WO2012062049A1 - 移动互联网业务的实现方法、网关、代理及系统 - Google Patents

移动互联网业务的实现方法、网关、代理及系统 Download PDF

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Publication number
WO2012062049A1
WO2012062049A1 PCT/CN2011/070402 CN2011070402W WO2012062049A1 WO 2012062049 A1 WO2012062049 A1 WO 2012062049A1 CN 2011070402 W CN2011070402 W CN 2011070402W WO 2012062049 A1 WO2012062049 A1 WO 2012062049A1
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Prior art keywords
application
terminal
aog
data
proxy
Prior art date
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PCT/CN2011/070402
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English (en)
French (fr)
Inventor
苏勇
黄东
Original Assignee
中兴通讯股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Priority to EP11840588.5A priority Critical patent/EP2627056B1/en
Priority to US13/884,379 priority patent/US9426767B2/en
Priority to KR1020137013667A priority patent/KR101573122B1/ko
Priority to JP2013538033A priority patent/JP5678198B2/ja
Publication of WO2012062049A1 publication Critical patent/WO2012062049A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W60/00Affiliation to network, e.g. registration; Terminating affiliation with the network, e.g. de-registration
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/01Protocols
    • H04L67/04Protocols specially adapted for terminals or networks with limited capabilities; specially adapted for terminal portability
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L65/00Network arrangements, protocols or services for supporting real-time applications in data packet communication
    • H04L65/40Support for services or applications
    • 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
    • H04L67/56Provisioning of proxy services
    • H04L67/563Data redirection of data network streams
    • 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
    • H04L67/56Provisioning of proxy services
    • H04L67/59Providing operational support to end devices by off-loading in the network or by emulation, e.g. when they are unavailable
    • 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
    • H04L67/60Scheduling or organising the servicing of application requests, e.g. requests for application data transmissions using the analysis and optimisation of the required network resources
    • H04L67/63Routing a service request depending on the request content or context
    • 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
    • H04L2101/654International mobile subscriber identity [IMSI] numbers
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L45/00Routing or path finding of packets in data switching networks
    • H04L45/24Multipath
    • 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
    • H04L67/56Provisioning of proxy services
    • H04L67/561Adding application-functional data or data for application control, e.g. adding metadata
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/02Power saving arrangements
    • H04W52/0209Power saving arrangements in terminal devices
    • H04W52/0212Power saving arrangements in terminal devices managed by the network, e.g. network or access point is master and terminal is slave

Definitions

  • the present invention relates to mobile internet technologies, and in particular, to a method, a gateway, an agent and a system for implementing a mobile internet service. Background technique
  • the mobile Internet service combines the advantages of mobile networks and the Internet, which can provide users with voice, data, images, multimedia and other types of services through smartphones.
  • a smart phone is an important part of the mobile Internet business.
  • An application client program that can run a specific function on a smart phone can provide users with personalized, content-related and interactive application experiences through interaction between the smart phone and the application server. .
  • mobile terminals such as chatting on mobile phones or sending and receiving mail by mobile phone.
  • each application on the smartphone needs to establish a long connection to the application server. If a smartphone runs n applications, it will establish n long connections to the application server. Due to the large number of smart phones, if multiple connections are established for each smart phone, the number of long connections in the mobile Internet is quite large. This large number of long connections seriously affects the network performance of the mobile Internet. In addition, since each long connection will periodically initiate a link detection packet to detect, resulting in a large number of detection packets in the network. These additional signaling loads have caused the mobile Internet to do a lot of additional wireless channel allocation and creation for this, resulting in dropped calls, inaccessibility, and network congestion.
  • the application data of the smart phone is large, and most of the application data is uncompressed data, which generates a large amount of data traffic, which has a great impact on the bandwidth of the entire mobile Internet.
  • bandwidth of the mobile Internet is bottlenecked, different mobile Internet applications cannot be treated differently, and some applications with high real-time and high priority cannot be prioritized.
  • the application server needs to actively push data messages to the smartphone application client, it often fails because the smartphone application client is not online, which affects the use of the mobile Internet service.
  • the main object of the present invention is to provide a method, a gateway, a proxy, and a system for implementing a mobile Internet service, aiming at saving network resources and improving network performance.
  • An implementation method of an AOG mobile internet service comprising: an always-on gateway AOG receiving a first registration request sent by a terminal application proxy, and establishing a first data link with the terminal application proxy according to the first registration request, where The terminal application proxy is configured to perform application data forwarding between the at least one application client and the AOG on the terminal; the AOG receives at least one a second registration request sent by the application server, establishing a second data link with the at least one application server according to the second registration request; the AOG passes the terminal application proxy, the first data link, and The second data link forwards application data between the at least one application client on the terminal and the at least one application server.
  • the step of forwarding, by the AOG, the application data between the at least one application client on the terminal and the at least one application server by using the terminal application proxy, the first data link, and the second data link The AOG receives, by using the first data link, a first application data packet of the at least one application client on the terminal that is forwarded by the terminal application proxy, where the first application data packet is encapsulated by an always-online protocol AOP, and Carrying an international mobile subscriber identity IMSI number of the terminal and an application ID number; forwarding the first application data packet to the corresponding application server by using the second data link according to the ID number.
  • the step of forwarding, by the AOG, the application data between the at least one application client on the terminal and the at least one application server by using the terminal application proxy, the first data link, and the second data link The AOG receives, by using the second data link, the second application data packet sent by the at least one application server, where the second application data packet is encapsulated by AOP, and carries the terminal number and the application ID number; Transmitting, by the terminal number, the second application data packet to the terminal application proxy by using the first data link, and forwarding, by the terminal application proxy, the second application data packet to a corresponding application according to the ID number Client.
  • the method further includes: sending, by the AOG, a wakeup message to the terminal application proxy, where the terminal application proxy is The wake-up message establishes the first data link with the AOG.
  • the AOG forwards the application data, specifically: the AOG forwards the application data according to the priority of the application data.
  • a method for implementing a mobile internet service comprising: a terminal application agent to a terminal Obtaining an application client for registration; obtaining an IP address of the end user home AOG from the always-on gateway domain name system AOG DNS; transmitting, to the AOG, a first registration request carrying the IP address, according to the AOG
  • the first registration request establishes a first data link with the terminal application proxy; the application data is forwarded between the at least one application client and the AOG on the terminal by the first data link, and the AOG passes the AOG
  • the second data link established with the corresponding application server forwards the application data to the corresponding application server.
  • a gateway for mobile Internet services including:
  • a data link establishing module configured to receive a first registration request sent by the terminal application proxy, and establish a first data link with the terminal application proxy according to the first registration request, where the terminal application proxy is used to Transmitting application data between the at least one application client and the gateway on the terminal; receiving a second registration request sent by the at least one application server, establishing a relationship with the at least one application server according to the second registration request Two data links;
  • An application data delivery module configured to perform, by the terminal application proxy, the first data link, and the second data link, between at least one application client on the terminal and the at least one application server Forwarding of application data.
  • the application data delivery module includes:
  • An application data receiving unit configured to receive, by using the first data link, a first application data packet of the at least one application client on the terminal that is forwarded by the terminal application proxy, where the first application data packet is encapsulated in an AOP, And carrying the IMSI number of the terminal and the application ID number;
  • an application data forwarding unit configured to forward the first application data packet to the corresponding application server by using the second data link according to the ID number.
  • the application data receiving unit is further configured to receive, by using the second data link, a second application data packet sent by the at least one application server, where the second application data packet is encapsulated by an AOP, and carries a terminal number and Application ID number;
  • the application data forwarding unit is further configured to: use the second application number according to the terminal number
  • the packet is forwarded to the terminal application proxy by the first data link, and the terminal application proxy forwards the second application data packet to the corresponding application client according to the ID number.
  • the application data delivery module further includes: a wake-up unit, configured to send, before the application data forwarding unit forwards the second application data packet to the terminal application proxy by using the terminal number according to the terminal number Wake up a message to the terminal application proxy, and the terminal application proxy establishes the first data link with the gateway according to the wakeup message.
  • a wake-up unit configured to send, before the application data forwarding unit forwards the second application data packet to the terminal application proxy by using the terminal number according to the terminal number Wake up a message to the terminal application proxy, and the terminal application proxy establishes the first data link with the gateway according to the wakeup message.
  • a terminal application agent for mobile internet services including:
  • the application client registration unit is configured to register at least one application client on the terminal;
  • the address information obtaining unit is configured to obtain an IP address of the AOG to which the terminal user belongs from the AOG DNS;
  • a registration request sending unit configured to send, to the AOG, a first registration request that carries the IP address, where the AOG establishes a first data link with the terminal application proxy according to the first registration request;
  • a data forwarding unit configured to perform application data forwarding between the at least one application client and the AOG on the terminal by using the first data link, and the second data link established by the AOG and the corresponding application server by using the AOG
  • the application data is forwarded to the corresponding application server.
  • a system for a mobile Internet service comprising a terminal application proxy and an AOG, wherein: the terminal application proxy is configured to register at least one application client on the terminal; and send a first registration request to the AOG;
  • the AOG is configured to receive a first registration request sent by the terminal application proxy, establish a first data link with the terminal application proxy according to the first registration request, and receive a second registration request sent by the at least one application server, where Establishing a second data link with the at least one application server according to the second registration request; using the terminal application proxy, the first data link, and the second data link at the terminal At least one application client on the Transfer of application data between one application server.
  • the system further includes: an AOG DNS, configured to provide the terminal application proxy with an IP address of the AOG to which the terminal user belongs.
  • the method, the gateway, the agent and the system for implementing the mobile internet service proposed by the present invention establish an AOI system between the terminal and the AOG, respectively, and establish a data link between the AOG and the terminal application agent, and between the AOG and the application server, The AOG forwards the application data between the application client and the application server on the terminal through the established data link.
  • the present invention has the following advantages:
  • FIG. 1 is a schematic flow chart of an embodiment of an AOG-based mobile internet service according to an embodiment of the present invention
  • FIG. 2 is an embodiment of an implementation method of an AOG-based mobile internet service according to the present invention.
  • FIG. 3 is a method for implementing an A0G-based mobile Internet service according to an embodiment of the present invention.
  • the A0G uses at least one application client and at least one application server on the terminal through the terminal application proxy, the first data link, and the second data link.
  • FIG. 4 is a schematic flow chart of another embodiment of an implementation method of an A0G-based mobile internet service according to the present invention.
  • FIG. 5 is a schematic structural diagram of a gateway of a mobile internet service according to the present invention.
  • FIG. 6 is a schematic structural diagram of an application data delivery module in a gateway of a mobile internet service according to the present invention.
  • FIG. 7 is a schematic structural diagram of an embodiment of a terminal application proxy of an AOG-based mobile internet service according to the present invention.
  • FIG. 8 is a block diagram showing an embodiment of a system for AOG-based mobile internet service according to the present invention. detailed description
  • the solution of the embodiment of the present invention is mainly: establishing an AOG (Always Online Gateway) and each application client on the terminal, and a data link between the AOG and the application server, and the AOG establishes a data link at the terminal.
  • the application data is transmitted between the application client and the application server, thereby providing a unified data transmission channel for each application client and the application server on the terminal, reducing the consumption of network resources by the mobile internet application, and providing application data connection.
  • management and optimization control to improve the performance of mobile Internet.
  • an embodiment of the present invention provides an implementation method of a mobile internet service based on AOG, including:
  • Step 101 The AOG receives a first registration request sent by the terminal application proxy, and establishes a first data link with the terminal application proxy according to the first registration request.
  • the terminal application proxy is configured to perform application data forwarding between the at least one application client and the AOG on the terminal.
  • Step 102 The AOG receives a second registration request sent by the at least one application server, and establishes a second data link with the at least one application server according to the second registration request.
  • the method operating environment involves the mobile Internet.
  • an AOI Automatically Online Infrastructure
  • the AOI system includes: an AOG terminal middleware, that is, a terminal application proxy, an AOG, and an AOG DNS (Always Online Gateway Domain Name System) in this embodiment, where:
  • the terminal application agent is a general-purpose software module preset on a smart terminal such as a mobile phone, and can be installed as a program on the smart terminal, and ensures that the program is automatically run in the background every time the smart terminal starts. It mainly provides control and management functions for applications on smart terminals, such as management of application client registration on smart terminals, establishment of connection to AOG, message forwarding between terminal application client and AOG, and so on.
  • AOG a functional entity that runs on the mobile Internet.
  • the AOG provides two-part access to the external device, accessing the intelligent terminal installed with the terminal application agent, and accessing the application server on the other side, and providing forwarding and control of application data between the two parts of the access entity.
  • the AOG forwards the application data by using the dedicated AOP (Always Online Protocol), which is defined on the network layer and specifies how to process and transfer the application's uplink and downlink messages. Send, but the protocol itself does not change the content of the application data.
  • AOP Always Online Protocol
  • the AOG DNS is used to provide a domain name access service to the terminal application proxy and the AOG.
  • the terminal application proxy requests the AOG DNS to obtain the IP address and service capability of the terminal home AOG, and the AOG requests the AOG DNS to obtain the terminal number and other related attributes.
  • the terminal is an intelligent terminal installed with the terminal application proxy function software, that is, the AOG terminal, and the mobile terminal is taken as an example, and the terminal application proxy may be preset on the mobile terminal, or downloaded to the mobile terminal through downloading.
  • the mobile operating system automatically runs the program in the background each time the phone starts.
  • the application client in the mobile terminal that is, the application client, registers and registers with the terminal application agent after the program is installed or started, and accepts the terminal application agent to manage it.
  • the specific process is as follows: First, install the application on the mobile terminal.
  • the client program sends an registration request to the terminal application proxy after the application client program is installed, and then the terminal application proxy returns a registration message response to the application client, and the terminal application proxy reports the registration information to the AOG. Finally, the AOG returns the registration to the terminal application proxy. response.
  • the software function of the terminal application agent is completed by the terminal.
  • the system formed by the terminal application proxy, the AOG, the AOG DNS, and the application server implements the forwarding of application data between the application client and the application server on the terminal through a unified data transmission channel.
  • the terminal application proxy and the application server respectively need to register with the AOG to establish a data link between the terminal application proxy and the AOG, and a data link between the application server and the AOG.
  • the terminal sends a short message to the short message center, and the called number is a preset AOG DNS access number, and the short message content is the IMSI (International Mobile Subscriber Identification Number) number of the terminal; afterwards, the short message center forwards the short message to the short message.
  • Gateway the short message is forwarded by the SMS gateway to the AOG DNS, and the AOG DNS records the IMSI number and The correspondence between the calling party's terminal number, such as MSISDN (Mobile Subscriber International ISDN Number).
  • the terminal application proxy sends a registration message to the AOG DNS, where the registration message carries the IMSI number of the terminal; after receiving the registration message sent by the terminal application proxy, the AOG DNS sends a registration response message to the terminal application proxy, and carries the registration response message in the registration response message.
  • Information such as the IP address and port number of the AOG to which the end user belongs.
  • the terminal application proxy sends a first registration request to the AOG, where the first registration request carries the IP address and port number information of the AOG to which the terminal user belongs, so that the AOG applies the proxy to the terminal according to the first registration request sent by the terminal application proxy. Perform authentication, registration and registration.
  • the AOG receives the second registration request sent by the application server to authenticate, register, and register the application server.
  • the terminal identity is authenticated according to the IP address and port number of the AOG to which the terminal user belongs in the first registration request, and if If the authentication succeeds, the first registration request is registered, and after the registration is successful, a data link is established between the terminal application proxy and the AOG, that is, the first data link in the embodiment, The first data link will serve as the application common link for each application client on the terminal. After the request is successfully registered, the AOG will also request the terminal number from the AOG DNS.
  • the AOG forwards the application data by the AOG to the corresponding application server through the second data link between the application server and the AOG.
  • the second registration request sent by the application server is also authenticated by the AOG, for example, if the username or password provided by the application server is correct, if the authentication succeeds, Establish a second data link between the AOG and the application server
  • the second data link may be one, two or more links, which will serve as a link shared between the application client and the application server on all terminals.
  • Step 103 The AOG forwards application data between the at least one application client on the terminal and the at least one application server by using the terminal application proxy, the first data link, and the second data link.
  • the terminal application proxy when the application client in the terminal needs to send the application data to the corresponding application server, the terminal application proxy performs AOP encapsulation on the application client application data to form an AOP packet, that is, in this embodiment.
  • the first application data packet is referred to, and the first application data packet includes information such as an IMSI number of the terminal and an application ID.
  • the terminal application proxy sends the first application data packet to the AOG in the AOP message through the first data link.
  • the AOG After receiving the AOP message sent by the terminal application proxy, the AOG first performs an authentication process, such as determining, based on the subscription relationship, whether the terminal application proxy has the right to send a message to the application client. If the authentication is passed, the AOG performs routing according to the application ID in the AOP header, and after finding the corresponding application server, selects one of the second data links established by the application server and the AOG, and then passes the AOP message through the chain. The road is sent to the corresponding application server.
  • an authentication process such as determining, based on the subscription relationship, whether the terminal application proxy has the right to send a message to the application client. If the authentication is passed, the AOG performs routing according to the application ID in the AOP header, and after finding the corresponding application server, selects one of the second data links established by the application server and the AOG, and then passes the AOP message through the chain. The road is sent to the corresponding application server.
  • the application server After receiving the AOP message, the application server parses the first application data packet in the AOP message, extracts the application data, and then performs subsequent processing according to the corresponding business process.
  • the application server when the application server needs to send application data to the terminal application client, the application server encapsulates the application data into AOP, forms a second application data packet, and then selects one of the second data links established with the AOG.
  • the second application data packet is sent to the AOG by using the AOP message, and the AOP message carries information such as a terminal number and an application ID.
  • the AOG After receiving the AOP message sent by the application server, the AOG authenticates the AOP message according to the information such as the terminal number obtained from the AOG DNS in advance, and determines whether the application server has the right to deliver the application data to the terminal application proxy. If the authentication is passed, the AOG finds the first data link established by the terminal application proxy and the AOG by using the terminal number, and passes the AOP message through the first A data link is sent to the terminal application proxy. After receiving the AOP message sent by the AOG, the terminal application proxy parses the second application data packet in the AOP message, extracts the application data therein, and then according to the AOP message header. The application ID is judged, and the application data should be sent to the application client in the terminal, thereby forwarding the application data to the corresponding application client.
  • the terminal application proxy After receiving the AOP message sent by the AOG, the terminal application proxy parses the second application data packet in the AOP message, extracts the application data therein, and then according to the AOP message header. The application ID is judge
  • a compression mechanism is applied to the application data, that is, the application data is encapsulated and packaged. Therefore, in order to reduce the network load and reduce the application data transmission traffic, the terminal application proxy or the application server may perform the application data. Compressed, and carries control information about whether compression and compression algorithms, etc., in the AOP header.
  • the AOG may also determine different levels of application data for different applications according to the priority of the application. For applications with high priority, the application data is processed and forwarded preferentially; or the application data of different priority applications are processed according to different weight ratios according to the priority weight.
  • step 103 includes:
  • Step 1031 The AOG receives, by using the first data link, the first application data packet of the at least one application client on the terminal that is forwarded by the terminal application proxy, where the first application data packet is encapsulated by the AOP, and carries the IMSI number of the terminal and the application ID number. ;
  • Step 1032 Forward the first application data packet to the corresponding application server by using the second data link according to the application ID number.
  • Step 1033 The AOG receives the second application data packet sent by the at least one application server by using the second data link, where the second application data packet is encapsulated by the AOP, and carries the terminal number and the application ID number.
  • Step 1034 Forward the second application data packet to the terminal application proxy according to the terminal number, and forward, by the terminal application proxy, the second application data packet to the corresponding application client according to the ID number.
  • step 103 after step 1032, Can include:
  • Step 10321 Receive a response message returned by the corresponding application server, and forward the response message to the terminal application proxy, where the terminal application proxy forwards the response message to the corresponding application client on the terminal.
  • the terminal application proxy forwards the response message returned by the application server to the application client. If the application client does not need to obtain the final transmission result of the application data packet, the terminal application proxy immediately returns a response message to the application client after receiving the application data packet.
  • step 1034 It may also include before step 1034:
  • Step 10341 the AOG sends a wake-up message to the terminal application proxy, and the terminal application proxy establishes a first data link with the AOG according to the wake-up message.
  • the AOG may send a wakeup message to the terminal application proxy, so that the terminal application proxy starts the designation according to the message content.
  • the application client program, and then the terminal application agent establishes a connection to the AOG to establish a first data link.
  • the AOG delivers application data to the terminal application proxy through the first data link, and then the terminal application proxy forwards the application data to the corresponding application client.
  • the AOG accessed by the application server is not the same AOG as the AOG accessed by the terminal application proxy, after the terminal application proxy sends the application data to the AOG to which the terminal user belongs, The AOG to which the terminal user belongs forwards the application data to the AOG accessed by the application server, and then the AOG accessed by the application server forwards the application data to the application server.
  • the processing can be performed according to the principle.
  • step 1034 if the application server carries parameters in the interaction information with the AOG indicating that the final transmission result of the application data packet needs to be acquired, the AOG forwards the response message returned by the terminal application proxy to the application server. If the application server does not need to obtain the final transmission result of the application data packet, the AOG immediately returns a response message to the application server after receiving the application data packet sent by the application server.
  • the application server performs data through the end-to-end connection and the terminal application client. If the number of terminals is M and the number of application services is N, the maximum number of applications available on one terminal is also N, and the total number of connections of M terminals can reach M*N. As the number of terminals M and the number of applications N increase, the number of connections M*N is expanded by geometric progression, which has a great impact on the mobile Internet.
  • a unified message transmission channel and a control management mechanism are provided between the terminal application proxy and the application server by means of the terminal application proxy and the AOG, and the characteristics are as follows: 1) multiple application clients on the terminal can share one Data connection, which effectively converges a large number of data connections existing in the mobile Internet today. For example, if the number of terminals is M and the number of application services is N, the number of connections can be reduced to M+ after using the method of this embodiment.
  • N The reduction of the number of connections can reduce the number of signaling loads in the mobile Internet, while reducing the network data load and the power consumption of the terminal battery; 3) providing a long online mode for the terminal through the shared data connection, And provide a message wake-up mechanism, so that the application server can actively push data to the terminal application client at any time; 4) provide various functions such as compression, priority service, flow control, etc., and more effectively improve the user's service experience; 5) application server Share data connections with multiple terminal application clients, reducing the connection to the application server Required processing power.
  • another embodiment of the present invention provides an implementation method of a mobile internet service based on AOG, including:
  • Step 401 The terminal application proxy registers at least one application client on the terminal.
  • Step 402 Obtain an IP address of an AOG to which the terminal user belongs from the AOG DNS.
  • Step 403 Send a first registration request carrying an IP address to the AOG, where the AOG establishes a relationship with the terminal application proxy according to the first registration request. a data link;
  • Step 404 Perform application data forwarding between the at least one application client and the A0G on the terminal by using the first data link, and forward the application data to the corresponding data by the AOG through the second data link established by the AOG and the corresponding application server.
  • Application server Perform application data forwarding between the at least one application client and the A0G on the terminal by using the first data link, and forward the application data to the corresponding data by the AOG through the second data link established by the AOG and the corresponding application server.
  • an embodiment of the present invention provides a gateway for a mobile Internet service, including: a data link establishing module 501 and an application data delivery module 502, where:
  • a data link establishing module 501 configured to receive a first registration request sent by the terminal application proxy, and establish a first data link with the terminal application proxy according to the first registration request, where the terminal application proxy is used in the terminal Receiving application data forwarding between the at least one application client and the gateway; receiving a second registration request sent by the at least one application server, and establishing a second data link with the at least one application server according to the second registration request;
  • the gateway is an AOG.
  • the system formed by the terminal application proxy, the AOG, the AOG DNS, and the application server implements application data forwarding between the application client and the application server on the terminal through a unified data transmission channel.
  • the terminal application proxy and the application server respectively need to register with the AOG to establish a data link between the terminal application proxy and the AOG and a data link between the application server and the AOG.
  • the terminal sends a short message to the short message center, the called number is a preset AOG DNS access number, and the short message content is the IMSI number of the terminal; afterwards, the short message center forwards the short message to the short message gateway, and the short message gateway forwards the short message to the AOG DNS, AOG
  • the DNS records the correspondence between the IMSI number and the short message calling MSISDN.
  • the terminal application proxy sends a registration message to the AOG DNS, which is carried in the registration message.
  • the IMSI number of the terminal after receiving the registration message sent by the terminal application proxy, the AOG DNS sends a registration response message to the terminal application proxy, where the registration response message carries information such as the IP address and port number of the AOG to which the terminal user belongs.
  • the terminal application proxy sends a first registration request to the AOG, where the first registration request carries the IP address and port number information of the AOG to which the terminal user belongs, so that the AOG applies the proxy to the terminal according to the first registration request sent by the terminal application proxy. Perform authentication, registration and registration.
  • the AOG receives the second registration request sent by the application server to authenticate, register, and register the application server.
  • the terminal identity is authenticated according to the IP address and port number of the AOG to which the terminal user belongs in the first registration request, and if If the authentication succeeds, the first registration request is registered, and after the registration is successful, a data link is established between the terminal application proxy and the AOG, that is, the first data link in the embodiment,
  • the first data link will serve as the application common link for each application client on the terminal. If an application client on the terminal needs to send application data to the application server, it is no longer necessary to establish a connection with the application server separately, but only the application data that needs to be transmitted is sent by the terminal application proxy through the first data link.
  • the AOG forwards the application data by the AOG to the corresponding application server through the second data link between the application server and the AOG.
  • the second registration request sent by the application server is also authenticated by the AOG. If the authentication succeeds, the second data link between the AOG and the application server is established.
  • the second data link may be one, two or more links, which will serve as a link shared between the application client and the application server on all terminals.
  • the application data delivery module 502 is configured to forward application data between the at least one application client and the at least one application server on the terminal by using the terminal application proxy, the first data link, and the second data link.
  • the terminal application proxy performs AOP encapsulation on the application client application data to form an AOP packet, that is, in the embodiment.
  • the first application data packet is included, and the first application data packet includes information such as an IMSI number of the terminal and an application ID.
  • the terminal application proxy sends the first application data packet to the AOG in the AOP message through the first data link.
  • the AOG After receiving the AOP message sent by the terminal application proxy, the AOG first performs an authentication process to determine whether the terminal application proxy has the right to send a message to the application client. If the authentication is passed, the AOG performs routing according to the application ID in the AOP header, and after finding the corresponding application server, selects one of the second data links established by the application server and the AOG, and then passes the AOP message through the chain. The road is sent to the corresponding application server.
  • the application server After receiving the AOP message, the application server parses the first application data packet in the AOP message, extracts the application data, and then performs subsequent processing according to the corresponding business process.
  • the application server when the application server needs to send application data to the terminal application client, the application server performs AOP encapsulation on the application data to form a second application data packet, and then selects one of the second data links established with the AOG to pass The link sends the second application data packet to the AOG by using the AOP message, where the AOP message carries information such as the terminal number and the application ID.
  • the AOG After receiving the AOP message sent by the application server, the AOG authenticates the AOP message according to the information such as the terminal number obtained from the AOG DNS in advance, and determines whether the application server has the right to deliver the application data to the terminal application proxy. If the authentication is passed, the AOG finds the first data link established by the terminal application proxy and the AOG by using the terminal number, and sends the AOP message to the terminal application proxy through the first data link, and the terminal application proxy receives the AOG. After the AOP message is sent, the second application data packet in the AOP message is parsed, the application data is extracted, and then the application ID is determined according to the application ID in the AOP message header, and the application data should be sent to the application client in the terminal. End, thereby forwarding application data to the corresponding application client.
  • the AOG After receiving the AOP message sent by the application server, the AOG authenticates the AOP message according to the information such as the terminal number obtained from the AOG DNS in advance, and determines whether the application server has the right to
  • a compression mechanism is applied to the application data, that is, The application data is encapsulated and packaged. Therefore, in order to reduce the network load and reduce the application data transmission traffic, the terminal application proxy or the application server may compress the application data, and carry control information about whether compression and compression algorithms are included in the AOP header. .
  • the AOG can preferentially process and forward the application data according to the application of the application; or according to the priority weight, the application data of the different priority applications are proportioned according to different weights. Process it.
  • the application data delivery module 502 includes: an application data receiving unit 5021 and an application data forwarding unit 5022, wherein:
  • the application data receiving unit 5021 is configured to receive, by using the first data link, a first application data packet of the at least one application client on the terminal forwarded by the terminal application proxy, where the first application data packet is encapsulated by AOP, and carries the terminal IMSI number and application ID number;
  • the application data forwarding unit 5022 is configured to forward the first application data packet to the corresponding application server by using the second data link according to the application ID number;
  • the application data delivery module 502 further includes: a waking unit 5023, configured to send the awake message to the terminal application before the application data forwarding unit 5022 forwards the second application data packet to the terminal application proxy according to the ID number according to the ID number.
  • the proxy establishes a first data link with the AOG according to the wakeup message by the terminal application proxy.
  • the application data receiving unit 5021 is further configured to receive, by using the second data link, the second application data packet sent by the at least one application server, where the second application data packet is encapsulated by the AOP, and carries the IMSI number of the terminal and the application ID. number;
  • the application data forwarding unit 5022 is further configured to forward the second application data packet to the terminal application proxy by using the first data link according to the terminal number, and the terminal application proxy forwards the second application data packet to the corresponding application client according to the ID number. .
  • the terminal application proxy includes: an application client registration unit 701, an address information acquisition unit 702, a registration request sending unit 703, and a data forwarding unit 704, where:
  • the application client registration unit 701 is configured to register at least one application client on the terminal;
  • the address information obtaining unit 702 is configured to obtain, from the AOG DNS, an IP address of the AOG to which the terminal user belongs;
  • a registration request sending unit 703, configured to send a first registration request carrying an IP address to the AOG, where the AOG establishes a first data link with the terminal application proxy according to the first registration request;
  • the data forwarding unit 704 is configured to perform application data forwarding between the at least one application client and the AOG on the terminal by using the first data link, and the second data link established by the AOG and the corresponding application server by the AOG is applied. The data is forwarded to the corresponding application server.
  • an embodiment of the present invention provides an AOG-based mobile Internet service system, including a terminal application proxy 801 and an AOG 803 connected to an application server 802, where:
  • a terminal application proxy 801 configured to register at least one application client on the terminal, and send a first registration request to the AOG 803;
  • An application server 802 configured to send a second registration request to the AOG 803;
  • the AOG 803 is configured to receive a first registration request sent by the terminal application proxy 801, establish a first data link with the terminal application proxy 801 according to the first registration request, and receive a second registration request sent by the at least one application server 802. Establishing a second data link with the at least one application server 802 according to the second registration request; at least one application client and at least one of the terminal application agent 801, the first data link, and the second data link on the terminal Application data is forwarded between application servers 802.
  • system further includes an AOG DNS 804 for applying the proxy 801 to the terminal.
  • AOG 803 provides domain name access services.
  • the AOG 803 may be the gateway described in the above embodiment.
  • the method, the gateway and the system for implementing the mobile internet service in the embodiment of the present invention establish an AOI system between the terminal application proxy and the AOG, respectively establish a data link between the AOG and the terminal application proxy, and between the AOG and the application server, and the AOG passes The established data link transmits application data between the application client and the application server on the terminal.
  • the present invention provides a unified data transmission channel for the terminal and the application server, and converges the existing mobile Internet.
  • a large number of data connections reduce the number of link detection packets that exist in it, reduce network load, reduce the consumption of network resources by mobile Internet applications, and improve the performance of mobile Internet.
  • For application service providers reduce the number of connections and connections established by terminals.

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Description

移动互联网业务的实现方法、 网关、 代理及系统 技术领域
本发明涉及移动互联网技术, 尤其涉及一种移动互联网业务的实现方 法、 网关、 代理及系统。 背景技术
目前, 作为一项新兴的网络业务, 移动互联网业务结合了移动网络和 互联网的优势, 其可以通过智能手机给用户提供话音、 数据、 图像、 多媒 体等多种类型的业务。 智能手机是移动互联网业务中的一个重要环节, 在 智能手机上可以运行特定功能的应用客户端程序, 通过智能手机与应用服 务器的交互, 可以给用户提供个性化、 内容关联和交互作业的应用体验。 随着智能手机的逐渐普及, 越来越多的用户习惯于将自己日常生活与曰常 工作中的习惯业务通过手机终端来完成, 比如用手机聊天或用手机收发邮 件等等。
但是, 随着智能手机中移动互联网业务的大量使用, 也逐步暴露出以 下问题:
由于当前移动互联网业务在实现时, 智能手机上的每个应用都需要建 立一个长连接到应用服务器, 如果一个智能手机运行了 n个应用, 则会建 立 n条长连接到应用服务器。 由于智能手机的数量很大, 如果每个智能手 机建立多条连接, 则导致移动互联网中的长连接数相当庞大, 这种超大数 量的长连接严重影响了移动互联网的网络性能。 此外, 由于每条长连接上 会定时发起链路检测包来检测, 导致网络中检测包非常多。 这些额外的信 令负荷使得移动互联网为此做了很多额外的无线信道分配和创建, 导致掉 话、 无法接入、 网络拥塞等问题。 另外, 相比普通手机用户, 智能手机的应用数据量很大, 而且大多数 应用数据为非压缩数据, 由此产生了大量的数据流量, 对整个移动互联网 的带宽产生了很大的冲击。 在移动互联网的带宽出现瓶颈时, 无法对不同 的移动互联网应用进行区分对待, 无法对一些实时性高、 优先级高的应用 提供优先处理。 当应用服务器需要主动推送数据消息给智能手机应用客户 端时, 往往因为智能手机应用客户端不在线而无法成功, 影响了移动互联 网业务的使用。
同时, 对于应用服务提供商, 由于每个使用该应用的终端都要和应用 服务器建立一个长连接, 在终端数很大的情况下, 应用服务器需要建立非 常大数量的长连接, 由于每台应用服务器建立的连接数是有限的, 为此应 用提供商不得不釆用很多应用服务器来完成该功能, 增加了应用提供商的 建设难度。
因此, 现有技术的移动互联网中, 由于应用服务器通过端到端的连接 与终端应用客户端进行数据交互, 随着终端数与应用数的不断增加, 连接 数以几何级数扩大, 不仅增加了移动互联网应用对网络资源的消耗, 而且 给移动互联网络造成极大的冲击, 严重影响了移动互联网的网络性能, 进 一步增加了应用提供商的建设难度。 发明内容
有鉴于此, 本发明的主要目的在于提供一种移动互联网业务的实现方 法、 网关、 代理及系统, 旨在节省网络资源, 提高网络使用性能。
为了解决上述技术问题, 本发明的技术方案是这样实现的:
一种 AOG的移动互联网业务的实现方法, 包括: 永远在线网关 AOG 接收终端应用代理发送的第一注册请求, 根据所述第一注册请求建立与终 端应用代理之间的第一数据链路, 其中, 所述终端应用代理用于在终端上 的至少一个应用客户端与 AOG之间进行应用数据转发; AOG接收至少一 个应用服务器发送的第二注册请求, 根据所述第二注册请求建立与所述至 少一个应用服务器之间的第二数据链路; AOG通过所述终端应用代理、 所 述第一数据链路以及所述第二数据链路在所述终端上的至少一个应用客户 端与所述至少一个应用服务器之间进行应用数据的转发。
所述 AOG通过终端应用代理、所述第一数据链路以及所述第二数据链 路在所述终端上的至少一个应用客户端与所述至少一个应用服务器之间进 行应用数据的转发的步骤包括: AOG通过所述第一数据链路接收所述终端 应用代理转发的所述终端上的至少一个应用客户端的第一应用数据包, 所 述第一应用数据包以永远在线协议 AOP封装, 并携带有终端的国际移动用 户识别码 IMSI号以及应用 ID号;根据所述 ID号将所述第一应用数据包通 过所述第二数据链路转发至对应的应用服务器。
所述 AOG通过终端应用代理、所述第一数据链路以及所述第二数据链 路在所述终端上的至少一个应用客户端与所述至少一个应用服务器之间进 行应用数据的转发的步骤包括: AOG通过所述第二数据链路接收所述至少 一个应用服务器发送的第二应用数据包,所述第二应用数据包以 AOP封装, 并携带有终端号码以及应用 ID号; 根据所述终端号码将所述第二应用数据 包通过所述第一数据链路转发至所述终端应用代理, 由所述终端应用代理 根据所述 ID号将所述第二应用数据包转发至相应的应用客户端。
所述根据终端号码将所述第二应用数据包通过所述第一数据链路转发 至终端应用代理的步骤之前还包括: AOG发送唤醒消息至所述终端应用代 理, 由所述终端应用代理根据所述唤醒消息与 AOG 建立所述第一数据链 路。
所述 AOG进行应用数据的转发, 具体为: AOG根据应用数据的优先 级对应用数据进行转发。
一种移动互联网业务的实现方法, 包括: 终端应用代理对终端上的至 少一个应用客户端进行注册; 从永远在线网关域名系统 AOG DNS中获取 终端用户归属 AOG的 IP地址; 向所述 AOG发送携带有所述 IP地址的第 一注册请求, 由所述 AOG根据所述第一注册请求建立与该终端应用代理之 间的第一数据链路; 通过所述第一数据链路在终端上的至少一个应用客户 端与 AOG之间进行应用数据转发, 由 AOG通过该 AOG与对应的应用服 务器建立的第二数据链路将所述应用数据转发至所述对应的应用服务器。
一种移动互联网业务的网关, 包括:
数据链路建立模块, 用于接收终端应用代理发送的第一注册请求, 根 据所述第一注册请求建立与终端应用代理之间的第一数据链路, 其中, 所 述终端应用代理用于在终端上的至少一个应用客户端与所述网关之间进行 应用数据转发; 接收至少一个应用服务器发送的第二注册请求, 根据所述 第二注册请求建立与所述至少一个应用服务器之间的第二数据链路;
应用数据传递模块, 用于通过所述终端应用代理、 所述第一数据链路 以及所述第二数据链路在所述终端上的至少一个应用客户端与所述至少一 个应用服务器之间进行应用数据的转发。
所述应用数据传递模块包括:
应用数据接收单元, 用于通过所述第一数据链路接收所述终端应用代 理转发的所述终端上的至少一个应用客户端的第一应用数据包, 所述第一 应用数据包以 AOP封装, 并携带有终端的 IMSI号以及应用 ID号;
应用数据转发单元, 用于根据所述 ID号将所述第一应用数据包通过所 述第二数据链路转发至对应的应用服务器。
所述应用数据接收单元, 还用于通过所述第二数据链路接收所述至少 一个应用服务器发送的第二应用数据包,所述第二应用数据包以 AOP封装, 并携带有终端号码以及应用 ID号;
所述应用数据转发单元, 还用于根据所述终端号码将所述第二应用数 据包通过所述第一数据链路转发至所述终端应用代理, 由所述终端应用代 理根据所述 ID号将所述第二应用数据包转发至相应的应用客户端。
所述应用数据传递模块还包括: 唤醒单元, 用于在应用数据转发单元 根据所述终端号码将所述第二应用数据包通过所述第一数据链路转发至所 述终端应用代理之前, 发送唤醒消息至所述终端应用代理, 由所述终端应 用代理根据所述唤醒消息与所述网关建立所述第一数据链路。
一种移动互联网业务的终端应用代理, 包括:
应用客户端注册单元, 用于对终端上的至少一个应用客户端进行注册; 地址信息获取单元, 用于从 AOG DNS 中获取所述终端用户归属的 AOG的 IP地址;
注册请求发送单元, 用于向所述 AOG发送携带有所述 IP地址的第一 注册请求, 由所述 AOG根据所述第一注册请求建立与该终端应用代理之间 的第一数据链路;
数据转发单元, 用于通过所述第一数据链路在终端上的至少一个应用 客户端与 AOG之间进行应用数据转发, 由 AOG通过该 AOG与对应的应 用服务器建立的第二数据链路将所述应用数据转发至所述对应的应用服务 器。
一种移动互联网业务的系统, 包括终端应用代理以及 AOG, 其中: 所述终端应用代理, 用于对终端上的至少一个应用客户端进行注册; 向所述 AOG发送第一注册请求;
所述 AOG, 用于接收终端应用代理发送的第一注册请求, 根据所述第 一注册请求建立与终端应用代理之间的第一数据链路; 接收至少一个应用 服务器发送的第二注册请求, 根据所述第二注册请求建立与所述至少一个 应用服务器之间的第二数据链路; 通过所述终端应用代理、 所述第一数据 链路以及所述第二数据链路在所述终端上的至少一个应用客户端与所述至 少一个应用服务器之间进行应用数据的转发。
所述系统还包括: AOG DNS, 用于为终端应用代理提供终端用户归属 的 AOG的 IP地址。
本发明提出的一种移动互联网业务的实现方法、 网关、 代理及系统, 通过在终端与 AOG之间设置 AOI系统, 分别建立 AOG与终端应用代理、 以及 AOG与应用服务器之间的数据链路, AOG通过建立的数据链路在终 端上各应用客户端与应用服务器之间进行应用数据的转发, 相比现有技术 , 本发明具有如下优点:
1、 为终端上各应用客户端与应用服务器提供统一的数据传输通道, 收 敛现今移动互联网中存在的大量数据连接, 减少其中存在的大量链路检测 包, 降低网络负荷, 减少移动互联网应用对网络资源的消耗, 提高移动互 联网的使用性能;
2、 对于应用服务提供商, 减少其需要和终端建立的连接数, 降低其建 设成本和难度;
3、 进一步地提供应用数据的接入管理与优化控制, 能够对优先级高的 应用提供优先处理;
4、 进一步地提供数据压缩功能, 减少应用传输的数据量, 减轻网络负 担;
5、提供终端应用客户端唤醒功能,可以让终端应用客户端平时不启动, 在需要和应用服务器通信时, 再启动终端应用程序与服务端进行数据交互, 由此降低终端日常的电池消耗, 并且为应用客户端提供了一种长在线方式。 附图说明
图 1是本发明基于 AOG的移动互联网业务的实现方法一实施例流程示 意图;
图 2 是本发明基于 AOG 的移动互联网业务的实现方法一实施例中 AOG通过终端应用代理、 第一数据链路以及第二数据链路在终端上的至少 一个应用客户端与至少一个应用服务器之间进行应用数据的转发的一种实 施方式流程示意图;
图 3 是本发明基于 A0G 的移动互联网业务的实现方法一实施例中 A0G通过终端应用代理、 第一数据链路以及第二数据链路在终端上的至少 一个应用客户端与至少一个应用服务器之间进行应用数据的转发的另一种 实施方式流程示意图;
图 4是本发明基于 A0G的移动互联网业务的实现方法另一实施例流程 示意图;
图 5是本发明移动互联网业务的网关一实施例结构示意图;
图 6是本发明移动互联网业务的网关一实施例中应用数据传递模块的 结构示意图;
图 7是本发明基于 AOG的移动互联网业务的终端应用代理一实施例结 构示意图;
图 8是本发明基于 AOG的移动互联网业务的系统一实施例结构示意 图。 具体实施方式
本发明实施例解决方案主要是: 分别建立 AOG ( Always Online Gateway , 永远在线网关)与终端上各应用客户端、 以及 AOG与应用服务 器之间的数据链路, AOG通过建立的数据链路在终端上各应用客户端与应 用服务器之间进行应用数据的传递, 从而为终端上各应用客户端与应用服 务器提供统一的数据传输通道, 减少移动互联网应用对网络资源的消耗, 同时提供应用数据的接入管理与优化控制, 提高移动互联网的使用性能。
为了使本发明的技术方案更加清楚、 明了, 下面将结合附图作进一步 详述。 如图 1所示,本发明一实施例提出一种基于 AOG的移动互联网业务的 实现方法, 包括:
步骤 101 , AOG接收终端应用代理发送的第一注册请求, 根据第一注 册请求建立与终端应用代理之间的第一数据链路;
其中,终端应用代理用于在终端上的至少一个应用客户端与 AOG之间 进行应用数据转发。
步骤 102, AOG接收至少一个应用服务器发送的第二注册请求, 根据 第二注册请求建立与至少一个应用服务器之间的第二数据链路;
本实施例方法运行环境涉及移动互联网, 在本实施例中, 在移动互联 网中增力口一个统一接入和控制的 AOI ( Always Online Infrastructure, 7 远在 线架构) 系统, 通过该 AOI系统实现终端与应用服务器之间应用连接数的 收敛与集中处理控制。
AOI系统包括: AOG终端中间件即本实施例中终端应用代理、 AOG以 及 AOG DNS ( Always Online Gateway Domain Name System, 7 远在线网关 域名系统), 其中:
终端应用代理, 是一个预置在智能终端比如手机上的通用软件模块, 可以作为程序安装在智能终端上, 并保证在每次智能终端启动时自动后台 运行该程序。 它主要提供对智能终端上应用的控制与管理功能, 例如对智 能终端上应用客户端注册的管理, 建立到 AOG的连接, 对终端应用客户端 与 AOG之间的消息转发等等。
AOG, 是一个运行在移动互联网上的功能实体。 AOG对外提供两部分 的接入, 一边接入安装有终端应用代理的智能终端, 另一边接入应用服务 器, 并且提供对该两部分接入实体之间应用数据的转发与控制。 AOG对应 用数据的转发釆用专用的 AOP ( Always Online Protocol, 永远在线协议), 该协议定义在网络层之上, 规定了如何对应用的上下行消息进行处理和转 发, 但协议本身不会改变应用数据的内容。
AOG DNS, 用于对终端应用代理以及 AOG提供域名访问服务, 终端 应用代理向 AOG DNS请求获得终端归属 AOG的 IP地址及服务能力, AOG 向 AOG DNS请求获得终端号码等相关属性。
本实施例中,终端为安装有终端应用代理功能软件的智能终端,即 AOG 终端, 以手机终端为例, 终端应用代理可以预置在手机终端上, 或通过下 载的方式下载到手机终端上, 手机操作系统在每次手机启动时自动后台运 行该程序。 手机终端中的应用程序客户端、 即应用客户端在程序安装或启 动后向终端应用代理进行注册和登记, 接受终端应用代理对其进行管理, 其具体过程为: 首先, 在手机终端上安装应用客户端程序, 应用客户端程 序安装后发送登记请求到终端应用代理, 然后, 终端应用代理返回登记消 息响应给应用客户端, 终端应用代理向 AOG上报登记信息, 最后, AOG 向终端应用代理返回登记响应。 在本实施例中, 终端应用代理的软件功能 由终端执行完成。
本实施例通过终端应用代理、 AOG、 AOG DNS以及应用服务器构成的 系统通过统一的数据传输通道实现终端上各应用客户端与应用服务器之间 应用数据的转发。
首先, 终端应用代理与应用服务器分别需要向 AOG进行注册, 以便建 立终端应用代理与 AOG之间的数据链路、 以及应用服务器与 AOG之间的 数据链路。
在终端应用代理向 AOG进行注册时, 通过以下方式来实现:
终端发送短信到短信中心, 被叫号码为预置的 AOG DNS接入号码, 短信内容为终端的 IMSI ( International Mobile Subscriber Identification Number, 国际移动用户识别码)号; 之后, 短信中心转发该短信到短信网 关, 由短信网关转发该短信到 AOG DNS, AOG DNS记录下该 IMSI号与 短信主叫的终端号码、 如 MSISDN ( Mobile Subscriber International ISDN Number, 移动用户号码) 的对应关系。
然后, 终端应用代理向 AOG DNS发送注册消息, 该注册消息中携带 终端的 IMSI号; AOG DNS收到终端应用代理发送的注册消息之后, 向终 端应用代理发送注册响应消息, 在注册响应消息中携带终端用户归属的 AOG的 IP地址及端口号等信息。
之后, 终端应用代理向 AOG发送第一注册请求, 该第一注册请求中携 带有终端用户归属的 AOG的 IP地址及端口号信息,以便 AOG根据终端应 用代理发送的第一注册请求对终端应用代理进行鉴权、 注册与登记等。
同理, AOG接收应用服务器发送的第二注册请求, 以便对应用服务器 进行鉴权、 注册与登记等。
在本实施例中, 在 AOG接收到终端应用代理发送的第一注册请求之 后, 根据该第一注册请求中的终端用户所属的 AOG的 IP地址以及端口号 等信息对终端身份进行鉴权, 若鉴权成功, 则对该第一注册请求进行登记, 在请求登记成功后, 在终端应用代理与 AOG之间则建立起一条数据链路, 即本实施例中所称第一数据链路, 该第一数据链路将作为该终端上各应用 客户端的应用共用链路。 在请求登记成功后, AOG还将向 AOG DNS请求 终端号码。 后续如果终端上某个应用客户端需要向应用服务器发送应用数 据, 则不再需要单独与应用服务器建立连接, 而只需要把需要传输的应用 数据由终端应用代理通过该第一数据链路发送给 AOG, 由 AOG将此应用 数据通过应用服务器与 AOG之间的第二数据链路转发给相应的应用服务 器。
在 AOG建立与应用服务器之间的第二数据链路时, 同样通过 AOG对 应用服务器发送的第二注册请求进行鉴权, 如应用服务器提供的用户名或 密码是否正确, 若鉴权成功, 则建立 AOG与应用服务器之间的第二数据链 路, 该第二数据链路可以为一条、 两条或多条, 这些链路将作为所有终端 上应用客户端和该应用服务器共用的链路。
步骤 103 , AOG通过终端应用代理、 第一数据链路以及第二数据链路 在终端上的至少一个应用客户端与所述至少一个应用服务器之间进行应用 数据的转发。
在本实施例中, 当终端中应用客户端有应用数据需要发送给相应的应 用服务器时,首先,终端应用代理对应用客户端应用数据进行 AOP的封装, 形成 AOP报文, 即本实施例中所称第一应用数据包, 第一应用数据包中包 括终端的 IMSI号以及应用 ID等信息。 当封装完成后, 终端应用代理通过 第一数据链路以 AOP消息将第一应用数据包发送 AOG。
当 AOG收到终端应用代理发来的 AOP消息后, 首先进行鉴权处理, 如基于订购关系判断终端应用代理是否有权限为该应用客户端发送消息。 如果鉴权通过, AOG根据 AOP消息头中的应用 ID进行路由, 找到对应的 应用服务器后,从该应用服务器与 AOG建立的第二数据链路中选择其中的 一条, 然后把 AOP消息通过该链路发送到对应的应用服务器。
当应用服务器收到 AOP消息后, 对 AOP消息中第一应用数据包进行 解析, 取出其中的应用数据, 然后即可按照相应的业务流程进行后续处理。
同理, 当应用服务器需要向终端应用客户端发送应用数据时, 应用服 务器对应用数据进行 AOP 的封装, 形成第二应用数据包, 然后, 选择与 AOG建立的第二数据链路中的一条, 通过该链路以 AOP消息将第二应用 数据包发送至 AOG, 该 AOP消息中携带有终端号码以及应用 ID等信息。
当 AOG收到应用服务器发来的 AOP消息后, 根据预先从 AOG DNS 获取的终端号码等信息对该 AOP消息进行鉴权, 判断该应用服务器是否有 权下发应用数据给终端应用代理。 如果鉴权通过, 则 AOG通过终端号码找 到该终端应用代理与 AOG建立的第一数据链路, 并把 AOP消息通过该第 一数据链路下发到终端应用代理, 终端应用代理在收到 AOG发来的 AOP 消息后,对 AOP消息中的第二应用数据包进行解析,取出其中的应用数据, 然后根据 AOP消息头中的应用 ID进行判断, 应该将应用数据发送至终端 中的哪个应用客户端, 从而把应用数据转发到相应的应用客户端。
上述进行应用数据传输的过程中, 对应用数据釆用了压缩机制, 即将 应用数据进行封装打包, 因此, 为了降低网络负荷, 减小应用数据传输流 量, 终端应用代理或应用服务器可对应用数据进行压缩, 并在 AOP消息头 中携带关于是否压缩和压缩算法等的控制信息。
更进一步的, 对应用服务器下发的应用数据, AOG还可根据应用的优 先级来决定对不同应用的应用数据进行不同等级的处理。 对优先级高的应 用, 优先处理和转发其应用数据; 或者根据优先级权重, 对不同优先级应 用的应用数据按不同权重比例来进行处理。
如图 2所示, 步骤 103包括:
步骤 1031 , AOG通过第一数据链路接收终端应用代理转发的终端上的 至少一个应用客户端的第一应用数据包, 第一应用数据包以 AOP封装, 并 携带有终端的 IMSI号以及应用 ID号;
步骤 1032,根据应用 ID号将第一应用数据包通过第二数据链路转发至 对应的应用服务器;
步骤 1033 , AOG通过第二数据链路接收至少一个应用服务器发送的第 二应用数据包, 第二应用数据包以 AOP封装, 并携带有终端号码以及应用 ID号;
步骤 1034, 根据终端号码将第二应用数据包通过第一数据链路转发至 终端应用代理, 由终端应用代理根据所述 ID号将第二应用数据包转发至相 应的应用客户端。
如图 3所示, 作为另一种实施方式, 步骤 103中, 在步骤 1032之后还 可包括:
步骤 10321 ,接收对应的应用服务器返回的响应消息, 并将响应消息转 发至终端应用代理, 由终端应用代理将该响应消息转发至终端上相应的应 用客户端。
在本步骤中, 如果应用客户端在与终端应用代理的交互信息中携带参 数表明需要获取应用数据包的最终发送结果, 则终端应用代理会将应用服 务器返回的响应消息转发给应用客户端。 若应用客户端不需要获取应用数 据包的最终发送结果, 则终端应用代理在收到应用数据包之后, 立即向应 用客户端返回响应消息。
在步骤 1034之前还可包括:
步骤 10341 , AOG发送唤醒消息至终端应用代理, 由终端应用代理根 据唤醒消息与 AOG建立第一数据链路。
在本步骤中, 在应用服务器将应用数据发送给 AOG之后, 如果此时终 端应用代理还没有建立连接到 AOG, 则 AOG可以发送唤醒消息到终端应 用代理, 以便终端应用代理根据消息内容, 启动指定的应用客户端程序, 然后终端应用代理向 AOG建立连接即建立第一数据链路。 在连接建立后, AOG通过该第一数据链路下发应用数据到终端应用代理, 再由终端应用代 理将应用数据转发至相应的应用客户端。
需要说明的是, 在上述应用数据传递过程中, 如果应用服务器接入的 AOG与终端应用代理接入的 AOG不是同一个 AOG, 则在终端应用代理将 应用数据发送给终端用户归属的 AOG后, 由终端用户归属的 AOG将应用 数据转发给应用服务器接入的 AOG, 再由应用服务器接入的 AOG将应用 数据转发给该应用服务器。
在应用服务器通过 AOG转发应用数据给终端应用代理的过程中,可依 此原理进行处理。 在步骤 1034之后, 如果应用服务器在与 AOG的交互信息中携带参数 表明需要获取应用数据包的最终发送结果,则 AOG会将终端应用代理返回 的响应消息转发给应用服务器。 若应用服务器不需要获取应用数据包的最 终发送结果, 则 AOG在接收到应用服务器发送的应用数据包之后, 立即向 应用服务器返回响应消息。
综上所述, 相比当前的移动互联网中, 终端应用客户端与应用月良务侧 之间的业务建立釆用的端到端模式, 应用服务器通过端到端的连接和终端 应用客户端进行数据交互, 如果终端数为 M, 应用服务数为 N, 那么一个 终端上最大可用的应用数也为 N, M个终端的总连接数可达 M*N。 随着终 端数 M和应用数 N的不断增加, 连接数 M*N更是以几何级数扩大, 给移 动互联网造成极大的冲击。
本实施例通过基于终端应用代理和 AOG的方式,在终端应用代理与应 用服务器之间提供了统一的消息传输通道和控制管理机制, 其特点有: 1 ) 终端上多个应用客户端可以共享一个数据连接, 从而有效的收敛现今移动 互联网中存在的大量数据连接, 如前分析, 如果终端数为 M, 应用服务数 为 N, 釆用本实施例方法后, 可以把连接数最低降到 M+N; 2 )连接数的 减少, 可以减少移动互联网中的信令负荷数, 同时降低网络数据负荷和终 端电池的耗电量; 3 )通过共享数据连接, 为终端提供了一种长在线方式, 并提供消息唤醒机制, 使得应用服务器可以随时给终端应用客户端主动推 送数据; 4 )提供了压缩、 优先级服务、 流控等多种功能, 更有效的提高用 户的业务体验; 5 )应用服务器和多个终端应用客户端之间共享数据连接, 降低对应用服务器的连接处理能力的要求。
如图 4所示,本发明另一实施例提出一种基于 AOG的移动互联网业务 的实现方法, 包括:
步骤 401 , 终端应用代理对终端上的至少一个应用客户端进行注册; 步骤 402, 从 AOG DNS中获取终端用户归属的 AOG的 IP地址; 步骤 403 , 向 AOG发送携带有 IP地址的第一注册请求, 由 AOG根据 第一注册请求建立与该终端应用代理之间的第一数据链路;
步骤 404, 通过第一数据链路在终端上的至少一个应用客户端与 A0G 之间进行应用数据转发, 由 AOG通过该 AOG与对应的应用服务器建立的 第二数据链路将应用数据转发至对应的应用服务器。
如图 5所示, 本发明一实施例提出一种移动互联网业务的网关, 包括: 数据链路建立模块 501以及应用数据传递模块 502, 其中:
数据链路建立模块 501 , 用于接收终端应用代理发送的第一注册请求, 根据所述第一注册请求建立与终端应用代理之间的第一数据链路, 其中, 终端应用代理用于在终端上的至少一个应用客户端与该网关之间进行应用 数据转发; 接收至少一个应用服务器发送的第二注册请求, 根据第二注册 请求建立与至少一个应用服务器之间的第二数据链路;
本实施例中网关为 AOG,本实施例通过终端应用代理、 AOG、 AOG DNS 以及应用服务器构成的系统通过统一的数据传输通道实现终端上各应用客 户端与应用服务器之间应用数据的转发。
首先, 终端应用代理与应用服务器分别需要向 AOG进行注册, 以便建 立终端应用代理与 AOG之间的数据链路以及应用服务器与 AOG之间的数 据链路。
在终端应用代理向 AOG进行注册时, 通过以下方式来实现:
终端发送短信到短信中心, 被叫号码为预置的 AOG DNS接入号码, 短信内容为终端的 IMSI号; 之后, 短信中心转发该短信到短信网关, 由短 信网关转发该短信到 AOG DNS, AOG DNS记录下该 IMSI号与短信主叫 MSISDN的对应关系。
然后, 终端应用代理向 AOG DNS发送注册消息, 该注册消息中携带 终端的 IMSI号; AOG DNS收到终端应用代理发送的注册消息之后 , 向终 端应用代理发送注册响应消息, 在注册响应消息中携带终端用户归属的 AOG的 IP地址及端口号等信息。
之后, 终端应用代理向 AOG发送第一注册请求, 该第一注册请求中携 带有终端用户归属的 AOG的 IP地址及端口号信息,以便 AOG根据终端应 用代理发送的第一注册请求对终端应用代理进行鉴权、 注册与登记等。
同理, AOG接收应用服务器发送的第二注册请求, 以便对应用服务器 进行鉴权、 注册与登记等。
在本实施例中, 在 AOG接收到终端应用代理发送的第一注册请求之 后, 根据该第一注册请求中的终端用户所属的 AOG的 IP地址以及端口号 等信息对终端身份进行鉴权, 若鉴权成功, 则对该第一注册请求进行登记, 在请求登记成功后, 在终端应用代理与 AOG之间则建立起一条数据链路, 即本实施例中所称第一数据链路, 该第一数据链路将作为该终端上各应用 客户端的应用共用链路。 后续如果终端上某个应用客户端需要向应用服务 器发送应用数据, 则不再需要单独与应用服务器建立连接, 而只需要把需 要传输的应用数据由终端应用代理通过该第一数据链路发送给 AOG, 由 AOG将此应用数据通过应用服务器与 AOG之间的第二数据链路转发给相 应的应用服务器。
在 AOG建立与应用服务器之间的第二数据链路时, 同样通过 AOG对 应用服务器发送的第二注册请求进行鉴权, 若鉴权成功, 则建立 AOG与应 用服务器之间的第二数据链路, 该第二数据链路可以为一条、 两条或多条, 这些链路将作为所有终端上应用客户端和该应用服务器共用的链路。
应用数据传递模块 502, 用于通过终端应用代理、 第一数据链路以及第 二数据链路在终端上的至少一个应用客户端与至少一个应用服务器之间进 行应用数据的转发。 在本实施例中, 当终端中应用客户端有应用数据需要发送给相应的应 用服务器时, 首先, 终端应用代理对应用客户端应用数据进行 AOP封装, 形成 AOP报文, 即本实施例中所称第一应用数据包, 第一应用数据包中包 括终端的 IMSI号以及应用 ID等信息。 当封装完成后, 终端应用代理通过 第一数据链路以 AOP消息将第一应用数据包发送 AOG。
当 AOG收到终端应用代理发来的 AOP消息后, 首先进行鉴权处理, 判断终端应用代理是否有权限为该应用客户端发送消息。 如果鉴权通过, AOG根据 AOP消息头中的应用 ID进行路由, 找到对应的应用服务器后, 从该应用服务器与 AOG 建立的第二数据链路中选择其中的一条, 然后把 AOP消息通过该链路发送到对应的应用服务器。
当应用服务器收到 AOP消息后, 对 AOP消息中第一应用数据包进行 解析, 取出其中的应用数据, 然后即可按照相应的业务流程进行后续处理。
同理, 当应用服务器需要向终端应用客户端发送应用数据时, 应用服 务器对应用数据进行 AOP封装, 形成第二应用数据包, 然后, 选择与 AOG 建立的第二数据链路中的一条, 通过该链路以 AOP消息将第二应用数据包 发送至 AOG, 该 AOP消息中携带有终端号码以及应用 ID等信息。
当 AOG收到应用服务器发来的 AOP消息后, 根据预先从 AOG DNS 获取的终端号码等信息对该 AOP消息进行鉴权, 判断该应用服务器是否有 权下发应用数据给终端应用代理。 如果鉴权通过, 则 AOG通过终端号码找 到该终端应用代理与 AOG建立的第一数据链路, 并把 AOP消息通过该第 一数据链路下发到终端应用代理, 终端应用代理在收到 AOG发来的 AOP 消息后,对 AOP消息中的第二应用数据包进行解析,取出其中的应用数据, 然后根据 AOP消息头中的应用 ID进行判断, 应该将应用数据发送至终端 中的哪个应用客户端, 从而把应用数据转发到相应的应用客户端。
上述进行应用数据传输的过程中, 对应用数据釆用了压缩机制, 即将 应用数据进行封装打包, 因此, 为了降低网络负荷, 减小应用数据传输流 量, 终端应用代理或应用服务器可对应用数据进行压缩, 并在 AOP消息头 中携带关于是否压缩和压缩算法等的控制信息。
更进一步的, 对应用服务器下发的应用数据, AOG还可根据应用的优 的应用, 优先处理和转发其应用数据; 或者根据优先级权重, 对不同优先 级应用的应用数据按不同权重比例来进行处理。
如图 6所示, 应用数据传递模块 502包括: 应用数据接收单元 5021和 应用数据转发单元 5022, 其中:
应用数据接收单元 5021 , 用于通过所述第一数据链路接收终端应用代 理转发的终端上的至少一个应用客户端的第一应用数据包, 第一应用数据 包以 AOP封装, 并携带有终端的 IMSI号以及应用 ID号;
应用数据转发单元 5022,用于根据应用 ID号将第一应用数据包通过第 二数据链路转发至对应的应用服务器;
进一步的, 应用数据传递模块 502还包括: 唤醒单元 5023 , 用于在应 用数据转发单元 5022根据 ID号将第二应用数据包通过第一数据链路转发 至终端应用代理之前发送唤醒消息至终端应用代理, 由终端应用代理根据 唤醒消息与 AOG建立第一数据链路。
进一步的, 应用数据接收单元 5021 , 还用于通过第二数据链路接收至 少一个应用服务器发送的第二应用数据包, 第二应用数据包以 AOP封装, 并携带有终端的 IMSI号以及应用 ID号;
应用数据转发单元 5022 , 还用于根据终端号码将第二应用数据包通过 第一数据链路转发至终端应用代理, 由终端应用代理根据 ID号将第二应用 数据包转发至相应的应用客户端。
如图 7所示,本发明一实施例提出一种基于 AOG的移动互联网业务的 终端应用代理, 包括: 应用客户端注册单元 701、 地址信息获取单元 702、 注册请求发送单元 703以及数据转发单元 704, 其中:
应用客户端注册单元 701 ,用于对终端上的至少一个应用客户端进行注 册;
地址信息获取单元 702,用于从 AOG DNS中获取终端用户归属的 AOG 的 IP地址;
注册请求发送单元 703 ,用于向 AOG发送携带有 IP地址的第一注册请 求, 由 AOG根据第一注册请求建立与该终端应用代理之间的第一数据链 路;
数据转发单元 704,用于通过第一数据链路在终端上的至少一个应用客 户端与 AOG之间进行应用数据转发, 由 AOG通过该 AOG与对应的应用 服务器建立的第二数据链路将应用数据转发至对应的应用服务器。
如图 8所示,本发明一实施例提出一种基于 AOG的移动互联网业务的 系统, 包括终端应用代理 801、 以及与应用服务器 802连接的 AOG 803 , 其中:
终端应用代理 801 , 用于对终端上的至少一个应用客户端进行注册; 向 所述 AOG 803发送第一注册请求;
应用服务器 802, 用于向 AOG 803发送第二注册请求;
AOG 803 , 用于接收终端应用代理 801发送的第一注册请求, 根据第 一注册请求建立与终端应用代理 801 之间的第一数据链路; 接收至少一个 应用服务器 802发送的第二注册请求, 根据第二注册请求建立与至少一个 应用服务器 802之间的第二数据链路; 通过终端应用代理 801、 第一数据链 路以及第二数据链路在终端上的至少一个应用客户端与至少一个应用服务 器 802之间进行应用数据的转发。
进一步的, 该系统还包括 AOG DNS 804 , 用于为终端应用代理 801以 及 AOG 803提供域名访问服务。
在本实施例中, AOG 803可以为上述实施例中所述的网关。
本发明实施例移动互联网业务的实现方法、 网关及系统, 通过在终端 应用代理与 AOG之间设置 AOI系统, 分别建立 AOG与终端应用代理、 以 及 AOG与应用服务器之间的数据链路, AOG通过建立的数据链路在终端 上各应用客户端与应用服务器之间进行应用数据的传递, 相比现有技术, 本发明为终端与应用服务器提供统一的数据传输通道, 收敛现今移动互联 网中存在的大量数据连接, 减少其中存在的大量链路检测包, 降低网络负 荷, 减少移动互联网应用对网络资源的消耗, 提高移动互联网的使用性能; 对于应用服务提供商, 减少其需要和终端建立的连接数, 降低其建设成本 和难度; 提供应用数据的接入管理与优化控制, 能够对优先级高的应用提 供优先处理; 提供数据压缩功能, 减少应用传输的数据量, 减轻网络负担; 提供终端应用客户端唤醒功能, 可以让终端应用客户端平时不启动, 在需 要和应用服务器通信时, 再通过某种机制把终端应用程序启动起来和服务 端进行数据交互。 由此降低终端日常的电池消耗, 并且为应用客户端提供 了一种长在线方式。
以上所述仅为本发明的优选实施例, 并非因此限制本发明的专利范围, 凡是利用本发明说明书及附图内容所作的等效结构或流程变换, 或直接或 间接运用在其它相关的技术领域, 均同理包括在本发明的专利保护范围内。

Claims

权利要求书
1、 一种移动互联网业务的实现方法, 其特征在于, 包括:
永远在线网关 AOG接收终端应用代理发送的第一注册请求,根据所述 第一注册请求建立与终端应用代理之间的第一数据链路, 其中, 所述终端 应用代理用于在终端上的至少一个应用客户端与 AOG之间进行应用数据 转发;
AOG接收至少一个应用服务器发送的第二注册请求, 根据所述第二注 册请求建立与所述至少一个应用服务器之间的第二数据链路;
AOG通过所述终端应用代理、 所述第一数据链路以及所述第二数据链 路在所述终端上的至少一个应用客户端与所述至少一个应用服务器之间进 行应用数据的转发。
2、 根据权利要求 1所述的方法, 其特征在于, 所述 AOG通过终端应 用代理、 所述第一数据链路以及所述第二数据链路在所述终端上的至少一 个应用客户端与所述至少一个应用服务器之间进行应用数据的转发的步骤 包括:
AOG通过所述第一数据链路接收所述终端应用代理转发的所述终端上 的至少一个应用客户端的第一应用数据包, 所述第一应用数据包以永远在 线协议 AOP封装, 并携带有终端的国际移动用户识别码 IMSI号以及应用 ID号;
根据所述 ID号将所述第一应用数据包通过所述第二数据链路转发至对 应的应用服务器。
3、 根据权利要求 1所述的方法, 其特征在于, 所述 AOG通过终端应 用代理、 所述第一数据链路以及所述第二数据链路在所述终端上的至少一 个应用客户端与所述至少一个应用服务器之间进行应用数据的转发的步骤 包括: AOG通过所述第二数据链路接收所述至少一个应用服务器发送的第二 应用数据包, 所述第二应用数据包以 AOP封装, 并携带有终端号码以及应 用 ID号;
根据所述终端号码将所述第二应用数据包通过所述第一数据链路转发 至所述终端应用代理, 由所述终端应用代理才艮据所述 ID号将所述第二应用 数据包转发至相应的应用客户端。
4、 根据权利要求 3所述的方法, 其特征在于, 所述根据终端号码将所 述第二应用数据包通过所述第一数据链路转发至终端应用代理的步骤之前 还包括:
AOG发送唤醒消息至所述终端应用代理, 由所述终端应用代理根据所 述唤醒消息与 AOG建立所述第一数据链路。
5、根据权利要求 1至 4中任一项所述的方法, 其特征在于, 所述 AOG 进行应用数据的转发, 具体为: AOG根据应用数据的优先级对应用数据进 行转发。
6、 一种移动互联网业务的实现方法, 其特征在于, 包括:
终端应用代理对终端上的至少一个应用客户端进行注册;
从永远在线网关域名系统 AOG DNS中获取终端用户归属 AOG的 IP 地址;
向所述 AOG发送携带有所述 IP地址的第一注册请求,由所述 AOG根 据所述第一注册请求建立与该终端应用代理之间的第一数据链路;
通过所述第一数据链路在终端上的至少一个应用客户端与 AOG之间 进行应用数据转发, 由 AOG通过该 AOG与对应的应用服务器建立的第二 数据链路将所述应用数据转发至所述对应的应用服务器。
7、 一种移动互联网业务的网关, 其特征在于, 包括:
数据链路建立模块, 用于接收终端应用代理发送的第一注册请求, 根 据所述第一注册请求建立与终端应用代理之间的第一数据链路, 其中, 所 述终端应用代理用于在终端上的至少一个应用客户端与所述网关之间进行 应用数据转发; 接收至少一个应用服务器发送的第二注册请求, 根据所述 第二注册请求建立与所述至少一个应用服务器之间的第二数据链路;
应用数据传递模块, 用于通过所述终端应用代理、 所述第一数据链路 以及所述第二数据链路在所述终端上的至少一个应用客户端与所述至少一 个应用服务器之间进行应用数据的转发。
8、 根据权利要求 7所述的网关, 其特征在于, 所述应用数据传递模块 包括:
应用数据接收单元, 用于通过所述第一数据链路接收所述终端应用代 理转发的所述终端上的至少一个应用客户端的第一应用数据包, 所述第一 应用数据包以 AOP封装, 并携带有终端的 IMSI号以及应用 ID号;
应用数据转发单元, 用于根据所述 ID号将所述第一应用数据包通过所 述第二数据链路转发至对应的应用服务器。
9、 根据权利要求 8所述的网关, 其特征在于,
所述应用数据接收单元, 还用于通过所述第二数据链路接收所述至少 一个应用服务器发送的第二应用数据包,所述第二应用数据包以 AOP封装, 并携带有终端号码以及应用 ID号;
所述应用数据转发单元, 还用于根据所述终端号码将所述第二应用数 据包通过所述第一数据链路转发至所述终端应用代理, 由所述终端应用代 理根据所述 ID号将所述第二应用数据包转发至相应的应用客户端。
10、 根据权利要求 8或 9所述的网关, 其特征在于, 所述应用数据传 递模块还包括:
唤醒单元, 用于在应用数据转发单元根据所述终端号码将所述第二应 用数据包通过所述第一数据链路转发至所述终端应用代理之前, 发送唤醒 消息至所述终端应用代理, 由所述终端应用代理根据所述唤醒消息与所述 网关建立所述第一数据链路。
11、 一种移动互联网业务的终端应用代理, 其特征在于, 包括: 应用客户端注册单元, 用于对终端上的至少一个应用客户端进行注册; 地址信息获取单元, 用于从 AOG DNS 中获取所述终端用户归属的 AOG的 IP地址;
注册请求发送单元, 用于向所述 AOG发送携带有所述 IP地址的第一 注册请求, 由所述 AOG根据所述第一注册请求建立与该终端应用代理之间 的第一数据链路;
数据转发单元, 用于通过所述第一数据链路在终端上的至少一个应用 客户端与 AOG之间进行应用数据转发, 由 AOG通过该 AOG与对应的应 用服务器建立的第二数据链路将所述应用数据转发至所述对应的应用服务 器。
12、 一种移动互联网业务的系统, 其特征在于, 包括终端应用代理以 及 AOG, 其中:
所述终端应用代理, 用于对终端上的至少一个应用客户端进行注册; 向所述 AOG发送第一注册请求;
所述 AOG, 用于接收终端应用代理发送的第一注册请求, 根据所述第 一注册请求建立与终端应用代理之间的第一数据链路; 接收至少一个应用 服务器发送的第二注册请求, 根据所述第二注册请求建立与所述至少一个 应用服务器之间的第二数据链路; 通过所述终端应用代理、 所述第一数据 链路以及所述第二数据链路在所述终端上的至少一个应用客户端与所述至 少一个应用服务器之间进行应用数据的转发。
13、根据权利要求 12所述的系统,其特征在于,所述系统还包括: AOG DNS, 用于为终端应用代理提供终端用户归属的 AOG的 IP地址。
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