WO2013082897A1 - 应用服务更新方法和装置 - Google Patents

应用服务更新方法和装置 Download PDF

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Publication number
WO2013082897A1
WO2013082897A1 PCT/CN2012/072926 CN2012072926W WO2013082897A1 WO 2013082897 A1 WO2013082897 A1 WO 2013082897A1 CN 2012072926 W CN2012072926 W CN 2012072926W WO 2013082897 A1 WO2013082897 A1 WO 2013082897A1
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Prior art keywords
mobile terminal
application service
updated
update data
service update
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PCT/CN2012/072926
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English (en)
French (fr)
Inventor
刘冲
Original Assignee
中兴通讯股份有限公司
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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 BR112014013636A priority Critical patent/BR112014013636A2/pt
Publication of WO2013082897A1 publication Critical patent/WO2013082897A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/22Processing or transfer of terminal data, e.g. status or physical capabilities
    • H04W8/24Transfer of terminal data

Definitions

  • the present invention relates to the field of communications, and in particular to an application service update method and apparatus.
  • BACKGROUND OF THE INVENTION The era of mobile Internet is an era of competition in the whole industry chain. More manufacturers enter the industry by means of resource integration. The key to success is the ultimate user experience.
  • mobile applications are becoming more and more important, such as instant service, low latency, and always-on.
  • application services on the mobile Internet require users to actively obtain through the mobile terminal, and the update is not timely.
  • an application service update method including: receiving application service update data from a network side, where the application service update data carries a number of the mobile terminal to be updated; The mobile terminal is in an online state; the application service update data is sent to the mobile terminal to be updated.
  • the application service update method further includes: determining whether the user of the mobile terminal to be updated has subscribed to the application service corresponding to the application service update data; And performing an operation of transmitting application service update data to the mobile terminal to be updated.
  • the application service update method further includes: determining whether the mobile terminal to be updated is in an idle state; if the determination result is yes, executing the mobile terminal to be updated Send an application service update data operation.
  • the wake-up short message is sent to the mobile terminal to be updated, where the wake-up short message is used to wake up the service client corresponding to the application service update data on the mobile terminal to be updated
  • the service client is used to receive application service update data and perform an update of the application service.
  • the application service update method further includes: receiving a wake-up result from the mobile terminal, where the wake-up result is used to indicate whether the service client wakes up successfully; and the wake-up result indicates the service client
  • the application service update data is sent to the mobile terminal to be updated.
  • an application service updating apparatus including: a receiving module, configured to receive application service update data from a network side, where the application service update data carries a number of the mobile terminal to be updated And a determining module, configured to determine that the mobile terminal to be updated is in an online state; and the first sending module is configured to send the application service update data to the mobile terminal to be updated.
  • the application service updating apparatus further includes: a first determining module, configured to determine whether a user of the mobile terminal to be updated has subscribed to an application service corresponding to the application service update data; and the first execution module is configured to be in the first determining module If the result of the determination is YES, the operation of transmitting the application service update data to the mobile terminal to be updated is performed.
  • the application service updating apparatus further includes: a second determining module, configured to determine whether the mobile terminal to be updated is in an idle state; and the second executing module is configured to: when the determining result of the second determining module is yes, An operation of transmitting application service update data to the mobile terminal to be updated is performed.
  • the application service updating apparatus further includes: a second sending module, configured to send, when the mobile terminal to be updated is in an offline state, send a wake-up short message to the mobile terminal to be updated, where the wake-up short message is used to wake up the to-be-updated
  • a service client corresponding to the application service update data on the mobile terminal the service client is configured to receive the application service update data and perform an update of the application service.
  • FIG. 1 is a flowchart of an application service update method according to an embodiment of the present invention
  • 2 is a schematic diagram of a network deployment according to an embodiment of the present invention
  • FIG. 3 is a structural block diagram of an application service update system according to an embodiment of the present invention
  • FIG. 4 is a flowchart of a method for pushing data according to an embodiment of the present invention
  • FIG. 6 is a structural block diagram of an application service updating apparatus according to an embodiment of the present invention
  • FIG. 7 is a structural block diagram 1 of an application service updating apparatus according to a preferred embodiment of the present invention
  • 8 is a structural block diagram 2 of an application service updating apparatus according to a preferred embodiment of the present invention
  • FIG. 9 is a structural block diagram 3 of an application service updating apparatus according to a preferred embodiment of the present invention.
  • Step S102 Receive application service update data from the network side, where the application service update data carries the number of the mobile terminal to be updated.
  • Step S104 determining that the mobile terminal to be updated is in an online state.
  • Step S106 Send application service update data to the mobile terminal to be updated.
  • the application service requires the user to actively acquire through the mobile terminal, and the update is not timely.
  • the mobile terminal by pushing the application service update data to the mobile terminal, the mobile terminal can ensure that the application service is updated in time to improve the user experience.
  • the application service update method further includes: determining whether the user of the mobile terminal to be updated has subscribed to the application service update data. Application service; If the determination result is yes, an operation of transmitting application service update data to the mobile terminal to be updated is performed.
  • the update of the application service is performed when the user subscribes to the application service, and the application service that is not of interest to the user is not updated, and the user experience can be improved.
  • the application service update method before the application service update data is sent to the mobile terminal to be updated, the application service update method further includes: determining whether the mobile terminal to be updated is in an idle state; Yes, an operation of transmitting application service update data to the mobile terminal to be updated is performed.
  • updating the application service when the mobile terminal is in an idle state can prevent the mobile terminal from being too busy for a certain period of time to cause network congestion, thereby improving the user experience.
  • sending a wake-up message to the mobile terminal to be updated wherein the wake-up message is used to wake up the application service update data corresponding to the application service update data on the mobile terminal to be updated.
  • the service client which is used to receive application service update data and update the application service.
  • the mobile terminal is offline, there is no data link for transmitting the application service update data to the mobile terminal.
  • the mobile terminal is awake by using a short message to ensure that the mobile terminal updates the application service in time.
  • the application service update method further includes: receiving a wake-up result from the mobile terminal, where the wake-up result is used to indicate whether the service client wakes up successfully; and the wake-up result indicates that the service client wakes up successfully.
  • the application service update data is sent to the mobile terminal to be updated.
  • the application service is updated only when the mobile terminal is successfully awake, thereby avoiding application service update.
  • the data transmission fails, further ensuring that the mobile terminal updates the application service in time.
  • the service client runs on the mobile terminal to be updated in a critical service manner.
  • the service client operates in a critical service manner and can be easily woken up.
  • the embodiment of the present invention further provides a method for realizing the latest application to the mobile terminal in real time by using the push system, the method comprising: a downlink data processing method, configured to push the application data from the network side push platform to the downlink Corresponding mobile terminal, and intercepted by the resident software on the mobile terminal, and distributed to the corresponding application client; an uplink data reporting processing method, configured to return the result of processing the related data by the mobile terminal to the network side mobile terminal pushing platform Process.
  • the downlink data processing method includes the following steps 1 to 4. Step 1.
  • the push platform receives the downlink data from the application, and the data carries the mobile terminal number to be sent.
  • the push platform determines whether the mobile terminal is a platform registration mobile terminal according to the mobile terminal number, and determines whether it is online.
  • Step 2 For the online mobile terminal, determine whether the mobile terminal has subscribed to the application or has used the application frequently before, and push the data to the mobile terminal that has subscribed or frequently uses the application.
  • Step 3 For a mobile terminal that is not online, the wake-up mobile terminal module may send a wake-up message to the mobile terminal. The content of the short message is negotiated with the resident software on the mobile terminal, and the resident software intercepts the wake-up message and wakes up the corresponding service client on the mobile terminal.
  • Step 4 When the data with a relatively large amount of data is applied to the mobile terminal, the idle time detecting system of the pushing platform first detects the busy state of the mobile terminal, and selects whether to push or not according to the actual situation.
  • the uplink data reporting processing method includes the following steps 1 to 3.
  • Step 1 The data execution and reporting module, after receiving and processing the data, organizes the relevant result, and reports the result to the mobile terminal pushing platform on the network side through the wireless or/and the wired network.
  • Step 2 The data receiving and analyzing module in the mobile terminal pushing platform on the network side receives the data of step 1.
  • step 3 the corresponding result data is analyzed and maintained or displayed in a certain manner, and the relevant log can be recorded at the same time.
  • the effect of the embodiment of the present invention is to provide a real-time, efficient, intelligent, and low-cost data to the mobile terminal by providing a unified mobile terminal push platform and implementation method based on the network side, which solves to some extent.
  • FIG. 2 is a schematic diagram of network deployment according to an embodiment of the present invention.
  • the Internet application and the mobile terminal push platform on the network side are connected by wireless or/and a wired channel, and the two parties negotiate a unified communication protocol.
  • a large number of mobile terminals connect to the push platform through the wireless channel, and the two parties also use the negotiated protocol for communication.
  • the mobile terminal push platform needs to authenticate the identity of the provider of the Internet application in order to confirm that the relevant data and results are from a trusted network element, and the platform can charge a certain service fee for the registered Internet application.
  • the push platform also needs to authenticate the mobile terminal to ensure that the application pushed to the mobile terminal does belong to the user.
  • the correspondence between the International Mobile Subscriber Identity (IMSI) and the Mobile Subscribe International ISDN/PSTN Number (MSISDN) of the mobile terminal needs to be saved on the push platform.
  • IMSI International Mobile Subscriber Identity
  • MSISDN Mobile Subscribe International ISDN/PSTN Number
  • the mobile terminal online state maintenance and analysis module 311 is responsible for receiving the terminal online status report message sent by the online status reporting module 321 and updating the online status table of the mobile terminal stored on the push platform side in real time according to the reported data. In addition, when the data is to be pushed to the mobile terminal, the status of the mobile terminal is notified to the push platform for subsequent processing.
  • the platform wake-up module 312 is responsible for sending the wake-up message to the mobile terminal as needed, and receiving the processing result of the terminal wake-up module 322, and reporting the processing result to the application data pushing module 314, and the application data pushing module 314 determines whether to push according to the result.
  • the idle time detecting module 313 is configured to detect whether the terminal is in a network busy state when a large amount of data is sent to the terminal, and the idle time detecting module 313 obtains network traffic data of the terminal for a recent period of time, and obtains the current terminal by using a certain prediction algorithm. Whether it is idle or not, the conclusion is reported to the application data pushing module 314, and the application data pushing module 314 determines whether to push a large amount of data to the user at this time.
  • the application data pushing module 314 is responsible for pushing the application data to the terminal according to a certain policy, and receiving the result returned by the push data receiving module 323, and performing certain processing on the result, and logging if necessary.
  • the online status reporting module 321 is configured to detect whether the mobile terminal is in an available state, and report the status of the mobile terminal to the network side push platform.
  • the mobile terminal online is the basis for the push platform to execute the push policy.
  • the terminal wake-up module 322 is configured to intercept the wake-up short message sent by the push platform, and wake up the corresponding service processing software on the mobile terminal; and the push data receiving module 323 is configured to receive the push data.
  • FIG. 4 is a flowchart of a method for pushing data according to an embodiment of the present invention. As shown in FIG. 4, steps S402 to S412 are included. In step S402, the online status reporting module 321 periodically checks whether the link between the mobile terminal and the push platform is normal, and sends detection data to the push platform, and the online status maintenance and analysis module 311 of the mobile terminal updates the online status of the terminal.
  • step S404 the mobile terminal online state maintenance and analysis module 311 notifies the application data pushing module 314 of whether the mobile terminal that needs to push data needs online information, so that the application data pushing module 314 determines whether to perform data pushing.
  • step S406 for a large number of application data pushes, the application data pushing module 314 needs to detect whether the target terminal is currently in a relatively idle state by the idle time detecting module 313.
  • step S408 the idle time detecting module 313 obtains the network traffic data of the terminal for a recent period of time, and determines whether the current terminal is idle by using a certain prediction algorithm, and returns the obtained conclusion to the application data pushing module 314.
  • Step S410 When the terminal is online and relatively idle, the application data pushing module 314 pushes the data to the mobile terminal, and the push data receiving module 323 receives the push data and performs processing. In step S412, the push data receiving module 323 processes the received push data and returns the processing result to the application data push module 314.
  • FIG. 5 is a flowchart of a method for waking up a mobile terminal according to an embodiment of the present invention. As shown in FIG. 5, the following steps S502 to S508 are included. Step S502: If the mobile terminal is not online, the application data pushing module 314 notifies the platform wakeup module 312 of the mobile terminal detailed information, including the MSISDN number of the mobile terminal and the application ID that needs to be woken up.
  • Step S504 the platform wake-up module 312 sends a wake-up message to the mobile terminal, and the content of the short message is set in the terminal wake-up module in advance, and the terminal wake-up module 322 intercepts the short message, and wakes up the related application client program of the mobile terminal according to the short-message content.
  • Step S506 the terminal wake-up module 322 notifies the platform wake-up module 312 of the wake-up result.
  • the platform wake-up module 312 reports the wake-up result to the application data pushing module 314, and the application data pushing module 314 determines whether to push the data according to whether the wake-up is successful or not.
  • the IP message is used to interact; the mobile terminal is not online.
  • the data link between the push platform and the mobile terminal does not exist, so it is necessary to use a short message to interact.
  • the software residing on the mobile terminal can operate in a critical service manner.
  • the corresponding mobile terminal resident program can support more functions, and the terminal client program of an application can be installed together on the mobile terminal, and the resident program can be hung when needed. From the client program.
  • FIG. 6 is a structural block diagram of an application service updating apparatus according to an embodiment of the present invention. As shown in FIG. 6, the receiving module 61, the determining module 62, and the first sending module 63 are described in detail below.
  • the receiving module 61 is configured to receive the application service update data from the network side, where the application service update data carries the number of the mobile terminal to be updated; the determining module 62 is connected to the receiving module 61, and is configured to determine that the mobile terminal to be updated is in the The online sending state is connected to the determining module 62, and is configured to send the application service update data to the mobile terminal to be updated.
  • the mobile terminal by pushing the application service update data to the mobile terminal, the mobile terminal can ensure that the application service is updated in time to improve the user experience.
  • FIG. 7 is a structural block diagram of an application service updating apparatus according to a preferred embodiment of the present invention. As shown in FIG.
  • the application service updating apparatus further includes: a first determining module 64, connected to the determining module 62, configured to determine that it is to be updated. Whether the user of the mobile terminal has subscribed to the application service corresponding to the application service update data; the first execution module 65 is connected to the first determination module 64, and is configured to execute the direction when the determination result of the first determination module 64 is YES.
  • the update of the application service is performed when the user subscribes to the application service, and the application service that is not of interest to the user is not updated, and the user experience can be improved.
  • FIG. 8 is a block diagram showing the structure of an application service updating apparatus according to a preferred embodiment of the present invention.
  • the application service updating apparatus further includes: a second determining module 66, connected to the determining module 62, configured to determine that it is to be updated. Whether the mobile terminal is in an idle state; the second execution module 67 is connected to the second determining module 66, and configured to send an application service update to the mobile terminal to be updated if the determination result of the second determining module 66 is yes.
  • the operation of the data In the preferred embodiment, updating the application service when the mobile terminal is in an idle state can prevent the mobile terminal from being too busy for a certain period of time to cause network congestion, thereby improving the user experience.
  • FIG. 9 is a structural block diagram 3 of an application service updating apparatus according to a preferred embodiment of the present invention. As shown in FIG.
  • the application service updating apparatus further includes: a second sending module 68 connected to the determining module 62, configured to be in a waiting state
  • the device sends a wake-up message to the mobile terminal to be updated, where the wake-up message is used to wake up the service client corresponding to the application service update data on the mobile terminal to be updated, and the service client is set to Receive application service update data and update the application service.
  • the mobile terminal is offline, there is no data link for transmitting the application service update data to the mobile terminal.
  • the mobile terminal is awake by using a short message to ensure that the mobile terminal updates the application service in time.
  • an application service update method and apparatus are provided.
  • the method for pushing the application service update data to the mobile terminal by using the method of the present invention solves the problem that the update time of the application service on the mobile Internet is not high in the related art, thereby ensuring that the mobile terminal timely updates the application service and improves the user. Experience.
  • modules or steps of the present invention can be implemented by a general-purpose computing device, which can be concentrated on a single computing device or distributed over a network composed of multiple computing devices. Alternatively, they may be implemented by program code executable by the computing device, such that they may be stored in the storage device by the computing device, or they may be separately fabricated into individual integrated circuit modules, or they may be Multiple modules or steps are made into a single integrated circuit module.
  • the invention is not limited to any specific combination of hardware and software.
  • the above is only the preferred embodiment of the present invention, and is not intended to limit the present invention, and various modifications and changes can be made to the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and scope of the present invention are intended to be included within the scope of the present invention.

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Abstract

本发明实施例公开了一种应用服务更新方法和装置,该方法包括:接收到来自网络侧的应用服务更新数据,其中应用服务更新数据中携带有待更新的移动终端的号码;确定待更新的移动终端处于在线状态;向待更新的移动终端发送应用服务更新数据。本发明实施例可以保证移动终端及时更新应用服务,提高了用户体验。

Description

应用服务更新方法和装置 技术领域 本发明涉及通信领域, 具体而言, 涉及一种应用服务更新方法和装置。 背景技术 移动互联网时代是全产业链竞争的时代, 更多的厂商以资源整合的方式进入到这 个产业, 成功的关键是最终的用户体验。移动应用除了要提供给用户低功耗、交互性、 内容丰富、 简单、 易用的服务外, 服务的即时性、 低时延性和始终在线等特性显得越 来越重要。 但是, 移动互联网上的应用服务都需要用户通过移动终端去主动获取, 其更新及 时性不高。 发明内容 本发明实施例提供了一种应用服务更新方法和装置, 以至少解决相关技术中移动 互联网上应用服务的更新及时性不高的问题。 根据本发明实施例的一方面, 提供了一种应用服务更新方法, 包括: 接收到来自 网络侧的应用服务更新数据, 其中应用服务更新数据中携带有待更新的移动终端的号 码; 确定待更新的移动终端处于在线状态; 向待更新的移动终端发送应用服务更新数 据。 优选地, 在向待更新的移动终端发送应用服务更新数据之前, 上述应用服务更新 方法还包括: 判断待更新的移动终端的用户是否已订阅应用服务更新数据对应的应用 服务; 如果判断结果为是, 则执行向待更新的移动终端发送应用服务更新数据的操作。 优选地, 在向待更新的移动终端发送应用服务更新数据之前, 上述应用服务更新 方法还包括: 判断待更新的移动终端是否处于空闲状态; 如果判断结果为是, 则执行 向待更新的移动终端发送应用服务更新数据的操作。 优选地, 在待更新的移动终端处于离线状态的情况下, 向待更新的移动终端发送 唤醒短信, 其中唤醒短信用于唤醒待更新的移动终端上的与应用服务更新数据对应的 服务客户端, 服务客户端用于接收应用服务更新数据并进行应用服务的更新。 优选地, 在向待更新的移动终端发送唤醒短信之后, 上述应用服务更新方法还包 括: 接收来自移动终端的唤醒结果,其中唤醒结果用于指示服务客户端是否唤醒成功; 在唤醒结果指示服务客户端唤醒成功的情况下, 向待更新的移动终端发送应用服务更 新数据。 优选地, 服务客户端以关键服务的方式在待更新的移动终端上运行。 根据本发明实施例的另一方面, 提供了一种应用服务更新装置, 包括: 接收模块, 设置为接收来自网络侧的应用服务更新数据, 其中应用服务更新数据中携带有待更新 的移动终端的号码; 确定模块, 设置为确定待更新的移动终端处于在线状态; 第一发 送模块, 设置为向待更新的移动终端发送应用服务更新数据。 优选地, 上述应用服务更新装置还包括: 第一判断模块, 设置为判断待更新的移 动终端的用户是否已订阅应用服务更新数据对应的应用服务; 第一执行模块, 设置为 在第一判断模块的判断结果为是的情况下, 执行向待更新的移动终端发送应用服务更 新数据的操作。 优选地, 上述应用服务更新装置还包括: 第二判断模块, 设置为判断待更新的移 动终端是否处于空闲状态; 第二执行模块, 设置为在第二判断模块的判断结果为是的 情况下, 执行向待更新的移动终端发送应用服务更新数据的操作。 优选地, 上述应用服务更新装置还包括: 第二发送模块, 设置为在待更新的移动 终端处于离线状态的情况下, 向待更新的移动终端发送唤醒短信, 其中唤醒短信用于 唤醒待更新的移动终端上的与应用服务更新数据对应的服务客户端, 服务客户端设置 为接收应用服务更新数据并进行应用服务的更新。 通过本发明实施例, 采用将应用服务更新数据推送到移动终端的方法, 解决了相 关技术中移动互联网上应用服务的更新及时性不高的问题, 进而可以保证移动终端及 时更新应用服务, 提高了用户体验。 附图说明 此处所说明的附图用来提供对本发明的进一步理解, 构成本申请的一部分, 本发 明的示意性实施例及其说明用于解释本发明, 并不构成对本发明的不当限定。 在附图 中: 图 1是根据本发明实施例的应用服务更新方法的流程图; 图 2是根据本发明实施例的网络部署示意图; 图 3是根据本发明实施例的应用服务更新系统的结构框图; 图 4是根据本发明实施例的推送数据方法的流程图; 图 5是根据本发明实施例的唤醒移动终端方法的流程图; 图 6是根据本发明实施例的应用服务更新装置的结构框图; 图 7是根据本发明优选实施例的应用服务更新装置的结构框图一; 图 8是根据本发明优选实施例的应用服务更新装置的结构框图二; 图 9是根据本发明优选实施例的应用服务更新装置的结构框图三。 具体实施方式 需要说明的是, 在不冲突的情况下, 本申请中的实施例及实施例中的特征可以相 互组合。 下面将参考附图并结合实施例来详细说明本发明。 本发明实施例提供了一种应用服务更新方法, 图 1是根据本发明实施例的应用服 务更新方法的流程图, 包括如下的步骤 S102至步骤 S106。 步骤 S102, 接收到来自网络侧的应用服务更新数据, 其中应用服务更新数据中携 带有待更新的移动终端的号码。 步骤 S104, 确定待更新的移动终端处于在线状态。 步骤 S106, 向待更新的移动终端发送应用服务更新数据。 相关技术中,应用服务都需要用户通过移动终端去主动获取,其更新及时性不高。 本发明实施例中, 通过将应用服务更新数据推送到移动终端, 可以保证移动终端及时 更新应用服务, 提高用户体验。 为了更好地实现本发明上述实施例, 在向待更新的移动终端发送应用服务更新数 据之前, 上述应用服务更新方法还包括: 判断待更新的移动终端的用户是否已订阅应 用服务更新数据对应的应用服务; 如果判断结果为是, 则执行向待更新的移动终端发 送应用服务更新数据的操作。 本优选实施例中, 在用户订阅应用服务的情况下进行应 用服务的更新, 而对于用户不关心的应用服务则不更新, 可以提高用户体验。 在本发明实施例的一种优选实施方式中, 在向待更新的移动终端发送应用服务更 新数据之前, 上述应用服务更新方法还包括: 判断待更新的移动终端是否处于空闲状 态; 如果判断结果为是, 则执行向待更新的移动终端发送应用服务更新数据的操作。 本优选实施例中, 在移动终端处于空闲状态的情况下进行应用服务的更新, 可以防止 某段时间内移动终端过忙导致网络瘫痪, 从而提高用户体验。 考虑到及时性的问题, 在待更新的移动终端处于离线状态的情况下, 向待更新的 移动终端发送唤醒短信, 其中唤醒短信用于唤醒待更新的移动终端上的与应用服务更 新数据对应的服务客户端, 服务客户端用于接收应用服务更新数据并进行应用服务的 更新。 由于移动终端离线时, 不存在向移动终端发送应用服务更新数据的数据链路, 本优选实施例中采用短信的方式唤醒移动终端,从而保证移动终端及时更新应用服务。 在向待更新的移动终端发送唤醒短信之后, 上述应用服务更新方法还包括: 接收 来自移动终端的唤醒结果, 其中唤醒结果用于指示服务客户端是否唤醒成功; 在唤醒 结果指示服务客户端唤醒成功的情况下,向待更新的移动终端发送应用服务更新数据。 考虑到移动终端可能由于电量耗尽、 网络中断等原因而离线, 从而无法被唤醒, 本优 选实施例中仅仅在移动终端被唤醒成功的情况下才进行应用服务的更新, 从而可以避 免应用服务更新数据发送失败, 进一步保证移动终端及时更新应用服务。 优选地, 服务客户端以关键服务的方式在待更新的移动终端上运行。 本优选实施 例中, 服务客户端以关键服务的方式运行, 可以便于对其进行唤醒。 本发明实施例还提供了一种利用所述推送系统来实现将最新应用实时地推送给移 动终端的方法, 该方法包括: 下行数据处理方法, 用于将应用数据从网络侧推送平台 下行推送到对应的移动终端上, 并被移动终端上的驻留软件截获, 分发给相应应用客 户端的流程; 上行数据汇报处理方法, 用于将移动终端处理相关数据的结果返回给网 络侧移动终端推送平台的流程。 下行数据处理方法包括如下步骤 1至步骤 4。 步骤 1, 推送平台接收到来自应用的下行数据, 数据中带上要发往的移动终端号 码。 推送平台根据移动终端号码, 判断该移动终端是否是平台注册移动终端, 并确定 其是否在线。 步骤 2, 对于在线的移动终端, 判断该移动终端是否订购过该应用或在以前经常 使用过该应用, 将数据推送给已订购或经常使用该应用的移动终端。 步骤 3, 对于不在线的移动终端, 唤醒移动终端模块可以发送唤醒短信给移动终 端。 短信的内容是和移动终端上的驻留软件协商好的, 驻留软件截获唤醒短信, 唤醒 移动终端上的相应服务客户端。 步骤 4, 当应用有相对较大数据量的数据推送给移动终端时, 推动平台的闲时检 测系统首先检测移动终端的忙闲状态, 根据实际情况选择推送或不推送。 上行数据汇报处理方法包括如下步骤 1至步骤 3。 步骤 1, 数据执行和上报模块, 接收并处理完数据后, 组织相关结果, 通过无线 或 /和有线网络把结果上报给网络侧的移动终端推送平台。 步骤 2, 网络侧的移动终端推送平台中的数据接收和分析模块接收到步骤 1 的数 据。 步骤 3, 分析相应的结果数据, 并以一定的方式保持或展示, 同时可以记录相关 日志。 本发明实施例的效果在于, 通过提供一种基于网络侧的统一的移动终端推送平台 和实现方法, 将数据实时的、 高效的、 智能的并且低耗的推送给移动终端, 一定程度 上解决了移动终端面临的瓶颈问题。 下面将结合实例对本发明实施例的实现过程进行详细描述。 图 2是根据本发明实施例的网络部署示意图, 如图 2所示, 图中只是将最简单的 情况表示出来, 即只有一套网络侧的移动终端推送平台的情况, 而实际中, 由于移动 终端数量较庞大, 需要多个移动推送平台相互之间协作, 并有一定的路由选择策略才 能完成。其中互联网应用和网络侧的移动终端推送平台之间通过无线或 /和有线信道连 接, 双方协商统一的通讯协议, 大量的移动终端通过无线信道连接推送平台, 双方也 采用协商的协议进行通讯。 移动终端推送平台需要认证互联网应用的提供商的身份, 以便确认相关数据和结 果来自可信任的网元, 平台可对注册的互联网应用收取一定的服务费。 推送平台还需 要对移动终端进行身份认证, 以确保推送给移动终端的应用的确属于该用户。 推送平 台上需要保存移动终端的国际移动用户识别码(International Mobie Subscriber Identity, 简称为 IMSI)和移动用户国际号码(Mobile Subscribe International ISDN/PSTN Number, 简称为 MSISDN) 的对应关系。 图 3是根据本发明实施例的应用服务更新系统的结构框图, 如图 3所示, 该系统 分为: 移动终端推送平台 31、 移动终端平台 32; 其中移动终端推送平台 31由四个模 块组成: 移动终端在线状态维护与分析模块 311、 平台唤醒模块 312、 闲时检测模块 313、 应用数据推送模块 314; 移动终端平台 32主要指的是移动终端上的驻留软件, 由三个模块组成:在线状态上报模块 321、终端唤醒模块 322、推送数据接收模块 323。 移动终端在线状态维护与分析模块 311负责接收在线状态上报模块 321发送过来 的终端在线状态报告消息, 并根据上报的数据实时更新保存在推送平台侧的移动终端 在线状态表。 另外还负责在有数据要推送给移动终端时, 将该移动终端的状态告知推 送平台, 以备后续处理。 平台唤醒模块 312, 负责根据需要往移动终端发送唤醒短信, 并接收终端唤醒模 块 322的处理结果,将处理结果上报给应用数据推送模块 314,应用数据推送模块 314 根据该结果做出是否进行推送的判断。 闲时检测模块 313, 负责在有大量数据发送给终端时, 检测终端此时是否处于网 络忙碌状态, 闲时检测模块 313获取终端最近一段时间的网络流量数据, 通过一定的 预测算法得出当前终端是否空闲, 将结论上报给应用数据推送模块 314, 应用数据推 送模块 314做出是否在此时将大量数据推送给用户的判断。 应用数据推送模块 314, 负责将应用数据, 按照一定的策略推送给终端, 并接收 推送数据接收模块 323返回的结果, 并对结果做一定的处理, 必要时出日志。 在线状态上报模块 321, 设置为检测移动终端是否处于可用状态, 并将移动终端 的状态上报给网络侧推送平台, 移动终端在线是推送平台执行推送策略的基础。 终端唤醒模块 322, 设置为截获推送平台发送的唤醒短信, 唤醒移动终端上的相 应服务处理软件; 推送数据接收模块 323, 设置为接收推送数据。 移动终端上的驻留处理软件和网络侧的移动终端应用推送平台之间采用网络通讯 和短信通讯, 移动终端上的驻留处理软件和网络侧的移动终端应用推送平台内部采用 内部消息通讯或函数调用的方式。 图 4是根据本发明实施例的推送数据方法的流程图, 如图 4所示, 包括步骤 S402 至步骤 S412。 步骤 S402,在线状态上报模块 321会定期检测移动终端和推送平台间的链路是否 正常, 并往推送平台发送检测数据, 移动终端在线状态维护与分析模块 311会更新终 端的在线状态。 步骤 S404, 移动终端在线状态维护与分析模块 311将需要推送数据的移动终端是 否在线信息告知应用数据推送模块 314, 以备应用数据推送模块 314做出是否进行数 据推送的判断。 步骤 S406, 对于大数量的应用数据推送, 应用数据推送模块 314需要通过闲时检 测模块 313检测目标终端当前是否处于相对空闲的状态。 步骤 S408, 闲时检测模块 313获取终端最近一段时间的网络流量数据, 通过一定 的预测算法来得出当前终端是否空闲, 将得出的结论返回给应用数据推送模块 314。 步骤 S410, 在终端在线且处于相对空闲的情况下, 应用数据推送模块 314将数据 推送给移动终端, 推送数据接收模块 323接收到推送数据, 并进行处理。 步骤 S412,推送数据接收模块 323处理完接收到的推送数据将处理结果返回给应 用数据推送模块 314。 图 5是根据本发明实施例的唤醒移动终端方法的流程图, 如图 5所示, 包括如下 的步骤 S502至步骤 S508。 步骤 S502, 移动终端不在线的情况下, 应用数据推送模块 314将移动终端详细信 息告知平台唤醒模块 312, 包括移动终端的 MSISDN号、 需要唤醒的应用 ID。 步骤 S504, 平台唤醒模块 312向移动终端发送唤醒短信, 短信的内容预先在终端 唤醒模块中设定, 终端唤醒模块 322截获该短信, 根据短信内容唤醒移动终端的相关 应用客户端程序。 步骤 S506, 终端唤醒模块 322将唤醒结果通知平台唤醒模块 312。 步骤 S508, 平台唤醒模块 312将唤醒结果再上报给应用数据推动模块 314, 应用 数据推动模块 314根据唤醒成功与否做出是否推送数据的判断。 在上述流程中, 由于互联网应用和推送平台之间以及移动终端和推送平台之间均 是通过有线和 /或无线通道建立的数据链路, 所以采用 IP 消息的方式交互; 在移动终 端不在线的情况下, 推送平台和移动终端之间的数据链路不存在, 所以需要采用短信 的方式交互。 优选地, 在移动终端上驻留的软件可以以关键服务的方式运行。 优选地, 加上自动升级功能后, 对应的移动终端驻留程序可以支持更多的功能, 可将某个应用的终端客户端程序一起安装在移动终端上, 驻留程序可以在需要的时候 吊起该客户端程序。 需要说明的是, 在附图的流程图示出的步骤可以在诸如一组计算机可执行指令的 计算机系统中执行, 并且, 虽然在流程图中示出了逻辑顺序, 但是在某些情况下, 可 以以不同于此处的顺序执行所示出或描述的步骤。 本发明实施例还提供了一种应用服务更新装置, 该装置可以用于实现上述应用服 务更新方法。 图 6是根据本发明实施例的应用服务更新装置的结构框图, 如图 6所示, 包括接收模块 61、 确定模块 62和第一发送模块 63, 下面对其结构进行详细描述。 接收模块 61, 设置为接收来自网络侧的应用服务更新数据, 其中应用服务更新数 据中携带有待更新的移动终端的号码; 确定模块 62, 连接至接收模块 61, 设置为确定 待更新的移动终端处于在线状态; 第一发送模块 63, 连接至确定模块 62, 设置为向待 更新的移动终端发送应用服务更新数据。 本发明实施例中, 通过将应用服务更新数据 推送到移动终端, 可以保证移动终端及时更新应用服务, 提高用户体验。 图 7是根据本发明优选实施例的应用服务更新装置的结构框图一, 如图 7所示, 上述应用服务更新装置还包括: 第一判断模块 64, 连接至确定模块 62, 设置为判断待 更新的移动终端的用户是否已订阅应用服务更新数据对应的应用服务; 第一执行模块 65, 连接至第一判断模块 64, 设置为在第一判断模块 64的判断结果为是的情况下, 执行向待更新的移动终端发送应用服务更新数据的操作。 本优选实施例中, 在用户订 阅应用服务的情况下进行应用服务的更新, 而对于用户不关心的应用服务则不更新, 可以提高用户体验。 图 8是根据本发明优选实施例的应用服务更新装置的结构框图二, 如图 8所示, 上述应用服务更新装置还包括: 第二判断模块 66, 连接至确定模块 62, 设置为判断待 更新的移动终端是否处于空闲状态; 第二执行模块 67, 连接至第二判断模块 66, 设置 为在第二判断模块 66的判断结果为是的情况下,执行向待更新的移动终端发送应用服 务更新数据的操作。 本优选实施例中, 在移动终端处于空闲状态的情况下进行应用服 务的更新, 可以防止某段时间内移动终端过忙导致网络瘫痪, 从而提高用户体验。 图 9是根据本发明优选实施例的应用服务更新装置的结构框图三, 如图 9所示, 上述应用服务更新装置还包括: 第二发送模块 68, 连接至确定模块 62, 设置为在待更 新的移动终端处于离线状态的情况下, 向待更新的移动终端发送唤醒短信, 其中唤醒 短信用于唤醒待更新的移动终端上的与应用服务更新数据对应的服务客户端, 服务客 户端设置为接收应用服务更新数据并进行应用服务的更新。 由于移动终端离线时, 不 存在向移动终端发送应用服务更新数据的数据链路, 本优选实施例中采用短信的方式 唤醒移动终端, 从而保证移动终端及时更新应用服务。 需要说明的是,装置实施例中描述的应用服务更新装置对应于上述的方法实施例, 其具体的实现过程在方法实施例中已经进行过详细说明, 在此不再赘述。 综上所述, 根据本发明的上述实施例, 提供了一种应用服务更新方法和装置。 通 过本发明实施例, 采用将应用服务更新数据推送到移动终端的方法, 解决了相关技术 中移动互联网上应用服务的更新及时性不高的问题, 进而可以保证移动终端及时更新 应用服务, 提高了用户体验。 显然, 本领域的技术人员应该明白, 上述的本发明的各模块或各步骤可以用通用 的计算装置来实现, 它们可以集中在单个的计算装置上, 或者分布在多个计算装置所 组成的网络上, 可选地, 它们可以用计算装置可执行的程序代码来实现, 从而, 可以 将它们存储在存储装置中由计算装置来执行, 或者将它们分别制作成各个集成电路模 块, 或者将它们中的多个模块或步骤制作成单个集成电路模块来实现。 这样, 本发明 不限制于任何特定的硬件和软件结合。 以上所述仅为本发明的优选实施例而已, 并不用于限制本发明, 对于本领域的技 术人员来说, 本发明可以有各种更改和变化。 凡在本发明的精神和原则之内, 所作的 任何修改、 等同替换、 改进等, 均应包含在本发明的保护范围之内。

Claims

权 利 要 求 书
1. 一种应用服务更新方法, 包括:
接收到来自网络侧的应用服务更新数据, 其中所述应用服务更新数据中携 带有待更新的移动终端的号码;
确定所述待更新的移动终端处于在线状态;
向所述待更新的移动终端发送所述应用服务更新数据。
2. 根据权利要求 1所述的方法, 其中, 在向所述待更新的移动终端发送所述应用 服务更新数据之前, 还包括:
判断所述待更新的移动终端的用户是否已订阅所述应用服务更新数据对应 的应用服务;
如果判断结果为是, 则执行向所述待更新的移动终端发送所述应用服务更 新数据的操作。
3. 根据权利要求 1所述的方法, 其中, 在向所述待更新的移动终端发送所述应用 服务更新数据之前, 还包括:
判断所述待更新的移动终端是否处于空闲状态;
如果判断结果为是, 则执行向所述待更新的移动终端发送所述应用服务更 新数据的操作。
4. 根据权利要求 1至 3中任一项所述的方法, 其中, 在所述待更新的移动终端处 于离线状态的情况下, 向所述待更新的移动终端发送唤醒短信, 其中所述唤醒 短信用于唤醒所述待更新的移动终端上的与所述应用服务更新数据对应的服务 客户端, 所述服务客户端用于接收所述应用服务更新数据并进行应用服务的更 新。
5. 根据权利要求 4所述的方法, 其中, 在向所述待更新的移动终端发送唤醒短信 之后, 还包括:
接收来自所述移动终端的唤醒结果, 其中所述唤醒结果用于指示所述服务 客户端是否唤醒成功; 在所述唤醒结果指示所述服务客户端唤醒成功的情况下, 向所述待更新的 移动终端发送所述应用服务更新数据。 根据权利要求 4所述的方法, 其中, 所述服务客户端以关键服务的方式在所述 待更新的移动终端上运行。 一种应用服务更新装置, 包括:
接收模块, 设置为接收来自网络侧的应用服务更新数据, 其中所述应用服 务更新数据中携带有待更新的移动终端的号码;
确定模块, 设置为确定所述待更新的移动终端处于在线状态;
第一发送模块, 设置为向所述待更新的移动终端发送所述应用服务更新数 据。 根据权利要求 7所述的装置, 其中, 还包括: 第一判断模块, 设置为判断所述待更新的移动终端的用户是否已订阅所述 应用服务更新数据对应的应用服务;
第一执行模块, 设置为在所述第一判断模块的判断结果为是的情况下, 执 行向所述待更新的移动终端发送所述应用服务更新数据的操作。 根据权利要求 7所述的装置, 其中, 还包括: 第二判断模块, 设置为判断所述待更新的移动终端是否处于空闲状态; 第二执行模块, 设置为在所述第二判断模块的判断结果为是的情况下, 执 行向所述待更新的移动终端发送所述应用服务更新数据的操作。 根据权利要求 7至 9中任一项所述的装置, 其中, 还包括: 第二发送模块, 设 置为在所述待更新的移动终端处于离线状态的情况下, 向所述待更新的移动终 端发送唤醒短信, 其中所述唤醒短信设置为唤醒所述待更新的移动终端上的与 所述应用服务更新数据对应的服务客户端, 所述服务客户端设置为接收所述应 用服务更新数据并进行应用服务的更新。
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