WO2013143228A1 - Procédé et système destinés à réduire les messages heartbeat - Google Patents

Procédé et système destinés à réduire les messages heartbeat Download PDF

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Publication number
WO2013143228A1
WO2013143228A1 PCT/CN2012/076865 CN2012076865W WO2013143228A1 WO 2013143228 A1 WO2013143228 A1 WO 2013143228A1 CN 2012076865 W CN2012076865 W CN 2012076865W WO 2013143228 A1 WO2013143228 A1 WO 2013143228A1
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WO
WIPO (PCT)
Prior art keywords
domain
online
request
heartbeat
proxy server
Prior art date
Application number
PCT/CN2012/076865
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English (en)
Chinese (zh)
Inventor
邢晓江
梁爽
Original Assignee
中兴通讯股份有限公司
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Publication of WO2013143228A1 publication Critical patent/WO2013143228A1/fr

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/08Configuration management of networks or network elements
    • H04L41/0803Configuration setting
    • H04L41/0813Configuration setting characterised by the conditions triggering a change of settings
    • H04L41/0816Configuration setting characterised by the conditions triggering a change of settings the condition being an adaptation, e.g. in response to network events
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L43/00Arrangements for monitoring or testing data switching networks
    • H04L43/10Active monitoring, e.g. heartbeat, ping or trace-route
    • 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
    • H04L65/10Architectures or entities
    • H04L65/1045Proxies, e.g. for session initiation protocol [SIP]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/14Session management
    • H04L67/143Termination or inactivation of sessions, e.g. event-controlled end of session
    • H04L67/145Termination or inactivation of sessions, e.g. event-controlled end of session avoiding end of session, e.g. keep-alive, heartbeats, resumption message or wake-up for inactive or interrupted session
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/20Services signaling; Auxiliary data signalling, i.e. transmitting data via a non-traffic channel

Definitions

  • the present invention relates to the field of mobile communications, and in particular, to a method and system for reducing heartbeat messages of various applications. Background technique
  • Receiving and sending data in the network is done using sockets (SOCKET) in WINDOWS.
  • SOCKET sockets
  • the socket is disconnected, there is a problem with sending and receiving data.
  • heartbeat means that the client periodically sends a custom structure (heartbeat message or heartbeat packet or heartbeat frame) to the server, so that the server knows that the client is online, thus ensuring the validity of the long connection between the client and the server.
  • the heartbeat message of the instant messaging tool imposes a great burden on the network, especially the mobile communication network.
  • the client of the QQ application can periodically send the heartbeat message to the application server to achieve the long-term occupation of the external network IP address, and the server can sense the online state of the client through the heartbeat message reported by the terminal.
  • the heartbeat message is for the Global System of Mobile Communication (GSM) network and the third generation mobile communication technology (3G, 3rd-generation).
  • LTE Long Term Evolution
  • CCCH Common Control Channel
  • CS Common Service
  • CCCH load in some areas exceeds the red threshold or the yellow threshold, which directly causes a low paging success rate and affects the voice user experience.
  • PDCH Packet Data CHannel
  • a method of reducing a heartbeat message comprising:
  • the application server receives the login of the user equipment (UE, User Equipment) application module. After the request, send a request for detecting the online status of the packet data PS domain of the UE to the heartbeat proxy server; after receiving the request for detecting the online status of the PS domain of the UE, the heartbeat proxy server detects the packet of the UE by using the wireless communication network. Exchange the online status of the (PS, Packet Switch) domain;
  • the heartbeat proxy server Upon detecting that the PS domain online status of the UE is offline, the heartbeat proxy server notifies the application server that the UE application module has gone offline.
  • the method further includes:
  • the heartbeat proxy server After detecting that the PS domain online status of the UE is online, the heartbeat proxy server sends a heartbeat message to the application server to notify the application server that the UE application module is online or does not send a message to the application server. By default, the UE application module is online.
  • detecting, by the wireless communication network, the online status of the PS domain of the UE is: the heartbeat proxy server timings to a home subscriber server (HSS, Home Subscriber Server) of the wireless communication network.
  • HSS home subscriber server
  • the HSS/HLR After receiving the request for querying the PS domain online status of the UE, the HSS/HLR queries the PS domain online status information of the UE according to the ID of the UE and returns it to the heartbeat proxy server.
  • detecting, by the wireless communication network, the online status of the PS domain of the UE is: the heartbeat proxy server timing to a public data network (PDN, Public Data Network)/Gateway GPRS support node of the wireless communication network (GGSN, Gateway GPRS) Supporting a request to query the online status of the PS domain of the UE, where the request carries the IP address of the UE; after receiving the request for querying the online status of the PS domain of the UE, the PDN/GGSN queries according to the IP address.
  • the PS domain online status information of the UE is returned to the heartbeat proxy server.
  • detecting, by the wireless communication network, the online status of the PS domain of the UE is: the heartbeat proxy server sends a request for registering a UE to the HSS/HLR, where the request carries ID with UE;
  • the HSS/HLR After receiving the request of the registration UE, the HSS/HLR detects the PS domain online state information of the UE in real time according to the ID of the UE;
  • the HSS/HLR When detecting that the online status of the PS domain of the UE is offline, the HSS/HLR notifies the heartbeat proxy server that the UE has gone offline.
  • a system for reducing heartbeat messages comprising:
  • An application server configured to send, to the heartbeat proxy server, a request for detecting an online status of the PS domain of the UE after receiving the login request of the UE application module;
  • a wireless communication network configured to detect an online state of a PS domain of the UE
  • a heartbeat proxy server configured to detect an online state of a PS domain of the UE by using a wireless communication network after receiving a request for detecting a PS domain online state of the UE, and detecting that the PS domain online state of the UE is When not online, the application server is notified that the UE application module has gone offline.
  • the heartbeat proxy server is further configured to: when detecting that the PS domain online state of the UE is online, send a heartbeat message to the application server to notify the application server that the UE application module is online or not to the application server. The message is sent and the UE application module is online by default.
  • the wireless communication network further includes:
  • the HSS/HLR is configured to query the PS of the UE according to the ID of the UE carried in the request for querying the online status of the PS domain of the UE after receiving the request of the heartbeat proxy server to periodically query the PS domain online status of the UE. Domain online status information and return it to the heartbeat agent service crying
  • the wireless communication network further includes:
  • a PDN/GGSN configured to receive the query UE periodically sent by the heartbeat proxy server After the PS domain online status request, the PS domain online status information of the UE is queried according to the IP address of the UE carried in the request for querying the PS domain online status of the UE, and is returned to the heartbeat proxy server.
  • the wireless communication network further includes:
  • the HSS/HLR is configured to detect, in real time, the PS domain online state information of the UE according to the ID of the UE carried in the request of the registration UE, after receiving the request of the UE registered by the heartbeat proxy server, and detecting the UE When the online status of the PS domain is offline, the heartbeat proxy server is notified that the UE has gone offline.
  • the invention has the advantages that: the heartbeat message in the mobile communication network is reduced, thereby reducing the load of the mobile communication network and improving the user experience.
  • FIG. 1 is a flowchart of a method for reducing a heartbeat message according to Embodiment 1 of the present invention
  • FIG. 2 is a flowchart of a method for reducing a heartbeat message according to Embodiment 2 of the present invention
  • a flowchart of a method for reducing a heartbeat message is provided.
  • FIG. 4 is a flowchart of a method for reducing a heartbeat message according to Embodiment 4 of the present invention;
  • FIG. 5 is a normal exit of an application on a UE according to Embodiment 5 of the present invention;
  • FIG. 6 is a flowchart of a process when an application on a UE that is abnormally interrupted cannot be normally issued with an exit login message according to Embodiment 6 of the present invention;
  • FIG. 7 is a schematic structural diagram of a system for reducing heartbeat messages according to Embodiment 7 of the present invention. detailed description
  • FIG. 1 is a flowchart of a method for reducing a heartbeat message according to Embodiment 1 of the present invention. As shown in FIG. 1, the method includes: Step S101: After receiving the login request of the UE application module, the application server sends a request for detecting the online status of the PS domain of the UE to the heartbeat proxy server.
  • the UE application module sends a login request to the application server. After the application server authenticates the login request, the application server sends a request to the heartbeat proxy server to detect the online status of the PS domain of the UE, where the request carries the ID of the UE.
  • Step S102 After receiving the request for detecting the online status of the PS domain of the UE, the heartbeat proxy server detects the online state of the PS domain of the UE through the wireless communication network.
  • Detecting the online status of the PS domain of the UE through the wireless communication network can be implemented in various ways:
  • the heartbeat proxy server periodically sends a request to the wireless communication network to query the PS domain online status of the UE.
  • the application server sends a request for detecting the online status of the PS domain of the UE to the heartbeat proxy server, where the request carries the ID of the UE.
  • the ID of the UE includes but is not limited to a mobile phone number or an IP address.
  • the heartbeat proxy server periodically sends a request for querying the PS domain online status of the UE to the HSS/HLR of the wireless communication network.
  • the request carries the ID of the UE.
  • the HSS/HLR queries the PS domain online status information of the UE according to the ID of the UE and returns it to the heartbeat proxy server.
  • the heartbeat proxy server periodically sends a request for querying the online status of the PS domain of the UE to the PDN/GGSN of the wireless communication network, where the request carries the IP address of the UE.
  • the HSS/HLR queries the PS domain online status information of the UE according to the IP address and returns it to the heartbeat proxy server.
  • the heartbeat proxy server sends a request to the HSS/HLR to register the UE.
  • the heartbeat proxy server sends a request for registering the UE to the HSS/HLR, where the request carries the ID of the UE.
  • the HSS/HLR detects the PS domain of the UE in real time according to the ID of the UE. status information.
  • the HSS/HLR notifies the heartbeat proxy server that the UE has gone offline.
  • Step S103 When it is detected that the online state of the PS domain of the UE is offline, the heartbeat proxy server notifies the application server that the UE application module has gone offline.
  • the heartbeat proxy server After receiving the PS domain online status of the UE returned by the wireless communication network, the heartbeat proxy server notifies the application server that the UE application module has gone offline when the online status of the PS domain of the UE is offline; the PS of the UE When the domain online status is online, the heartbeat proxy server sends a heartbeat message to the application server to notify the application server that the UE is online or the heartbeat proxy server does not send a heartbeat message to the application server but the application server By default the UE is online.
  • FIG. 2 is a flowchart of a method for reducing a heartbeat message according to Embodiment 2 of the present invention.
  • an instant communication tool QQ is taken as an example
  • a QQ client is an application module on a UE
  • a QQ server is an application server.
  • the method includes:
  • Step S201 The QQ client on the UE initiates a login request to the QQ server.
  • the login button is clicked, and the QQ client on the UE sends a login request to the QQ server.
  • Step S202 the QQ server acquires the ID of the UE.
  • the QQ server After receiving the request from the client, the QQ server performs normal authentication on the user of the QQ client and obtains the ID of the UE.
  • the ID of the UE may be the mobile phone number or IP address of the user.
  • the QQ server can directly obtain the mobile phone number of the user.
  • the QQ server cannot know the mobile phone number of the user, but can obtain the IP address. Step S203, notifying the QQ client that the heartbeat message is not required to be sent to the QQ server.
  • the QQ server notifies the QQ client that the heartbeat message is not needed, thereby making the UE
  • the QQ client no longer sends heartbeat messages to the QQ server.
  • Step S204 Send related information of the UE to the heartbeat proxy server.
  • the QQ server sends the related information of the UE to the heartbeat proxy server, including but not limited to the ID of the UE.
  • Step S205 Add a UE to the UE information maintenance table.
  • the heartbeat proxy server After receiving the UE information sent by the QQ server, the heartbeat proxy server saves the UE information to the UE information maintenance table.
  • the UE information maintenance table includes the user's mobile phone number, IP address, online status, and the like.
  • Step S206 A request for acquiring the online status of the PS domain of the UE is periodically sent.
  • the heartbeat proxy server periodically sends a request for obtaining the PS domain online state information of the UE to the HSS/HLR of the wireless communication network, where the request carries the ID of the UE.
  • Step S207 The HSS/HLR acquires the PS domain online state information of the UE, and indicates the UE
  • the IP address is not released.
  • the HSS/HLR After receiving the request of the heartbeat proxy server to obtain the online state of the PS domain of the UE, the HSS/HLR queries the UE's PS domain online state information according to the UE's ID, that is, the user's MSISDN number or IP address. At the same time, the HSS/HLR instructs the PDN or GGSN to reserve the IP to the UE even if the UE is inactive for a long time.
  • the HSS/HLR querying the PS domain online status of the UE is a prior art and will not be described here.
  • the heartbeat proxy server can be interconnected with multiple HSS/HLRs, and the heartbeat proxy server can also support selecting a certain HSS/HLR for query according to the ID of the UE. Specifically, the correspondence between the ID of the UE and the HSS/HLR may be pre-stored, or the first query may sequentially query each HSS/HLR, and then record the HSS/HLR where the UE is located, and subsequent queries are directly processed according to the result of the recording. Query the HSS/HLR.
  • the heartbeat proxy server can query the PS domain online status information of multiple UEs in batches.
  • the QQ server can also send related information of multiple UEs to the heartbeat proxy server in batches. After receiving the related information of multiple UEs, the heartbeat proxy server also batches The related information of multiple UEs is sent to the HSS/HLR and requests to acquire the PS domain online status of multiple UEs. After receiving the request, the HSS/HLR acquires the PS domain online status of each UE according to the ID of each UE carried in the request.
  • Step S208 returning online status information of the PS domain of the UE.
  • the HSS/HLR sends the queried UE's PS domain online status and the IP address reserved by the PDN/GGSN for the UE to the heartbeat proxy server.
  • the heartbeat proxy server updates the information of the corresponding UE in the UE information maintenance table according to the returned information. Specifically, the online status and the IP address of the corresponding UE in the UE information maintenance table are updated according to the PS domain online status of the UE and the IP address of the UE in the returned information.
  • the heartbeat proxy server performs different processing according to the online state information of the PS domain of the UE. If the online state of the PS domain of the UE is online, step S209 is performed; otherwise, step S210 is performed.
  • Step S209 notifying the QQ server that the UE is online in the PS domain.
  • the heartbeat proxy server When the online status of the PS domain of the UE is online, the heartbeat proxy server notifies the QQ server that the UE is online in the PS domain, that is, the application module of the UE is online.
  • the heartbeat proxy server notifies the QQ server in two ways. One is that the QQ client on the simulated UE sends a heartbeat message to the QQ server, and the other is that no message is sent, but the default UE is online in the PS domain.
  • Step S210 notifying the QQ server that the UE is offline in the PS domain.
  • the heartbeat proxy server sends a message to the QQ server to inform the QQ server that the UE is not online in the PS domain. After receiving the message of the heartbeat proxy server, the QQ server identifies the QQ user of the UE as offline.
  • FIG. 3 is a flowchart of a method for reducing a heartbeat message according to Embodiment 3 of the present invention, such as As shown in FIG. 3, the method includes:
  • Step S301 An application login on the UE.
  • An application on the UE initiates a login request to the application server.
  • Step S302 Acquire an ID of the UE.
  • Step S303 Submit the information of the UE to the heartbeat proxy server.
  • the application server sends the UE information to the heartbeat proxy server.
  • the information of the UE includes the ID of the UE, that is, the IP address.
  • the application server sends the UE information to the heartbeat proxy server whether it needs to retain the identity of the IP.
  • Step S304 the heartbeat proxy server saves the UE information.
  • the heartbeat proxy server adds the received UE information to the UE information maintenance table.
  • Step S305 A request for querying the online status of the PS domain of the UE is periodically sent.
  • the heartbeat proxy server periodically sends a request to the PDN or the GGSN to query the online status of the PS domain of the UE, where the request carries the IP address of the UE and whether the identifier of the IP needs to be retained.
  • Step S306 acquiring IMSI information of the UE according to the IP address.
  • the IP address of the IP address query is online, and the corresponding international mobile subscriber identity 1 J another code (IMSI, International Mobile Subscriberldentification Number) information.
  • IMSI International Mobile Subscriberldentification Number
  • the PDN or the GGSN reserves the IP address, otherwise the IP address is not reserved for the UE.
  • Step S307 returning the IMSI and online status of the UE.
  • the PDN/GGSN returns the queried IMSI and the UE's PS domain online status to the heartbeat proxy server.
  • Step S308 recording the IMSI and the corresponding IP address information, and performing the result of the last query. Contrast to determine if the IMSI is still online.
  • the heartbeat proxy server After receiving the message returned by the PDN/GGSN, the heartbeat proxy server compares the IMSI of the received UE with the IMSI of the UE that was last queried in the UE information maintenance table, and determines whether the IMSI corresponding to the IP address changes. If a change occurs, it can be determined that the UE is offline in the PS domain.
  • the heartbeat proxy server updates the last queried IMSI and IP address of the UE in the UE information maintenance table with the IMSI and IP address information of the received UE.
  • step S309 When the online status of the PS domain of the UE is online, the heartbeat proxy server performs step S309, otherwise, step S310 is performed.
  • Step S309 notifying the application server that the UE is online in the PS domain.
  • the heartbeat proxy server notifies the application server that there are two ways for the UE to be online in the PS domain. One is to simulate that the application on the UE sends a heartbeat message to the application server, and the other is to not send any message, but the default UE is online in the PS domain.
  • Step S310 notifying the application server that the UE is offline in the PS domain.
  • the heartbeat proxy server sends a message to the application server notifying the application server that the UE is not online in the PS domain. After receiving the message of the heartbeat proxy server, the application server identifies the application of the UE as offline.
  • the above steps 305 to 308 may be replaced by the following steps to obtain the PS domain online state of the UE: Heartbeat Proxy Server Sending a request to register the UE to the PDN/GGSN.
  • the PDN/GGSN detects the online status of the PS domain of the UE in real time, and notifies the heartbeat proxy server when the IP address of the UE is released or the IMSI corresponding to the IP address changes.
  • the PS domain status of the UE is offline. Otherwise, the heartbeat proxy server defaults the PS domain status of the UE to online.
  • the heartbeat proxy server performs step S309 when the PS domain status of the default UE is online, otherwise step S310 is performed.
  • FIG. 4 is a flowchart of a method for reducing a heartbeat message according to Embodiment 4 of the present invention, such as As described in FIG. 4, the method includes the following steps:
  • Step S401 An application login on the UE.
  • An application on the UE initiates a login request to the application server.
  • Step S402 obtaining an ID of the UE.
  • the ID of the UE is obtained, where the ID of the UE is
  • Step S403 submit the ID of the UE to the heartbeat proxy server.
  • the application server submits information such as the ID of the UE to the heartbeat proxy server.
  • Step S404 the heartbeat proxy server maintains information of the UE.
  • the heartbeat proxy server adds the received UE information to the UE information maintenance table.
  • Step S405 Send a registration request.
  • the heartbeat proxy server sends a registration request to the HSS/HLR, where the request carries the UE
  • Step S406 detecting the online state of the PS domain of the UE in real time.
  • the HSS/HLR After receiving the registration request, the HSS/HLR saves the related information of the UE, and detects the online state of the PS domain of the UE in real time.
  • the HSS/HLR detects the online state of the PS domain of the UE according to the ID of the UE, and when it detects that the online state of the PS domain of the UE is offline, step S408 is performed; otherwise, the HSS/HLR does not send any message to the heartbeat proxy server, the heartbeat proxy server
  • the default UE's PS domain online status is online, and step S407 is performed.
  • Step S407 notifying the application server that the UE is online in the PS domain.
  • Step S408 when it is detected that the online status of the PS domain of the UE is offline, the heartbeat proxy server is notified.
  • the heartbeat proxy server UE is notified to have gone offline.
  • Step S409 updating maintenance information of the UE.
  • the heartbeat proxy server changes the online status of the UE in the UE information maintenance table to be offline or deletes the information of the UE in the UE information maintenance table.
  • Step S410 notifying the application server that the UE is offline in the PS domain.
  • the heartbeat proxy server sends a message to the application server notifying the application server that the UE is not online in the PS domain. After receiving the offline message, the application server identifies the application of the UE as offline.
  • FIG. 5 is a flowchart of a normal exit of an application on a UE according to Embodiment 5 of the present invention. As shown in FIG. 5, the normal exit process includes the following steps:
  • Step S501 The application module of the UE sends an exit notification to the application server.
  • Step S502 The application server sends a UE exit message to the heartbeat proxy server.
  • the application server After receiving the exit notification sent by the application module of the UE, the application server sends a message of the UE exit to the heartbeat proxy server.
  • Step S503 deleting the UE from the UE information maintenance table.
  • the heartbeat proxy server After receiving the UE exit message, the heartbeat proxy server deletes the information of the UE from the UE information maintenance table.
  • the heartbeat proxy server If the PS domain online status of the UE is obtained from the wireless communication network by sending a registration request to the HSS/HLR or the PDN/GGSN, the heartbeat proxy server also needs to send a notification to the HSS/HLR or the PDN/GGSN to delete the UE. After receiving the deletion notification, the HSS/HLR or the PDN/GGSN deletes the related information of the saved UE.
  • the application module on the UE in the foregoing fifth embodiment is normally exited, but sometimes the application on the UE is abnormally terminated.
  • the application module on the UE does not send a message to the application server to log out.
  • the user restarts the application follow the above implementation.
  • the normal login process can be processed, but if the user does not restart the application, the application server will not send the user's exit request to the heartbeat proxy server, and the heartbeat proxy server will continue to monitor the wireless communication network, if the UE still maintains The PS domain is online, then the application server will also consider the UE to remain online. Therefore, the abnormal termination problem of the application on the UE must be solved.
  • FIG. 6 is a process flow when an application on a UE that is provided by the implementation of the sixth embodiment of the present invention is abnormally interrupted and cannot normally issue an exit login message. As shown in FIG. 6, the process includes:
  • Step S601 The application server sends a data packet to the abnormally exited UE.
  • the application server or other UE sends a data packet to the abnormally exited UE.
  • the data packet may be forwarded by other UEs through the application server.
  • the QQ user on other UEs sends a message to the QQ application of the UE, or the application server itself sends a message to the QQ application of the UE.
  • an ACK confirmation response is automatically requested for this application packet.
  • Step S602 The PDN/GGSN detects that the transmission fails.
  • the PDN or GGSN When the data packet is sent to the PDN or GGSN, the PDN or GGSN will detect the transmission failure because the application of the UE has been abnormally closed.
  • Step S603 returning a failure message.
  • the PDN or GGSN After detecting the failure of the PDN or GGSN, the PDN or GGSN returns a failure message to the application server. After receiving the message that the transmission fails, the application server knows that the application on the UE has abnormality.
  • Steps S601 to S603 are repeatedly performed multiple times. After multiple attempts, if the application server still receives the message that the transmission fails, the UE is considered to have exited abnormally.
  • Step S604 sending a message that the UE has gone offline to the heartbeat proxy server.
  • the application server sends a message that the user has gone offline to the heartbeat proxy server.
  • Step S605 The UE is deleted from the UE information maintenance table.
  • the heartbeat proxy server After receiving the offline message sent by the application server, the heartbeat proxy server deletes the UE from the UE information maintenance table or marks the UE as offline.
  • the application on the UE is abnormally terminated, there is another extreme case where the application on the UE is neither restarted nor any other UE or application server sends a packet to it for interaction. The consequence of this extreme situation is that the state of the UE is incorrectly displayed and there are no usage problems. If any subsequent packets interact with the application on the UE, then the online status of the application for the UE can still be corrected.
  • the application server or the heartbeat proxy server may also send a probe message to the UE at a certain frequency, but in this case, there will be some heartbeat information in the future. Considering that this extreme situation is a small probability event, and such a small probability event does not affect the use, the step of transmitting the probe packet by the application server or the heartbeat proxy server can be omitted.
  • FIG. 7 is a schematic structural diagram of a system for reducing a heartbeat message according to Embodiment 7 of the present invention.
  • the system includes: a UE, a wireless communication network, a heartbeat proxy server, and an application server, where the application server may have Multiple units, application modules installed on the UE, and multiple HSS/HLRs and multiple PDN/GGSNs in the wireless communication network.
  • the interface between the heartbeat proxy server and the application server is interface 1
  • the interface of the heartbeat proxy server and the HSS/HLR is interface 2
  • the interface of the heartbeat proxy server and the PDN/GGSN is interface 3.
  • the UE is a user terminal on which various application modules that need to send heartbeat messages to the application server are run.
  • the application module installed on the UE is used to send a login message to the application server.
  • the application module mainly refers to various applications that require heartbeat messages, including but not limited to instant messaging services such as QQ.
  • MSN remote data collection or control, such as Internet of Things applications.
  • the application server is configured to send, to the heartbeat proxy server, a request for detecting the online status of the PS domain of the UE after receiving the login request of the UE application module.
  • a heartbeat proxy server configured to: after receiving a request for detecting a PS domain online state of the UE, detecting an online state of the PS domain of the UE by using a wireless communication network, and detecting the When the PS domain online status of the UE is offline, the application server is notified that the UE application module has gone offline; when detecting that the PS domain online status of the UE is online, sending a heartbeat message to the application server to notify the The UE application module of the application server is online.
  • the heartbeat proxy server may not send any message to the application server, but the application server defaults that the UE application module is online.
  • the step of detecting, by the heartbeat proxy server, the online state of the PS domain of the UE through the wireless communication network specifically, the heartbeat proxy server periodically sends an inquiry to the HSS/HLR or the PDN/GGSN of the wireless communication network to query the online state of the PS domain of the UE.
  • the request, HSS/HLR or PDN/GGSN returns the queried online status result to the heartbeat proxy server.
  • the heartbeat proxy server sends a request for registering the UE to the HSS/HLR.
  • the HSS/HLR detects the online status of the PS domain of the UE in real time and notifies the heartbeat proxy server when it detects that the online state of the PS domain of the UE is offline.
  • a wireless communication network is configured to detect an online state of a PS domain of the UE.
  • the wireless communication network includes an HSS/HLR, a PDN/GGSN.
  • the HSS/HLR queries the PS domain of the UE according to the ID of the UE carried in the request for querying the online state of the PS domain of the UE after receiving the request of the heartbeat proxy server to periodically query the PS domain online state of the UE.
  • the online status information is returned to the heartbeat proxy server; after receiving the request for registering the UE sent by the heartbeat proxy server, the HSS/HLR detects the UE in real time according to the ID of the UE carried in the request of the registered UE.
  • the PS domain is in the online state information, and when it is detected that the online state of the PS domain of the UE is offline, the heartbeat proxy server is notified that the UE has gone offline.
  • the PDN/GGSN After receiving the request of the heartbeat proxy server to periodically query the PS domain online state of the UE, the PDN/GGSN queries the PS domain of the UE according to the IP address of the UE carried in the request for querying the PS domain online state of the UE. Status information is returned to the heartbeat proxy server.
  • the present invention can obtain the online state of the user through the application of the heartbeat proxy server, and does not require the application on the UE to send the heartbeat message, which not only can greatly save network resources, but also can reduce the power consumption of the terminal, simplifying the operation.
  • the processing complexity of the application's terminal side and service is not limited thereto, and various modifications may be made by those skilled in the art in accordance with the principles of the invention. Therefore, modifications made in accordance with the principles of the invention should be construed as falling within the scope of the invention.
  • the heartbeat proxy server after receiving the request for detecting the online state of the PS domain of the UE, the heartbeat proxy server detects the online state of the PS domain of the UE through the wireless communication network, and notifies the application server to facilitate the application server to obtain the online state of the user.
  • the application on the UE is not required to send a heartbeat message, which greatly reduces the heartbeat message in the mobile communication network, thereby reducing the load on the mobile communication network and improving the user experience.

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Health & Medical Sciences (AREA)
  • Cardiology (AREA)
  • General Health & Medical Sciences (AREA)
  • Multimedia (AREA)
  • Mobile Radio Communication Systems (AREA)

Abstract

La présente invention concerne le domaine des communications mobiles. La présente invention concerne un procédé et un système destinés à réduire les messages Heartbeat. Le procédé comprend les étapes consistant à : après réception d'une demande de connexion d'un module d'application d'un équipement d'utilisateur (UE), un serveur d'application envoie une requête pour détecter l'état en ligne d'un domaine PS de paquet de données de l'UE vers un serveur proxy Heartbeat ; après réception de la requête pour détecter l'état en ligne du domaine PS de l'UE, le serveur proxy Heartbeat détecte l'état en ligne du domaine PS de l'UE par l'intermédiaire d'un réseau de communication sans fil ; et lorsqu'il est détecté que l'état en ligne du domaine PS de l'UE est hors ligne, le serveur proxy Heartbeat envoie au serveur d'application une notification selon laquelle le module d'application de l'UE est hors ligne. La présente invention résout le problème de charge réseau excessivement lourde provoqué par des messages Heartbeat excessifs dans le réseau de communication mobile, et a des effets bénéfiques permettant de réduire les messages Heartbeat dans le réseau de communication sans fil, ce qui permet de réduire la charge réseau.
PCT/CN2012/076865 2012-03-26 2012-06-13 Procédé et système destinés à réduire les messages heartbeat WO2013143228A1 (fr)

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