中的MAC地址第二集合进行比对,当交集中的MAC地址达到或超过预定数量时,所述第三方客户端从存储的MAC地址与无线网络标识的对应关系中获得所述交集中的MAC地址对应的无线网络标识;
请求单元,用于利用所述获得的无线网络标识中的至少一个向对应MAC地址的无线网络发起连接请求;
第七接收单元,用于接收所述连接的无线网络设备/无线网络共享者客户端/服务器发送的推送信息。
一种第三方客户端,包括:
第三获取单元,用于在第三方终端进入无线共享网络区域时,获得所述无线共享网络广播的设备MAC地址第一集合;
第四获取单元,用于将获得的MAC地址第一集合与存储的MAC地址列表中的MAC地址第二集合进行比对,当交集中的MAC地址达到或超过预定数量时,所述第三方客户端从存储的MAC地址与无线网络标识及连接密钥的对应关系中获得所述交集中的MAC地址对应的无线网络标识和连接密钥;
请求单元,用于利用所述获得的无线网络标识和对应连接密钥的至少一对向所述对应MAC地址的无线网络发起连接请求;
第七接收单元,用于接收所述连接的无线网络设备/无线网络共享者客户端/服务器发送的推送信息。
由以上本申请实施例提供的技术方案可见,本申请实施例可以设定信息的推送时机与特定连接的建立相关联。
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图10为本申请实现信息推送的方法一个实施例的流程图;
图11为本申请实现信息推送的方法一个实施例的流程图;
图12为本申请实现信息推送的方法一个实施例的流程图;
图13为本申请实现信息推送的服务器一个实施例的框图;
图14为本申请实现信息推送的服务器一个实施例的框图;
图15本申请实现信息推送的无线网络共享者客户端一个实施例的框图;
图16本申请实现信息推送的无线网络共享者客户端一个实施例的框图;
图17为本申请实现信息推送的第三方客户端一个实施例的框图。
具体实施方式
本申请实施例提供一种实现信息推送的方法、服务器、共享者客户端、第三方客户端。
为了使本技术领域的人员更好地理解本申请中的技术方案,下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都应当属于本申请保护的范围。
本申请中涉及的连接,可以包括短距离无线通信方式中的通信连接,例如蓝牙(Bluetooth)、红外(IrDA)、无线局域网(WI-FI或WLAN,大多采用802.11系列协议)、WIFI直连(Wi-Fi Direct)、超宽带通信(Ultra Wide Band)、紫峰(Zigbee)、近场通信(Near Field Communication,NFC)等通信技术。本申请结合上述通信方式介绍具体实现方案,同时不排除其他的通信方式应用于本申请下述的具体方案。
以WIFI这种无线通信方式举例说明,特别以WIFI共享为例加以说明。在一种场景下,建立WIFI网络的建立者或拥有WIFI网络的所有者,可能会将WIFI网络以有偿或无偿的形式共享至其他终端。所述WIFI网络,可以是通过WIFI设备实现,如具有WIFI功能的路由器。本申请中将共享WIFI网络的上述WIFI网络建立者或WIFI网络拥有者及类似情况的主体统称为 WIFI共享者。
本申请还涉及网络平台,网络平台可以通过服务器管理WIFI共享者以及WIFI使用者。本申请实现的信息推送,可以是WIFI共享者预设的页面、链接、短消息、多媒体文件等。WIFI共享者可以通过如图1所示的过程加入网络平台并将待推送信息设置为接收到第三方终端接入所述WIFI网络成功的消息后发送推送信息至所述第三方终端:
S100:WIFI共享者客户端获取WIFI共享者终端在扫描/存储的WIFI网络列表中被选定的WIFI网络的第一标识并发送至服务器。
WIFI共享者可以持有终端,该终端可以是移动终端或台式计算机之类的终端设备。在该终端上,为了便于WIFI共享者与网络平台的服务器进行通信,可以安装有应用程序。该应用程序例如可以是在终端操作系统上安装的应用,或者是网页。后续的客户端可以着重指安装有应用或可以打开网页以实现相同功能的终端。
WIFI共享者客户端可以获取其所安装在的终端所扫描/存储的WIFI网络列表。
WIFI共享者可以在所述客户端界面上选择所述WIFI网络列表中的特定WIFI网络,例如通过鼠标点击、滚轮滑动或者触摸选择之类的操作。WIFI共享者客户端可以获得上述被选定的WIFI网络的第一标识,所述标识通常例如WIFI网络的服务集标识(Service Set Identifier,SSID)。进而,WIFI共享者客户端可以将被选定的第一标识发送至服务器。
所述被选定的WIFI网络,一般是WIFI共享者所建立或所拥有的WIFI网络,例如WIFI共享者有一定覆盖范围的无线路由器,并提供该无线路由器的接入共享。
需要说明的是,所述WIFI共享者在执行上述S100前,可以利用用户账号、密码登录所述客户端。所述用户账号可以是预先完成注册的,这里不再赘述。
所述WIFI共享者客户端发送第一标识至服务器,可以通过该WIFI共享者移动终端所连接的WIFI网络发送,也可以通过2G、3G、4G之类的通信网络发送,这里并不限定。
S110:服务器生成第二标识并发送至WIFI共享者客户端。
服务器接收到WIFI共享者客户端发来的所选定的WIFI网络的第一标识后,可以触发生成第二标识。该过程,可以是基于所述第一标识利用某种哈希算法得到字符序列,也可以是按照预定规则生成的随机字符序列。所述字符序列可以作为第二标识,且该标识符合通常的SSID的要求,例如要求最大长度不超过32个字符,必须是字母、数字或其组合,有的设备也可以接收中文字符。
之后,服务器可以将生成的第二标识发送至WIFI共享者客户端。
S120:所述WIFI共享者基于所述第二标识将所述WIFI网络的第一标识更改为第三标识。
WIFI共享者可以手工将所述WIFI网络的第一标识更改为第三标识,例如通过终端登录 WIFI设备的。所述修改,可以是通过终端登录WIFI设备,在WIFI设备配置页面改改SSID。可以是基于所述服务器生成并发送至WIFI共享者客户端的第二标识进行修改。理想的,修改后的第三标识即为所述服务器生成并发送至WIFI共享者客户端的第二标识。
S130:所述WIFI共享者客户端获取WIFI共享者移动终端更新的WIFI网络列表并将其中被选定的所述WIFI网络的第三标识发送至服务器。
WIFI共享者移动终端可以更新其检测的WIFI网络的列表。所述更新的WIFI网络列表中,可以包括所述第三标识的的WIFI网络。
WIFI共享者可以在所述客户端界面上选择所述WIFI网络列表中的第三标识对应的WIFI网络。进而,WIFI共享者客户端可以接收WIFI共享者在所述客户端界面上选择的所述WIFI网络列表中的特定WIFI网络。
进一步地,WIFI共享者客户端可以将被选定的所述WIFI网络的第三标识发送至服务器。
S140:所述服务器比较第二标识与第三标识,并在两者相同时通过验证并登记该WIFI网络的设备的信息。
所述服务器接收到WIFI共享者客户端发送的所述WIFI网络的第三标识后,可以将该第三标识与前述由所述服务器生成的第二标识进行比对。当比对结果为相同时,可以确定所述WIFI共享者对该第三标识(或第二标识)对应的WIFI网络具有控制权或所有权,因此允许所述WIFI共享者将该WIFI网络共享至所述网络平台。相反的,如果经过比较第三标识与第二标识不相同,则一般来说所述WIFI共享者对该第三标识对应的WIFI网络不具备控制权或所有权,因而可以不通过其共享网络的验证。
所述WIFI网络设备的信息,可以是该WIFI网络设备的媒体接入控制(Media Access Control,MAC)地址。MAC地址具有唯一性的特点,可以用于与其它WIFI设备的区分。
所述服务器登记所述WIFI网络设备的信息,可以是由所述WIFI共享者客户端发送所述WIFI网络设备的信息至所述服务器,也可以是由服务器从所述WIFI网络设备直接获取,或者由所述WIFI网络设备直接发送至所述服务器。
所述方法还包括:
S150:所述WIFI共享者设置接收到第三方终端接入所述WIFI网络成功的消息后发送推送信息至所述第三方终端。
所述设置的对象,可以是设置所述WIFI共享者客户端,也可以是设置WIFI网络设备。即,所述WIFI网络共享者设置接收到第三方终端接入所述WIFI网络成功的消息后,所述WIFI网络共享者客户端/所述WIFI网络设备发送推送信息至所述第三方终端。
需要说明的是,上述S150与前述S100~S140的执行顺序并不需要特别限定。
通过上述方法,可以设定信息的推送时机与特定连接的建立相关联。
WIFI共享者也可以通过如图2所示的过程加入网络平台并将待推送信息设置为接收到第三方终端接入所述WIFI网络成功的消息后发送推送信息至所述第三方终端:
S200:WIFI共享者客户端获取WIFI共享者终端在扫描/存储的WIFI网络列表中被选定的WIFI网络的第一标识及对应WIFI设备的MAC地址并发送至服务器。
与S100不同的是,S200中除了发送被选定的WIFI网络的第一标识之外,还发送对应WIFI设备的MAC地址。这样,服务器可以获知选定的WIFI网络的第一标识和对应WIFI设备的MAC地址。
S210:服务器生成第二标识并发送至WIFI共享者客户端。
类似的,服务器接收到WIFI共享者客户端发来的所选定的WIFI网络的第一标识后,可以触发生成第二标识。该过程,可以是基于所述第一标识利用某种哈希算法得到字符序列,也可以是按照预定规则生成的随机字符序列。所述字符序列可以作为第二标识,且该标识符合通常的SSID明明要求,例如要求最大长度不超过32个字符,必须是字母、数字或其组合,有的设备也可以接收中文字符。
S220:所述WIFI共享者基于所述第二标识将所述WIFI网络的第一标识更改为第三标识。
如前所述,WIFI共享者可以手工将所述WIFI网络的第一标识更改为第三标识,例如通过终端登录WIFI设备的。所述修改,可以是通过终端登录WIFI设备,在WIFI设备配置页面改改SSID。可以是基于所述服务器生成并发送至WIFI共享者客户端的第二标识进行修改。理想的,修改后的第三标识即为所述服务器生成并发送至WIFI共享者客户端的第二标识。
S230:所述WIFI共享者客户端获取WIFI网络共享者移动终端更新的WIFI网络列表并将其中被选定的所述WIFI网络的第三标识及对应WIFI设备的MAC地址发送至服务器。
与S130不同的是,S230中WIFI共享者客户端除了将被选定的所述WIFI网络的第三标识发送至服务器外,还可以将被选定的所述WIFI网络对应的WIFI设备的MAC地址发送至服务器。这样,服务器可以获知选定的WIFI网络的第三标识和对应WIFI设备的MAC地址。
S240:所述服务器比较第二标识与第三标识,并比较第一标识对应WIFI网络设备的MAC地址与第三标识对应WIFI设备的MAC地址,在比较结果均相同时通过验证。
S240中,通过比较第一标识对应WIFI网络设备的MAC地址与第三标识对应WIFI设备的MAC地址,可以确定WIFI共享者客户端发来的第一标识与第三标识是同一WIFI设备的标识,而排除了是不同WIFI设备的标识的可能,即限定了比较的第一标识与第三标识是同一WIFI设备的标识。这样,通过比较第二标识与第三标识,可以确定同一WIFI设备是在所述服务器 触发下进行的修改,且所述服务器通知的WIFI共享者拥有对所述WIFI网络的所有权/控制权。
所述方法还可以包括:
S250:所述WIFI网络共享客户端将推送信息发送至所述服务器,并通知所述服务器接收到第三方终端接入所述WIFI网络成功的消息后发送所述推送信息至所述第三方终端。
通过上述方法,可以设定信息的推送时机与特定连接的建立相关联。
WIFI共享者也可以通过如图3所示的过程加入网络平台并将待推送信息设置为接收到第三方终端接入所述WIFI网络成功的消息后发送推送信息至所述第三方终端:
S300:WIFI共享者客户端获取WIFI网络共享者终端在扫描/存储的WIFI网络列表中被选定的WIFI网络的第一标识及对应WIFI网络设备的MAC地址并发送至服务器;
S310:服务器生成第二标识并发送至所述WIFI网络共享者客户端;
S320:所述WIFI网络共享者基于所述第二标识将所述WIFI网络的第一标识更改为第三标识;
S330:所述WIFI网络共享者客户端获取WIFI网络共享者移动终端更新的WIFI网络列表并将其中被选定的所述WIFI网络的第三标识及对应WIFI网络设备的MAC地址发送至服务器;
S340:所述服务器比较第二标识与第三标识,并比较第一标识对应WIFI网络设备的MAC地址与第三标识对应WIFI网络设备的MAC地址,在比较结果均相同时通过验证;
所述方法还包括:
S350:所述WIFI网络共享者设置接收到第三方终端接入所述WIFI网络成功的消息后所述WIFI网络共享者客户端/所述WIFI网络设备发送推送信息至所述第三方终端。
通过上述方法,可以设定信息的推送时机与特定连接的建立相关联。
WIFI共享者也可以通过如图4所示的过程加入网络平台并将待推送信息设置为接收到第三方终端接入所述WIFI网络成功的消息后发送推送信息至所述第三方终端:
S400:WIFI共享者客户端获取WIFI网络共享者终端在扫描/存储的WIFI网络列表中被选定的WIFI网络的第一标识发送至服务器;
S410:服务器生成第二标识并发送至所述WIFI网络共享者客户端;
S420:所述WIFI网络共享者基于所述第二标识将所述WIFI网络的第一标识更改为第三标识;
S430:所述WIFI网络共享者客户端获取WIFI网络共享者移动终端更新的WIFI网络列表 并将其中被选定的所述WIFI网络的第三标识发送至服务器;
S440:所述服务器比较第二标识与第三标识,并在两者相同时通过验证并登记该WIFI网络的设备的信息;
所述方法还包括:
S450:所述WIFI网络共享客户端将推送信息发送至所述服务器,并通知所述服务器接收到第三方终端接入所述WIFI网络成功的消息后发送所述推送信息至所述第三方终端。
通过上述方法,可以设定信息的推送时机与特定连接的建立相关联。
以下介绍本申请图1、4描述实施例中以服务器为主体的步骤流程,如图5所示,包括:
S500:服务器接收WIFI网络共享者客户端发送的被选定WIFI网络的第一标识。
S510:服务器生成第二标识并发送至所述WIFI网络共享者客户端。
S520:服务器接收所述WIFI网络共享者客户端发送的被选定的所述WIFI网络的第三标识。
S530:所述服务器比较第二标识与第三标识,并在两者相同时通过验证并登记该WIFI网络的设备的信息。
此外,图5的方法还可以包括:
S540:所述服务器接收所述WIFI网络共享者客户端发送的推送信息,并在接收到第三方终端接入所述WIFI网络成功的消息后发送所述推送信息至所述第三方终端。
以下介绍本申请图2、3描述实施例中以服务器为主体的步骤流程,如图6所示,包括:
S600:服务器接收WIFI网络共享者客户端发送的被选定WIFI网络的第一标识及对应WIFI网络设备的MAC地址;
S610:服务器生成第二标识并发送至所述WIFI网络共享者客户端;
S620:服务器接收所述WIFI网络共享者客户端发送的被选定的所述WIFI网络的第三标识及对应WIFI网络设备的MAC地址;
S630:所述服务器比较第二标识与第三标识,并比较第一标识及对应WIFI网络设备的MAC地址与第三标识对应WIFI网络设备的MAC地址,在比较结果均相同时通过验证。
此外,图6的方法还可以包括:
S640:所述服务器接收所述WIFI网络共享者客户端发送的推送信息,并在接收到第三方终端接入所述WIFI网络成功的消息后发送所述推送信息至所述第三方终端。
以下介绍本申请图1描述实施例中以WIFI网络共享者客户端为主体的步骤流程,如图7所示,包括:
S700:WIFI网络共享者客户端获取WIFI网络共享者终端在扫描/存储的WIFI网络列表中被选定的WIFI网络的第一标识并发送至服务器。
S710:所述WIFI网络共享者客户端接收所述服务器发送的第二标识。
S720:所述WIFI网络共享者客户端获取WIFI网络共享者移动终端更新的WIFI网络列表并将其中被选定的所述WIFI网络的第三标识发送至服务器。
所述方法还可以包括:
S730:所述WIFI网络共享者客户端接收以下设置:接收到第三方终端接入所述WIFI网络成功的消息后发送推送信息至所述第三方终端。
以下介绍本申请图2描述实施例中以WIFI网络共享者客户端为主体的步骤流程,如图8所示,包括:
S800:WIFI网络共享者客户端获取WIFI网络共享者终端在扫描/存储的WIFI网络列表中被选定的WIFI网络的第一标识及对应WIFI网络设备的MAC地址并发送至服务器。
S810:所述WIFI网络共享者客户端接收所述服务器发送的第二标识及对应WIFI网络设备的MAC地址。
S820:所述WIFI网络共享者客户端获取WIFI网络共享者移动终端更新的WIFI网络列表并将其中被选定的所述WIFI网络的第三标识及对应WIFI网络设备的MAC地址发送至服务器。
所述方法还可以包括:
S830:所述WIFI网络共享者客户端接收以下设置:接收到第三方终端接入所述WIFI网络成功的消息后发送推送信息至所述第三方终端。
上述图1~图8的实施例中,所述服务器生成第二标识的过程可以包括:
方式一:所述服务器基于所述收到的第一标识利用哈希算法得到字符序列以作为第二标识;
或,
方式二:所述服务器按照预定规则生成随机字符序列以作为第二标识。
上述图1~图8的方法中,为了增强WIFI共享网络的安全和性能,可以设置连接密钥。WIFI网络共享者客户端发送的被选定的所述WIFI网络的连接密钥至服务器。服务器接收到 所述WIFI网络共享者客户端发送的被选定的所述WIFI网络的连接密钥后可以将其保存。
上述图1~图8的方法中,为了增强WIFI共享网络的安全和性能,可以设置连接密钥,并且,服务器可以验证该密钥的正确性。例如,WIFI网络共享者可以选择连接选定的WIFI共享网络,并可以在提示下输入连接密钥。这样,所述WIFI网络共享者客户端获取连接所述被选定的所述WIFI网络的连接密钥。所述WIFI网络共享者移动终端利用所述连接密钥成功连接所述被选定的WIFI网络后,所述WIFI网络共享者客户端可以将获取的所述连接密钥发送至所述服务器,进而服务器可以保存该连接密钥。
所述服务器可以将所述WIFI网络的连接密钥在第三方终端进入该WIFI网络覆盖区域后发送至第三方终端,或者在接收到第三方终端的请求时将连接密钥发送至第三方终端。这样,后续第三方终端可以利用该连接密钥接入所述WIFI网络。
上述实施例描述了如何设定信息的推送时机与特定连接的建立相关联。以下结合图9描述本申请中第三方终端进入共享网络中时与共享网络连接并接收推送信息的方法:
S900:第三方终端进入WIFI共享网络区域,第三方客户端获得所述WIFI共享网络广播的设备MAC地址。
在第三方客户端上,为了便于WIFI共享者与网络平台的服务器进行通信,可以安装有应用程序。该应用程序例如可以是在终端操作系统上安装的应用,或者是网页。而所述第三方终端上可以着重指安装有应用或可以打开网页以实现类似功能的终端。
第三方终端可以借助其具有的卫星定位系统或者基站定位系统等定位系统获得所处的位置的信息。这样,在为WIFI网络设备预设了覆盖区域的情况下,第三方终端可以通过定位系统确定进入该WIFI网络设备的覆盖区域。
第三方终端,在开启WIFI功能时,可以扫描接收到广播的无线信号,并能够从广播的信号中获知WIFI网络设备的MAC地址。
S910:第三方客户端将获得的MAC地址与存储的MAC地址列表中的MAC进行比对,当获得的MAC地址在所述存储的MAC地址列表中时,所述第三方客户端从存储的MAC地址与WIFI网络标识的对应关系中获得对应的WIFI网络标识。
所述第三方客户端可以预先从所述服务器获取并存储的WIFI网络列表以及MAC地址与WIFI标识的对应关系,并存储在所述第三方客户端中;也可以是第三方终端进入所述WIFI共享网络区域时,第三方客户端将地理位置发送至服务器,服务器根据第三方客户端的地理位置将第三方客户端所处区域的MAC地址列表以及MAC地址与WIFI网络标识的对应关系发送至第三方客户端,进而第三方客户端存储该MAC地址列表和MAC地址与WIFI网络标 识的对应关系。
S920:第三方客户端利用所述获得的WIFI网络标识向所述MAC地址对应的WIFI网络发起连接请求。
S930:第三方客户端利用所述获得的WIFI网络标识与所述MAC地址对应的WIFI网络连接成功后,还包括:所述第三方客户端接收所述WIFI网络设备发送的推送信息,或,所述第三方客户端接收所述WIFI网络设备经所述WIFI网络共享者客户端发送的推送信息。
结合上述图1~图8的方法,WIFI共享网络可以不设置连接密钥,同时可以选择不广播SSID。这样,第三方终端进入所述WIFI网络的覆盖区域时,由于不知道SSID,无法直接连接WIFI共享网络,从而能够防止未授权的第三方终端接入WIFI共享网络。按照上述图1~图8的方法,第三方终端可以通过接收的广播MAC地址在自身存有的MAC地址列表中查询得到WIFI网络标识,即SSID,从而在后续的步骤中利用该SSID连接所述WIFI网络。
上述实施例描述了如何设定信息的推送时机与特定连接的建立相关联。以下结合图10描述本申请中第三方终端进入共享网络中时与共享网络连接并接收推送信息的方法:
S1000:第三方终端进入WIFI共享网络区域,第三方客户端获得所述WIFI共享网络广播的设备MAC地址。
在第三方客户端上,为了便于WIFI共享者与网络平台的服务器进行通信,可以安装有应用程序。该应用程序例如可以是在终端操作系统上安装的应用,或者是网页。而所述第三方终端上可以着重指安装有应用或可以打开网页以实现类似功能的终端。
S1010:第三方客户端将获得的MAC地址与存储的MAC地址列表中的MAC进行比对,当获得的MAC地址在所述存储的MAC地址列表中时,所述第三方客户端从存储的MAC地址与WIFI网络标识及连接密钥的对应关系中获得对应的WIFI网络标识和连接密钥。
所述第三方客户端可以预先从所述服务器获取并存储的WIFI网络列表以及MAC地址与WIFI标识的对应关系,并存储在所述第三方客户端中;也可以是第三方终端进入所述WIFI共享网络区域时,第三方客户端将地理位置发送至服务器,服务器根据第三方客户端的地理位置将第三方客户端所处区域的MAC地址列表以及MAC地址与WIFI网络标识的对应关系发送至第三方客户端,进而第三方客户端存储该MAC地址列表和MAC地址与WIFI网络标识的对应关系。
类似的,所述连接密钥也可以是所述第三方客户端预先从所述服务器获取并存储,例如与MAC地址列表一并从所述服务器获取并存储;也可以是第三方终端进入WIFI共享网络区域时,第三方客户端将地理位置发送至服务器,服务器根据第三方客户端的地理位置将第三 方客户端所处区域的MAC地址对应的连接密钥发送至第三方客户端,进而第三方客户端可以存储该MAC地址对应的连接密钥。
S1020:第三方客户端利用所述获得的WIFI网络标识和连接密钥向所述MAC地址对应的WIFI网络发起连接请求。
S1030:第三方客户端利用所述获得的WIFI网络标识与所述MAC地址对应的WIFI网络连接成功后,还包括:所述第三方客户端接收所述WIFI网络设备发送的推送信息,或,所述第三方客户端接收所述WIFI网络设备经所述WIFI网络共享者客户端发送的推送信息。
上述实施例描述了如何设定信息的推送时机与特定连接的建立相关联。以下结合图11描述本申请中第三方终端进入共享网络中时与共享网络连接并接收推送信息的方法:
S1100:第三方终端进入WIFI共享网络区域,第三方客户端获得所述WIFI共享网络广播的设备MAC地址第一集合;
S1110:第三方客户端将获得的MAC地址第一集合与存储的同一WIFI网络共享区域的MAC地址列表中的MAC地址第二集合进行比对,当交集中的MAC地址达到或超过预定数量时,所述第三方客户端从存储的MAC地址与WIFI网络标识的对应关系中获得所述交集中的MAC地址对应的WIFI网络标识;
S1120:第三方客户端利用所述获得的WIFI网络标识中的至少一个向对应MAC地址的WIFI网络发起连接请求;
S1130:第三方客户端与所述MAC地址对应的WIFI网络连接成功后,还包括:
第三方客户端接收所述连接的WIFI网络设备/WIFI网络共享者客户端发送的推送信息。
上述实施例描述了如何设定信息的推送时机与特定连接的建立相关联。以下结合图12描述本申请中第三方终端进入共享网络中时与共享网络连接并接收推送信息的方法:
S1200:第三方终端进入WIFI共享网络区域,第三方客户端获得所述WIFI共享网络广播的设备MAC地址第一集合;
S1210:第三方客户端将获得的MAC地址第一集合与存储的MAC地址列表中的MAC地址第二集合进行比对,当交集中的MAC地址达到或超过预定数量时,所述第三方客户端从存储的MAC地址与WIFI网络标识及连接密钥的对应关系中获得所述交集中的MAC地址对应的WIFI网络标识和连接密钥;
S1220:第三方客户端利用所述获得的WIFI网络标识和连接密钥的至少一对向所述对应MAC地址的WIFI网络发起连接请求;
S1230:第三方客户端利用所述获得的WIFI网络标识与所述MAC地址对应的WIFI网络连接成功后,还包括:
第三方客户端接收所述连接的WIFI网络设备/WIFI网络共享者客户端/服务器发送的推送信息。
上述图11、12所示的方法中,所述第三方客户端存储的MAC地址列表以及MAC地址与WIFI网络标识的对应关系可以包括:
所述第三方客户端预先从所述服务器获取并存储的WIFI网络列表以及MAC地址与WIFI网络标识的对应关系;
或,
第三方终端进入所述WIFI共享网络区域时,第三方客户端将地理位置发送至服务器,服务器根据第三方客户端的地理位置将第三方客户端所处区域的MAC地址列表以及MAC地址与WIFI网络标识的对应关系发送至第三方客户端,进而第三方客户端存储该MAC地址列表和MAC地址与WIFI网络标识的对应关系。
上述图12所示的方法中,所述第三方客户端存储的连接密钥可以包括:
所述第三方客户端预先从所述服务器获取并存储的连接密钥;
或,
第三方终端进入WIFI共享网络区域时,第三方客户端将地理位置发送至服务器,服务器根据第三方客户端的地理位置将第三方客户端所处区域的MAC地址对应的连接密钥发送至第三方客户端,进而第三方客户端存储该MAC地址对应的连接密钥。
以下介绍一种服务器,如图13所示,可以包括:
第一接收单元1301,用于接收无线网络共享者客户端发送的被选定无线网络的第一标识;
生成单元1302,用于生成第二标识并发送至所述无线网络共享者客户端;
第二接收单元1303,用于接收所述无线网络共享者客户端发送的被选定的所述无线网络的第三标识;
比较单元1304,用于比较第二标识与第三标识,并在两者相同时通过验证并登记该无线网络的设备的信息。
以下介绍一种服务器,可以包括:
第一接收单元1301,用于接收无线网络共享者客户端发送的被选定无线网络的第一标识及对应无线网络设备的MAC地址;
生成单元1302,用于生成第二标识并发送至所述无线网络共享者客户端;
第二接收单元1303,用于接收所述无线网络共享者客户端发送的被选定的所述无线网络的第三标识及对应无线网络设备的MAC地址;
比较单元1304,用于比较第二标识与第三标识,并比较第一标识对应无线网络设备的MAC地址与第三标识对应无线网络设备的MAC地址,在比较结果均相同时通过验证。
上述图13所示的服务器中,进一步地,如图14所示,还可以包括:
第三接收单元1305,用于接收所述无线网络共享者客户端发送的推送信息;
通知接收单元1306,用于接收以下通知:所述服务器接收到第三方终端接入所述无线网络成功的消息后发送所述推送信息至所述第三方终端。
以下介绍一种无线网络共享者客户端,如图15所示,可以包括:
第一获取单元1501,用于获取无线网络共享者终端在扫描/存储的无线网络列表中被选定的无线网络的第一标识并发送至服务器;
第五接收单元1502,用于接收所述服务器发送的第二标识;
第二获取单元1503,用于获取无线网络共享者移动终端更新的无线网络列表并将其中被选定的所述无线网络的第三标识发送至服务器。
以下介绍一种无线网络共享者客户端,可以包括:
第一获取单元1501,用于获取无线网络共享者终端在扫描/存储的无线网络列表中被选定的无线网络的第一标识及对应无线网络设备的MAC地址并发送至服务器;
第五接收单元1502,用于所述无线网络共享者客户端接收所述服务器发送的第二标识及对应无线网络设备的MAC地址;
第二获取单元1503,用于获取无线网络共享者移动终端更新的无线网络列表并将其中被选定的所述无线网络的第三标识及对应无线网络设备的MAC地址发送至服务器。
上述图15所示的无线网络共享客户端中,进一步地,如图16所示,还可以包括:
第六接收单元1601,用于接收以下设置:接收到第三方终端接入所述无线网络成功的消 息后发送推送信息至所述第三方终端,
或,
通知单元1602,用于将推送信息发送至所述服务器,并通知所述服务器接收到第三方终端接入所述无线网络成功的消息后发送所述推送信息至所述第三方终端。
以下介绍一种第三方客户端,如图17所示,可以包括:
第三获取单元1701,用于在第三方终端进入无线共享网络区域时,获得所述无线共享网络广播的设备MAC地址;
第四获取单元1702,用于将获得的MAC地址与存储的MAC地址列表中的MAC地址进行比对,当获得的MAC地址在所述存储的MAC地址列表中时,从存储的MAC地址与无线网络标识的对应关系中获得对应的无线网络标识;
请求单元1703,利用所述获得的无线网络标识向所述MAC地址对应的无线网络发起连接请求;
第七接收单元1704,用于接收所述连接的无线网络设备/无线网络共享者客户端/服务器发送的推送信息。
以下介绍一种第三方客户端,可以包括:
第三获取单元1701,用于在第三方终端进入无线共享网络区域时,获得所述无线共享网络广播的设备MAC地址;
第四获取单元1702,用于将获得的MAC地址与存储的MAC地址列表中的MAC地址进行比对,当获得的MAC地址在所述存储的MAC地址列表中时,所述第三方客户端从存储的MAC地址与无线网络标识及连接密钥的对应关系中获得对应的无线网络标识和连接密钥;
请求单元1703,利用所述获得的无线网络标识和连接密钥向所述MAC地址对应的无线网络发起连接请求;
第七接收单元1704,用于接收所述连接的无线网络设备/无线网络共享者客户端/服务器发送的推送信息。
以下介绍一种第三方客户端,可以包括:
第三获取单元1701,用于在第三方终端进入无线共享网络区域时,获得所述无线共享网络广播的设备MAC地址第一集合;
第四获取单元1702,用于将获得的MAC地址第一集合与存储的同一无线网络共享区域的MAC地址列表中的MAC地址第二集合进行比对,当交集中的MAC地址达到或超过预定数量时,所述第三方客户端从存储的MAC地址与无线网络标识的对应关系中获得所述交集中的MAC地址对应的无线网络标识;
请求单元1703,用于利用所述获得的无线网络标识中的至少一个向对应MAC地址的无线网络发起连接请求;
第七接收单元1704,用于接收所述连接的无线网络设备/无线网络共享者客户端/服务器发送的推送信息。
以下介绍一种第三方客户端,可以包括:
第三获取单元1701,用于在第三方终端进入无线共享网络区域时,获得所述无线共享网络广播的设备MAC地址第一集合;
第四获取单元1702,用于将获得的MAC地址第一集合与存储的MAC地址列表中的MAC地址第二集合进行比对,当交集中的MAC地址达到或超过预定数量时,所述第三方客户端从存储的MAC地址与无线网络标识及连接密钥的对应关系中获得所述交集中的MAC地址对应的无线网络标识和连接密钥;
请求单元1703,用于利用所述获得的无线网络标识和对应连接密钥的至少一对向所述对应MAC地址的无线网络发起连接请求;
第七接收单元1704,用于接收所述连接的无线网络设备/无线网络共享者客户端/服务器发送的推送信息。
在20世纪90年代,对于一个技术的改进可以很明显地区分是硬件上的改进(例如,对二极管、晶体管、开关等电路结构的改进)还是软件上的改进(对于方法流程的改进)。然而,随着技术的发展,当今的很多方法流程的改进已经可以视为硬件电路结构的直接改进。设计人员几乎都通过将改进的方法流程编程到硬件电路中来得到相应的硬件电路结构。因此,不能说一个方法流程的改进就不能用硬件实体模块来实现。例如,可编程逻辑器件(Programmable Logic Device,PLD)(例如现场可编程门阵列(Field Programmable Gate Array,FPGA))就是这样一种集成电路,其逻辑功能由用户对器件编程来确定。由设计人员自行编程来把一个数字系统“集成”在一片PLD上,而不需要请芯片制造厂商来设计和制作专用的集成电路芯片2。而且,如今,取代手工地制作集成电路芯片,这种编程也多半改用“逻辑编译器(logic compiler)”软件来实现,它与程序开发撰写时所用的软件编译器相 类似,而要编译之前的原始代码也得用特定的编程语言来撰写,此称之为硬件描述语言(Hardware Description Language,HDL),而HDL也并非仅有一种,而是有许多种,如ABEL(Advanced Boolean Expression Language)、AHDL(Altera Hardware Description Language)、Confluence、CUPL(Cornell University Programming Language)、HDCal、JHDL(Java Hardware Description Language)、Lava、Lola、MyHDL、PALASM、RHDL(Ruby Hardware Description Language)等,目前最普遍使用的是VHDL(Very-High-Speed Integrated Circuit Hardware Description Language)与Verilog2。本领域技术人员也应该清楚,只需要将方法流程用上述几种硬件描述语言稍作逻辑编程并编程到集成电路中,就可以很容易得到实现该逻辑方法流程的硬件电路。
控制器可以按任何适当的方式实现,例如,控制器可以采取例如微处理器或处理器以及存储可由该(微)处理器执行的计算机可读程序代码(例如软件或固件)的计算机可读介质、逻辑门、开关、专用集成电路(Application Specific Integrated Circuit,ASIC)、可编程逻辑控制器和嵌入微控制器的形式,控制器的例子包括但不限于以下微控制器:ARC 625D、Atmel AT91SAM、Microchip PIC18F26K20以及Silicone Labs C8051F320,存储器控制器还可以被实现为存储器的控制逻辑的一部分。
本领域技术人员也知道,除了以纯计算机可读程序代码方式实现控制器以外,完全可以通过将方法步骤进行逻辑编程来使得控制器以逻辑门、开关、专用集成电路、可编程逻辑控制器和嵌入微控制器等的形式来实现相同功能。因此这种控制器可以被认为是一种硬件部件,而对其内包括的用于实现各种功能的装置也可以视为硬件部件内的结构。或者甚至,可以将用于实现各种功能的装置视为既可以是实现方法的软件模块又可以是硬件部件内的结构。
上述实施例阐明的系统、装置、模块或单元,具体可以由计算机芯片或实体实现,或者由具有某种功能的产品来实现。
为了描述的方便,描述以上装置时以功能分为各种单元分别描述。当然,在实施本申请时可以把各单元的功能在同一个或多个软件和/或硬件中实现。
通过以上的实施方式的描述可知,本领域的技术人员可以清楚地了解到本申请可借助软件加必需的通用硬件平台的方式来实现。基于这样的理解,本申请的技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品可以存储在存储介质中,如ROM/RAM、磁碟、光盘等,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)执行本申请各个实施例或者实施例的某些部分所述的方法。
本说明书中的各个实施例均采用递进的方式描述,各个实施例之间相同相似的部分互相参见即可,每个实施例重点说明的都是与其他实施例的不同之处。尤其,对于系统实施例而言,由于其基本相似于方法实施例,所以描述的比较简单,相关之处参见方法实施例的部分说明即可。
本申请可用于众多通用或专用的计算机系统环境或配置中。例如:个人计算机、服务器计算机、手持设备或便携式设备、平板型设备、多处理器系统、基于微处理器的系统、置顶盒、可编程的消费电子设备、网络PC、小型计算机、大型计算机、包括以上任何系统或设备的分布式计算环境等等。
本申请可以在由计算机执行的计算机可执行指令的一般上下文中描述,例如程序模块。一般地,程序模块包括执行特定任务或实现特定抽象数据类型的例程、程序、对象、组件、数据结构等等。也可以在分布式计算环境中实践本申请,在这些分布式计算环境中,由通过通信网络而被连接的远程处理设备来执行任务。在分布式计算环境中,程序模块可以位于包括存储设备在内的本地和远程计算机存储介质中。
虽然通过实施例描绘了本申请,本领域普通技术人员知道,本申请有许多变形和变化而不脱离本申请的精神,希望所附的权利要求包括这些变形和变化而不脱离本申请的精神。

Claims (29)

  1. 一种实现信息推送的方法,其特征在于,包括:
    无线网络共享者客户端获取无线网络共享者终端在扫描/存储的无线网络列表中被选定的无线网络的第一标识并发送至服务器;
    服务器生成第二标识并发送至所述无线网络共享者客户端;
    所述无线网络共享者基于所述第二标识将所述无线网络的第一标识更改为第三标识;
    所述无线网络共享者客户端获取无线网络共享者移动终端更新的无线网络列表并将其中被选定的所述无线网络的第三标识发送至服务器;
    所述服务器比较第二标识与第三标识,并在两者相同时通过验证并登记该无线网络的设备的信息;
    所述方法还包括:
    所述无线网络共享者设置接收到第三方终端接入所述无线网络成功的消息后所述无线网络共享者客户端/所述无线网络设备发送推送信息至所述第三方终端。
  2. 一种实现信息推送的方法,其特征在于,包括:
    无线网络共享者客户端获取无线网络共享者终端在扫描/存储的无线网络列表中被选定的无线网络的第一标识并发送至服务器;
    服务器生成第二标识并发送至所述无线网络共享者客户端;
    所述无线网络共享者基于所述第二标识将所述无线网络的第一标识更改为第三标识;
    所述无线网络共享者客户端获取无线网络共享者移动终端更新的无线网络列表并将其中被选定的所述无线网络的第三标识发送至服务器;
    所述服务器比较第二标识与第三标识,并在两者相同时通过验证并登记该无线网络的设备的信息;
    所述方法还包括:
    所述无线网络共享者客户端将推送信息发送至所述服务器,并通知所述服务器接收到第三方终端接入所述无线网络成功的消息后发送所述推送信息至所述第三方终端。
  3. 一种实现信息推送的方法,其特征在于,包括:
    无线网络共享者客户端获取无线网络共享者终端在扫描/存储的无线网络列表中被选定的无线网络的第一标识及对应无线网络设备的MAC地址并发送至服务器;
    服务器生成第二标识并发送至所述无线网络共享者客户端;
    所述无线网络共享者基于所述第二标识将所述无线网络的第一标识更改为第三标识;
    所述无线网络共享者客户端获取无线网络共享者移动终端更新的无线网络列表并将其中被选定的所述无线网络的第三标识及对应无线网络设备的MAC地址发送至服务器;
    所述服务器比较第二标识与第三标识,并比较第一标识对应无线网络设备的MAC地址与第三标识对应无线网络设备的MAC地址,在比较结果均相同时通过验证;
    所述方法还包括:
    所述无线网络共享者设置接收到第三方终端接入所述无线网络成功的消息后所述无线网络共享者客户端/所述无线网络设备发送推送信息至所述第三方终端。
  4. 一种实现信息推送的方法,其特征在于,包括:
    无线网络共享者客户端获取无线网络共享者终端在扫描/存储的无线网络列表中被选定的无线网络的第一标识及对应无线网络设备的MAC地址并发送至服务器;
    服务器生成第二标识并发送至所述无线网络共享者客户端;
    所述无线网络共享者基于所述第二标识将所述无线网络的第一标识更改为第三标识;
    所述无线网络共享者客户端获取无线网络共享者移动终端更新的无线网络列表并将其中被选定的所述无线网络的第三标识及对应无线网络设备的MAC地址发送至服务器;
    所述服务器比较第二标识与第三标识,并比较第一标识对应无线网络设备的MAC地址与第三标识对应无线网络设备的MAC地址,在比较结果均相同时通过验证;
    所述方法还包括:
    所述无线网络共享者客户端将推送信息发送至所述服务器,并通知所述服务器接收到第三方终端接入所述无线网络成功的消息后发送所述推送信息至所述第三方终端。
  5. 一种实现信息推送的方法,其特征在于,包括:
    服务器接收无线网络共享者客户端发送的被选定无线网络的第一标识;
    服务器生成第二标识并发送至所述无线网络共享者客户端;
    服务器接收所述无线网络共享者客户端发送的被选定的所述无线网络的第三标识;
    所述服务器比较第二标识与第三标识,并在两者相同时通过验证并登记该无线网络的设备的信息。
  6. 一种实现信息推送的方法,其特征在于,包括:
    服务器接收无线网络共享者客户端发送的被选定无线网络的第一标识及对应无线网络设备的MAC地址;
    服务器生成第二标识并发送至所述无线网络共享者客户端;
    服务器接收所述无线网络共享者客户端发送的被选定的所述无线网络的第三标识及对应无线网络设备的MAC地址;
    所述服务器比较第二标识与第三标识,并比较第一标识对应无线网络设备的MAC地址与第三标识对应无线网络设备的MAC地址,在比较结果均相同时通过验证。
  7. 如权利要求5或6所述的方法,其特征在于,所述方法还包括:
    所述服务器接收所述无线网络共享者客户端发送的推送信息,并接收以下通知:所述服务器接收到第三方终端接入所述无线网络成功的消息后发送所述推送信息至所述第三方终端。
  8. 如权利要求5~7中任一项所述的方法,其特征在于,所述无线网络包括以下中的任一种:
    蓝牙、红外、无线局域网、WIFI直连、超宽带通信、Zigbee、近场通信。
  9. 如权利要求5~7中任一项所述的方法,其特征在于,所述服务器生成第二标识包括:
    所述服务器基于所述收到的第一标识利用哈希算法得到字符序列以作为第二标识;
    或,
    所述服务器按照预定规则生成随机字符序列以作为第二标识。
  10. 如权利要求5~7中任一项所述的方法,其特征在于,所述方法还包括:
    服务器接收所述无线网络共享者客户端发送的被选定的所述无线网络的连接密钥。
  11. 一种实现信息推送的方法,其特征在于,包括:
    无线网络共享者客户端获取无线网络共享者终端在扫描/存储的无线网络列表中被选定的无线网络的第一标识并发送至服务器;
    所述无线网络共享者客户端接收所述服务器发送的第二标识;
    所述无线网络共享者客户端获取无线网络共享者移动终端更新的无线网络列表并将其中被选定的所述无线网络的第三标识发送至服务器。
  12. 一种实现信息推送的方法,其特征在于,包括:
    无线网络共享者客户端获取无线网络共享者终端在扫描/存储的无线网络列表中被选定的无线网络的第一标识及对应无线网络设备的MAC地址并发送至服务器;
    所述无线网络共享者客户端接收所述服务器发送的第二标识及对应无线网络设备的MAC地址;
    所述无线网络共享者客户端获取无线网络共享者移动终端更新的无线网络列表并将其中被选定的所述无线网络的第三标识及对应无线网络设备的MAC地址发送至服务器。
  13. 如权利要求11或12所述的方法,其特征在于,还包括:
    所述无线网络共享者客户端接收以下设置:接收到第三方终端接入所述无线网络成功的消息后发送推送信息至所述第三方终端,
    或,
    所述无线网络共享者客户端将推送信息发送至所述服务器,并通知所述服务器接收到第三方终端接入所述无线网络成功的消息后发送所述推送信息至所述第三方终端。
  14. 一种实现信息推送的方法,其特征在于,包括:
    第三方终端进入无线共享网络区域,第三方客户端获得所述无线共享网络广播的设备MAC地址;
    第三方客户端将获得的MAC地址与存储的MAC地址列表中的MAC地址进行比对,当获得的MAC地址在所述存储的MAC地址列表中时,所述第三方客户端从存储的MAC地址与无线网络标识的对应关系中获得对应的无线网络标识;
    第三方客户端利用所述获得的无线网络标识向所述MAC地址对应的无线网络发起连接请求;
    第三方客户端利用所述获得的无线网络标识与所述MAC地址对应的无线网络连接成功后,还包括:接收所述连接的无线网络设备/无线网络共享者客户端/服务器发送的推送信息。
  15. 一种实现信息推送的方法,其特征在于,包括:
    第三方终端进入无线共享网络区域,第三方客户端获得所述无线共享网络广播的设备MAC地址;
    第三方客户端将获得的MAC地址与存储的MAC地址列表中的MAC地址进行比对,当获得的MAC地址在所述存储的MAC地址列表中时,所述第三方客户端从存储的MAC地址与无线网络标识及连接密钥的对应关系中获得对应的无线网络标识和连接密钥;
    第三方客户端利用所述获得的无线网络标识和连接密钥向所述MAC地址对应的无线网络发起连接请求;
    第三方客户端利用所述获得的无线网络标识与所述MAC地址对应的无线网络连接成功后,还包括:接收所述连接的无线网络设备/无线网络共享者客户端/服务器发送的推送信息。
  16. 一种实现信息推送的方法,其特征在于,包括:
    第三方终端进入无线共享网络区域,第三方客户端获得所述无线共享网络广播的设备MAC地址第一集合;
    第三方客户端将获得的MAC地址第一集合与存储的同一无线网络共享区域的MAC地址列表中的MAC地址第二集合进行比对,当交集中的MAC地址达到或超过预定数量时,所述第三方客户端从存储的MAC地址与无线网络标识的对应关系中获得所述交集中的MAC地址对应的无线网络标识;
    第三方客户端利用所述获得的无线网络标识中的至少一个向对应MAC地址的无线网络发起连接请求;
    第三方客户端利用所述发起连接请求的无线网络标识与所述MAC地址对应的无线网络连接成功后,还包括:第三方客户端接收所述连接的无线网络设备/无线网络共享者客户端/服务器发送的推送信息。
  17. 一种实现信息推送的方法,其特征在于,包括:
    第三方终端进入无线共享网络区域,第三方客户端获得所述无线共享网络广播的设备MAC地址第一集合;
    第三方客户端将获得的MAC地址第一集合与存储的MAC地址列表中的MAC地址第二集合进行比对,当交集中的MAC地址达到或超过预定数量时,所述第三方客户端从存储的MAC地址与无线网络标识及连接密钥的对应关系中获得所述交集中的MAC地址对应的无线网络标识和连接密钥;
    第三方客户端利用所述获得的无线网络标识和对应连接密钥的至少一对向所述对应MAC地址的无线网络发起连接请求;
    第三方客户端利用所述发起连接请求的无线网络标识和对应连接密钥与所述MAC地址 对应的无线网络连接成功后,还包括:第三方客户端接收所述连接的无线网络设备/无线网络共享者客户端/服务器发送的推送信息。
  18. 如权利要求14-17中任一项所述的方法,其特征在于,所述第三方客户端存储的MAC地址列表以及MAC地址与无线网络标识的对应关系包括:
    所述第三方客户端预先从所述服务器获取并存储的无线网络列表以及MAC地址与无线网络标识的对应关系;
    或,
    第三方终端进入所述无线共享网络区域时,第三方客户端将地理位置发送至服务器,服务器根据第三方客户端的地理位置将第三方客户端所处区域的MAC地址列表以及MAC地址与无线网络标识的对应关系发送至第三方客户端,进而第三方客户端存储该MAC地址列表和MAC地址与无线网络标识的对应关系。
  19. 如权利要求14-17中任一项所述的方法,其特征在于,所述第三方客户端存储的连接密钥包括:
    所述第三方客户端预先从所述服务器获取并存储的连接密钥;
    或,
    第三方终端进入无线共享网络区域时,第三方客户端将地理位置发送至服务器,服务器根据第三方客户端的地理位置将第三方客户端所处区域的MAC地址对应的连接密钥发送至第三方客户端,进而第三方客户端存储该MAC地址对应的连接密钥。
  20. 一种服务器,其特征在于,包括:
    第一接收单元,用于接收无线网络共享者客户端发送的被选定无线网络的第一标识;
    生成单元,用于生成第二标识并发送至所述无线网络共享者客户端;
    第二接收单元,用于接收所述无线网络共享者客户端发送的被选定的所述无线网络的第三标识;
    比较单元,用于比较第二标识与第三标识,并在两者相同时通过验证并登记该无线网络的设备的信息。
  21. 一种服务器,其特征在于,包括:
    第一接收单元,用于接收无线网络共享者客户端发送的被选定无线网络的第一标识及对 应无线网络设备的MAC地址;
    生成单元,用于生成第二标识并发送至所述无线网络共享者客户端;
    第二接收单元,用于接收所述无线网络共享者客户端发送的被选定的所述无线网络的第三标识及对应无线网络设备的MAC地址;
    比较单元,用于比较第二标识与第三标识,并比较第一标识对应无线网络设备的MAC地址与第三标识对应无线网络设备的MAC地址,在比较结果均相同时通过验证。
  22. 如权利要求20或21所述的服务器,其特征在于,还包括:
    第三接收单元,用于接收所述无线网络共享者客户端发送的推送信息;
    通知接收单元,用于接收以下通知:所述服务器接收到第三方终端接入所述无线网络成功的消息后发送所述推送信息至所述第三方终端。
  23. 一种无线网络共享者客户端,其特征在于,包括:
    第一获取单元,用于获取无线网络共享者终端在扫描/存储的无线网络列表中被选定的无线网络的第一标识并发送至服务器;
    第五接收单元,用于所述无线网络共享者客户端接收所述服务器发送的第二标识;
    第二获取单元,用于获取无线网络共享者移动终端更新的无线网络列表并将其中被选定的所述无线网络的第三标识发送至服务器。
  24. 一种无线网络共享者客户端,其特征在于,包括:
    第一获取单元,用于获取无线网络共享者终端在扫描/存储的无线网络列表中被选定的无线网络的第一标识及对应无线网络设备的MAC地址并发送至服务器;
    第五接收单元,用于所述无线网络共享者客户端接收所述服务器发送的第二标识及对应无线网络设备的MAC地址;
    第二获取单元,用于获取无线网络共享者移动终端更新的无线网络列表并将其中被选定的所述无线网络的第三标识及对应无线网络设备的MAC地址发送至服务器。
  25. 如权利要求23或24所述的无线网络共享者客户端,其特征在于,还包括:
    第六接收单元,用于接收以下设置:接收到第三方终端接入所述无线网络成功的消息后发送推送信息至所述第三方终端,
    或,
    通知单元,用于将推送信息发送至所述服务器,并通知所述服务器接收到第三方终端接入所述无线网络成功的消息后发送所述推送信息至所述第三方终端。
  26. 一种第三方客户端,其特征在于,包括:
    第三获取单元,用于在第三方终端进入无线共享网络区域时,获得所述无线共享网络广播的设备MAC地址;
    第四获取单元,用于将获得的MAC地址与存储的MAC地址列表中的MAC地址进行比对,当获得的MAC地址在所述存储的MAC地址列表中时,从存储的MAC地址与无线网络标识的对应关系中获得对应的无线网络标识;
    请求单元,利用所述获得的无线网络标识向所述MAC地址对应的无线网络发起连接请求;
    第七接收单元,用于接收所述连接的无线网络设备/无线网络共享者客户端/服务器发送的推送信息。
  27. 一种第三方客户端,其特征在于,包括:
    第三获取单元,用于在第三方终端进入无线共享网络区域时,获得所述无线共享网络广播的设备MAC地址;
    第四获取单元,用于将获得的MAC地址与存储的MAC地址列表中的MAC地址进行比对,当获得的MAC地址在所述存储的MAC地址列表中时,所述第三方客户端从存储的MAC地址与无线网络标识及连接密钥的对应关系中获得对应的无线网络标识和连接密钥;
    请求单元,利用所述获得的无线网络标识和连接密钥向所述MAC地址对应的无线网络发起连接请求;
    第七接收单元,用于接收所述连接的无线网络设备/无线网络共享者客户端/服务器发送的推送信息。
  28. 一种第三方客户端,其特征在于,包括:
    第三获取单元,用于在第三方终端进入无线共享网络区域时,获得所述无线共享网络广播的设备MAC地址第一集合;
    第四获取单元,用于将获得的MAC地址第一集合与存储的同一无线网络共享区域的MAC地址列表中的MAC地址第二集合进行比对,当交集中的MAC地址达到或超过预定数量时,所述第三方客户端从存储的MAC地址与无线网络标识的对应关系中获得所述交集中 的MAC地址对应的无线网络标识;
    请求单元,用于利用所述获得的无线网络标识中的至少一个向对应MAC地址的无线网络发起连接请求;
    第七接收单元,用于接收所述连接的无线网络设备/无线网络共享者客户端/服务器发送的推送信息。
  29. 一种第三方客户端,其特征在于,包括:
    第三获取单元,用于在第三方终端进入无线共享网络区域时,获得所述无线共享网络广播的设备MAC地址第一集合;
    第四获取单元,用于将获得的MAC地址第一集合与存储的MAC地址列表中的MAC地址第二集合进行比对,当交集中的MAC地址达到或超过预定数量时,所述第三方客户端从存储的MAC地址与无线网络标识及连接密钥的对应关系中获得所述交集中的MAC地址对应的无线网络标识和连接密钥;
    请求单元,用于利用所述获得的无线网络标识和对应连接密钥的至少一对向所述对应MAC地址的无线网络发起连接请求;
    第七接收单元,用于接收所述连接的无线网络设备/无线网络共享者客户端/服务器发送的推送信息。
PCT/CN2015/084338 2014-08-08 2015-07-17 实现信息推送的方法、服务器、共享者客户端、第三方客户端 WO2016019796A1 (zh)

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CN105451188B (zh) 2018-11-16
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