WO2014135016A1 - 一种业务消息发送方法及装置 - Google Patents

一种业务消息发送方法及装置 Download PDF

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Publication number
WO2014135016A1
WO2014135016A1 PCT/CN2014/072522 CN2014072522W WO2014135016A1 WO 2014135016 A1 WO2014135016 A1 WO 2014135016A1 CN 2014072522 W CN2014072522 W CN 2014072522W WO 2014135016 A1 WO2014135016 A1 WO 2014135016A1
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WO
WIPO (PCT)
Prior art keywords
service message
service
message
processed
cached
Prior art date
Application number
PCT/CN2014/072522
Other languages
English (en)
French (fr)
Inventor
龙丽萍
刘勇
李江
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 US14/912,983 priority Critical patent/US20160204904A1/en
Priority to EP14760238.7A priority patent/EP3038032A4/en
Publication of WO2014135016A1 publication Critical patent/WO2014135016A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/08Arrangements for detecting or preventing errors in the information received by repeating transmission, e.g. Verdan system
    • 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
    • H04L67/568Storing data temporarily at an intermediate stage, e.g. caching
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/10Office automation; Time management
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L51/00User-to-user messaging in packet-switching networks, transmitted according to store-and-forward or real-time protocols, e.g. e-mail
    • H04L51/06Message adaptation to terminal or network requirements
    • H04L51/066Format adaptation, e.g. format conversion or compression
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/12Messaging; Mailboxes; Announcements
    • H04W4/14Short messaging services, e.g. short message services [SMS] or unstructured supplementary service data [USSD]

Definitions

  • the present invention relates to the field of mobile communications, and in particular, to a method and an apparatus for transmitting a service message.
  • An integrated service access gateway (ISAG) is a functional entity that implements unified service access and quality of service monitoring in a mobile service network.
  • ISAG operators can open telecommunications network resources and control the use of network resources, shield the underlying network technology complexity for CP/SP, provide a unified service development environment, lower the threshold for business development, provide converged services for users, and enrich services.
  • Form which is conducive to the development of enterprise applications and the expansion of the enterprise user market.
  • the SP Service Provider
  • the SP can deliver the provided content or service to the SMS gateway or MMS gateway through SMS or MMS through the ISAG, and finally send it to the user's mobile phone through the SMS gateway or MMS gateway.
  • the ISAG will send a message to the SMS gateway/MMS gateway, and will return a status report of the failed transmission to the SP.
  • the SP resends, it will increase the amount of data in the network and the number of messages processed by the system.
  • the present invention provides a method and apparatus for transmitting a service message, which can improve the success rate of service message transmission, to solve at least one of the above problems.
  • the present invention provides a service message sending method, including: buffering a processed service message; performing format conversion on the processed service message, and transmitting the processed service message to a corresponding service gateway; And resending the cached processed service message when the processed service message fails to be sent.
  • the resending processing of the cached service message includes: determining whether the cached service message satisfies a preset retransmission condition, and if yes, extracting the cached processed service message And performing the format conversion on the processed service message, and then resending the service message to the service gateway, and determining whether the currently resent the service message is successfully sent. If successful, deleting the cached service message. .
  • the resending processing of the cached service message further includes: if the currently resending the processed service message fails, resending the cached processed service message again.
  • the resending processing of the cached service message further includes: deleting the cached processed service when the cached processed service message does not meet a preset retransmission condition Message.
  • determining whether the cached service message meets the preset retransmission condition comprises: determining whether the processed service message needs to be resent according to the reason for the service transmission failure, and if not, determining that the preset does not satisfy the preset The retransmission condition, if yes, further determines whether the current number of retransmissions is less than a preset number of times, and if it is less, determines that the preset retransmission condition is satisfied, and if it is greater, determines that the preset retransmission condition is not satisfied.
  • the buffering the processed service message comprises: buffering a processed service message into the session.
  • the method before buffering the processed service message, the method further includes: receiving a service message, and processing the service message.
  • the method before the buffering the processed service message, the method further includes: determining whether the service message meets a cache condition, and if yes, entering a step of buffering a processed service message, otherwise, not caching
  • the processed service message is directly converted to the corresponding service gateway by performing format conversion on the processed service message.
  • the cache condition includes at least one of the following: the importance of the service message is higher than a preset level, and the type of the service message belongs to a preset type that needs to be cached.
  • the present invention also provides a service message sending apparatus, including: a cache processing module, a service retransmission processing module, and a service sending module, where: the cache processing module is configured to cache a process The service sending module is configured to perform format conversion on the processed service message and then send the message to the corresponding service gateway; the service retransmission processing module is configured to: when the processed service message fails to be sent Performing retransmission processing on the cached processed service message.
  • the service retransmission processing module includes: a service judging module; the service judging module is configured to determine whether the cached service message satisfies a preset retransmission condition, and if yes, notify the cache processing module And sending the processed service message to the service sending module for resending, and determining whether the currently resent the service message is successful, and if successful, notifying the cache processing module to delete the cached device.
  • the processed business message is further configured to re-send the cached processed service message again when it is determined that the current re-sent of the processed service message fails.
  • the service determining module is further configured to notify the cache processing module to delete the cached processed service message when it is determined that the processed service message that is cached does not meet the preset retransmission condition .
  • the service determining module is configured to determine whether the processed service message needs to be resent according to the reason for the failed service transmission, and if not, determine that the preset retransmission condition is not met, and if yes, further determine the current retransmission Whether the number of times is less than a preset number of times, if it is less than, it is determined that the preset retransmission condition is satisfied, and if it is greater, it is determined that the preset retransmission condition is not satisfied.
  • the cache processing module is configured to cache a processed service message into the session.
  • the apparatus further comprises: a service processing module, configured to receive a service message, and process the service message.
  • the device further includes: a cache judging module, configured to determine whether the service message meets a cache condition, and if so, invoke the cache processing module and the service sending module; otherwise, invoke the service sending module.
  • the cache condition includes at least one of the following: the importance of the service message is higher than a preset level, and the type of the service message belongs to a preset type that needs to be cached.
  • the present invention provides a service message sending method and device capable of providing a service message sending success rate, wherein the service message sending method includes: buffering a processed service message; and processing the processed service message The format conversion is performed and sent to the corresponding service gateway; when the processed service message fails to be sent, the cached processed service message is retransmitted.
  • the method of the present invention caches a service message before sending a service message, and can retransmit the process by using the cached service message process when the service message fails to be sent.
  • the service message sending method of the present invention can improve the service message sending. Success rate, reducing business losses.
  • 1 is a schematic flowchart of a method for transmitting a service message according to Embodiment 1 of the present invention; FIG.
  • FIG. 2 is a schematic diagram of a first preferred flow of a method for transmitting a service message according to Embodiment 1 of the present invention
  • FIG. 4 is a schematic flowchart of a method for determining whether a preset retransmission condition is met according to Embodiment 1 of the present invention
  • FIG. 4 is a schematic flowchart of a method for determining whether a preset retransmission condition is met according to Embodiment 1 of the present invention
  • FIG. 6 is a schematic diagram of a flow of a message sent by an integrated service access gateway according to Embodiment 2 of the present invention
  • FIG. 7 is a schematic structural diagram of a service message sending apparatus according to Embodiment 3 of the present invention
  • Embodiment 1 As shown in FIG. 1 , this embodiment provides a method for sending a service message, including the following steps: Step 101: Cache a processed service message; Step 102: Perform the processed service message The format conversion is sent to the corresponding service gateway.
  • Step 103 Perform retransmission processing on the cached service message when the processed service message fails to be sent.
  • the service message sending method of the embodiment may cache a service message before the service message is sent, and may resend the cached service message when the service message fails to be sent; thereby preventing the service message from being sent due to the failure of the service message. Loss can increase the success rate of business message transmission.
  • the retransmission process in this embodiment may be to directly extract the buffered processed service message for retransmission, or perform retransmission according to a preset condition.
  • the service message may be a service message received from another network element, for example, an SP, or may be a service message generated by the network element, which is not limited by the disclosure. As shown in FIG.
  • the embodiment further provides a preferred method for sending a service message, including the following steps: Step 201: Receive a service message, and The service message is processed; Step 202: Cache a processed service message; Step 203: Perform format conversion on the processed service message and send the message to the corresponding service gateway; Step 204: When the processed service is When the message fails to be sent, the cached processed service message is retransmitted.
  • the service message sending method of the embodiment may cache a service message before the service message is sent, and may resend the cached service message when the service message fails to be sent; thereby preventing the service message from being sent due to the failure of the service message. Loss can increase the success rate of business message transmission.
  • the retransmission process in this embodiment may be to directly extract the buffered processed service message for retransmission, or perform retransmission according to a preset condition.
  • the processing of the service message in this embodiment may include parsing the received service message, and performing internal process processing, such as billing, statistics, and the like on the parsed message.
  • the processed service message is formatted and sent to the corresponding service gateway, and the format of the format conversion is mainly based on the type of the service gateway and the service message. For example, when the short message is received, after the short message is parsed and the internal process is processed, the processed short message is format converted, and the message can be converted into a standard SMPP/SMGP protocol message, and finally sent to the short message gateway. .
  • the service message sending method of the embodiment may further include a determining process before the service message is cached, and the service message that does not meet the cache condition is not cached, and only the service message that meets the cache condition is cached, thereby reducing network traffic. , save network resources. Therefore, as a preferred embodiment, before buffering a processed service message, it may be determined whether the service message meets a cache condition, and if so, a step of buffering a processed service message, otherwise, The processed service message is not cached, and the processed service message is directly formatted and sent to the corresponding service gateway.
  • the cache condition may be set according to actual requirements.
  • the cache condition may include at least one of the following: The importance of the service message is higher than a preset level, and the type of the service message belongs to a preset type that needs to be cached.
  • the process of resending the cached service message in the method for sending a service message in this embodiment may include: Step 1: Determine whether the cached service message satisfies a preset retransmission condition, and if Go to the second step, if no, go to the fourth step; the second step: extract the cached processed service message, perform format conversion on the processed service message, and then resend the service message to the service gateway; The third step: judging whether the current re-sent of the processed service message is successful, if successful, the fourth step, if it fails, the first step; the fourth step: deleting the cached processed service message .
  • the sending success status report may be generated and reported; and when the preset retransmission condition is not met, the cached service message is deleted. After that, a report of the failure status can be generated and reported.
  • the method in this embodiment may resend the cached service message after the service message fails to be sent. If the resend is successful, the cached service message is deleted. If the message is unsuccessful, the process may be processed according to actual requirements. For example, the cache may be resent again. The service message, or the cached service message is no longer sent and processed by other preset processing means.
  • the resending the cached service message in this embodiment may be to resend the cached service message to the service gateway when the time interval arrives; or may be sent immediately after the cache is completed. Resending a failed service message can greatly improve the success rate of message transmission and reduce the traffic on the network.
  • the method includes the following steps: Step 301: Receive a service message, and process the service message.
  • Step 302 Cache a processed service message
  • Step 303 Convert the processed service message format to the corresponding service gateway
  • Step 304 When the processed service message fails to be sent, determine the cached processed message Whether the service message satisfies the preset retransmission condition, if yes, step 305 is performed, and if no, step 307 is performed; step 305: extracting the cached processed service message, converting the format and resending the service message to the service
  • Step 306 Determine whether the current re-sent of the processed service message is successful. If yes, return to step 304. If successful, perform step 308: Step 307: Delete the cached service message, and generate a transmission failure status.
  • Step 308 deleting the cached service message, generating and transmitting Status report and reported, the end of the process.
  • the following describes a preferred implementation manner of determining whether the processed service message of the cache meets the preset retransmission condition. As shown in FIG. 4, the method includes the following steps: Step 401: Determine whether retransmission is required according to the reason why the service fails to be sent.
  • the processed service message if yes, executing step 402, if not, executing step 404; Step 402: determining whether the current number of retransmissions is less than a preset number of times, if yes, executing step 403, if not, performing steps 404; Step 403: Determine that a preset condition that meets retransmission is satisfied; Step 404: Determine that the preset condition for retransmission is not satisfied.
  • the preset retransmission condition may be set according to the needs of the user, for example, the reason for the failure of the service transmission and the number of transmissions.
  • the step of buffering a processed service message includes: buffering a processed service message into a session.
  • a part of the processed service message may be cached in another storage medium.
  • the service message sending method in this embodiment is applicable to the short message and the MMS service cache message and the sending, and may also be applicable to other service cache messages and sending.
  • Embodiment 2 The service message sending method introduced in the foregoing Embodiment 1 can be applied to an Integrated Service Access Gateway (ISAG).
  • This embodiment describes a specific process of using the service sending method by the integrated service access gateway, as shown in FIG. Introduced a business system consisting of SP, ISAG, SMS gateway, and MMS gateway.
  • the integrated service access gateway of this embodiment includes: a northbound module, a service processing module, and a southbound adaptation module. As shown in FIG.
  • Step 601 The northbound module receives the short message sent by the SP and parses it; the northbound module: provides standard telecommunications Capability (parlayX) interface, SP can send SMS and MMS content to the northbound module in parlayX's webservice standard message format. The message is parsed by the northbound module.
  • Step 602 The service processing module performs internal process processing on the parsed message.
  • the service processing module the northbound module sends the parsed short message to the service processing module, and the service processing module processes the internal process. Including billing, statistics, etc.
  • Step 603 The southward adaptation module buffers an internal short message to the session, and then converts the internal short message into a standard protocol and sends the message to the short message gateway.
  • Southbound Adaptation Module The Southbound Adaptation Module provides adaptation methods for different services such as SMS and MMS, and interfaces with service gateways such as SMS gateways and MMS gateways.
  • the ISAG internal message is converted into a standard SMPP/SMGP protocol, MM7 protocol or other protocol, and sent to another service gateway such as a short message gateway or a multimedia message gateway;
  • Step 604 The southbound adaptation module determines whether the short message is successfully sent, if successful, If yes, go to step 605;
  • Step 605 Receive an error code that fails to send a service message, determine whether it needs to resend the SMS message according to the error code, and if yes, go to step 606; if no, go to step 609.
  • Step 606 Determine whether the current total number of retransmissions is greater than a preset number of times, and if yes, go to step 609, if no, go to step 607;
  • Step 607 After the timer record re-occurrence time interval arrives, southbound adaptation The module extracts the buffered short message from the session, and retransmits the message to the short message gateway.
  • Step 610 The southward adaptation module deletes the message from the session, and the southward adaptation module parses and converts the response message returned by the short message gateway. Then sent to the business processing module.
  • the service processing module is stored in the memory, waits for the status report message, and the message delivery process ends.
  • the integrated service access gateway may pre-cache the message to be sent before sending the message, and may re-send the message by using the cached message when the message fails to be sent. Rate, reduce traffic on the network.
  • the ISAG of this embodiment is applicable to SMS and MMS service cache messages and transmissions, and can also be applied to other services to cache messages and send.
  • Embodiment 3 As shown in FIG.
  • the embodiment provides a service message sending apparatus, including: a cache processing module, a service retransmission processing module, and a service sending module, where: the cache processing module is configured to cache a copy Processed business message; The service sending module is configured to perform format conversion on the processed service message and then send the message to the corresponding service gateway; the service retransmission processing module is configured to cache the service message when the processed service message fails to be sent. The processed service message is retransmitted.
  • the service message sending apparatus of the embodiment may cache a service message before the service message is sent, and may perform retransmission processing on the cached service message when the service message fails to be sent; thereby preventing the service message from being sent due to the failure of the service message. Loss can increase the success rate of business message transmission.
  • the retransmission process in this embodiment may be to directly extract the buffered processed service message for retransmission, or perform retransmission according to a preset condition.
  • the service message may be a service message received from another network element, for example, an SP, or may be a service message generated by the network element, which is not limited by the disclosure.
  • the embodiment when the device receives the service message from other network elements, the embodiment further provides a service message sending device, including: a service processing module, a cache processing module, a service retransmission processing module, and a service.
  • the service processing module is configured to receive a service message, and process the service message;
  • the cache processing module is configured to cache a processed service message;
  • the processed service message is formatted and sent to the corresponding service gateway.
  • the service retransmission processing module is configured to resend the cached processed service message when the processed service message fails to be sent. deal with. As shown in FIG.
  • the service retransmission processing module in the service message sending apparatus of this embodiment includes: a service judging module; the service judging module is configured to determine whether the cached service message satisfies a preset retransmission condition, If yes, the buffer processing module is configured to extract the buffered processed service message and send the message to the service sending module for retransmission, and determine whether the current resending the processed service message is successful. If successful, notify The cache processing module deletes the cached processed service message.
  • the service determining module is further configured to re-send the cached processed service message again when it is determined that the current re-sent of the processed service message fails.
  • the service determining module is further configured to notify the cache processing module to delete the cached processing when it is determined that the cached service message does not satisfy the preset retransmission condition.
  • the service determining module in the embodiment is configured to determine, according to the reason for the failure of the service transmission, whether the processed service message needs to be retransmitted, and if not, determine that the preset retransmission condition is not met, and if yes, further It is determined whether the current number of retransmissions is less than a preset number of times. If it is less than, it is determined that the preset retransmission condition is satisfied, and if it is greater, it is determined that the preset retransmission condition is not satisfied.
  • the service message sending apparatus of this embodiment may further include: a cache determining module, configured to determine whether the service message meets a cache condition, and if so, invoke the cache processing module and the service The sending module, otherwise, invokes the service sending module.
  • the cache condition may be set according to an actual situation, for example, may include at least one of the following: the importance of the service message is higher than a preset level, and the type of the service message belongs to a preset type that needs to be cached.
  • the cache processing module is configured to cache a processed service message into the session.
  • the cache processing module may further cache a processed service message to another storage medium, or the cache processing module itself may store the medium.
  • the service message sending apparatus in this embodiment may be an integrated service access gateway (ISAG), and the specific structure of the integrated service access gateway (ISAG) refers to FIG. 5, and the process of sending a message by the integrated service access gateway refers to FIG. 6, in the ISAG.
  • the south-south adapter module implements all the functions of the cache processing module, the service judging module, and the service sending module.
  • the service message sending apparatus of this embodiment caches the sent message in advance, and when the message fails to be sent, the cached message is used for retransmission. When successful, deleting the cached message greatly improves the message sending success rate. Reduce traffic on your network.
  • the service message sending apparatus of this embodiment is applicable to the short message and the MMS service cache message and the sending, and may also be applicable to other service cache messages and sending.
  • the above is a further detailed description of the present invention in connection with the specific embodiments, and the specific implementation of the invention is not limited to the description. It will be apparent to those skilled in the art that the present invention may be made without departing from the spirit and scope of the invention.

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Abstract

本发明公开了一种业务消息发送方法及装置。本发明的业务消息发送方法包括:缓存一份所述处理后的业务消息;对所述处理后的业务消息进行格式转换后发送给对应的业务网关;当所述处理后的业务消息发送失败时对缓存的所述处理后的业务消息进行重发处理。本发明的方法在发送业务消息之前缓存了一份业务消息,当业务消息发送失败时可以利用缓存的业务消息进程重发处理,可以提高业务消息发送成功率,减少业务损失。

Description

一种业务消息发送方法及装置
技术领域 本发明涉及移动通信领域, 尤其涉及一种业务消息发送方法及装置。 背景技术 ISAG (Integrated Service Access Gateway, 综合业务接入网关)是移动业务网络中 实现业务统一接入和服务质量监控的功能实体。借助于 ISAG,运营商能够开放电信网 络资源, 并控制对网络资源的使用, 为 CP/SP屏蔽底层网络技术复杂性, 提供统一业 务开发环境, 降低业务开发门槛, 为用户提供融合业务, 丰富业务形式, 有利于开发 企业应用, 拓展企业用户市场。 SP (Service Provider,服务提供商)通过 ISAG可以将提供的内容或服务通过短信或 者彩信方式下发到短信网关或者彩信网关, 并由短信网关或者彩信网关最终发送到用 户手机中。 但是在网络拥塞或者短信网关 /彩信网关异常情况下, ISAG向短信网关 /彩 信网关发消息会失败, 并向 SP返回发送失败的状态报告。 当失败的消息比较多时, 会对 SP造成业务损失, 同时若 SP重新发送, 也会加大网络中的数据量和系统处理的 消息数。 当 SP下发消息量较大时 (特别是在忙时, 同时下发大量信息), ISAG在转发消 息到 SMGW ( Short Message Gateway, 短消息网关)、 MMSC (Multimedia Message Service Center, 多媒体消息业务中心) 等业务网关时, 由于这些业务网关的接口过载 等原因, 导致 ISAG下发信息失败。 由于 ISAG在自身流控机制上, 无法缓存由于过 载或者接口宕掉时的失败消息, 因此, 这些 SP请求会丢失。 发明内容 本发明提供一种业务消息发送方法及装置能够提高业务消息发送成功率, 以解决 以上问题至少之一。 为解决上述技术问题, 本发明提供一种业务消息发送方法, 包括: 缓存一份处理后的业务消息; 对所述处理后的业务消息进行格式转换后发送给对应的业务网关; 当所述处理后的业务消息发送失败时对缓存的所述处理后的业务消息进行重发处 理。 优选地, 对缓存的所述处理后的业务消息进行重发处理包括: 判断缓存的所述处理后的业务消息是否满足预设重发条件, 若是, 则提取缓存的 所述处理后的业务消息, 对所述处理后的业务消息进行格式转换后重新发送给所述业 务网关, 并判断当前重新发送所述处理后的业务消息是否成功, 若成功, 则删除缓存 的所述处理后的业务消息。 优选地, 对缓存的所述处理后的业务消息进行重发处理还包括: 若当前重新发送所述处理后的业务消息失败, 再次对缓存的所述处理后的业务消 息进行重发处理。 优选地, 对缓存的所述处理后的业务消息进行重发处理还包括: 当缓存的所述处理后的业务消息不满足预设重发条件时, 删除所述缓存的所述处 理后的业务消息。 优选地, 判断缓存的所述处理后的业务消息是否满足预设重发条件包括: 根据业务发送失败的原因判断是否需要重发所述处理后的业务消息, 若否, 则判 定不满足预设重发条件, 若是, 则进一步判断当前重发的次数是否小于预设次数, 若 小于, 则判定满足预设重发条件, 若大于, 则判定不满足预设重发条件。 优选地, 缓存一份所述处理后的业务消息包括: 缓存一份所述处理后的业务消息至会话中。 优选地, 在缓存一份所述处理后的业务消息之前, 该方法还包括: 接收业务消息, 并对所述业务消息进行处理。 优选地, 在缓存一份所述处理后的业务消息之前, 该方法还包括: 判断所述业务 消息是否符合缓存条件, 若是, 则进入缓存一份处理后的业务消息的步骤, 否则, 不 缓存所述处理后的业务消息, 直接对所述处理后的业务消息进行格式转换后发送给对 应的业务网关。 优选地, 所述缓存条件包括以下至少之一: 所述业务消息的重要程度高于预设级 另 I」、 所述业务消息的类型属于预设的需要缓存的类型。 同样为了解决上述的技术问题, 本发明还提供了一种业务消息发送装置, 包括: 缓存处理模块、 业务重发处理模块和业务发送模块, 其中: 所述缓存处理模块设置为缓存一份处理后的业务消息; 所述业务发送模块设置为对所述处理后的业务消息进行格式转换后发送给对应的 业务网关; 所述业务重发处理模块设置为当所述处理后的业务消息发送失败时对缓存的所述 处理后的业务消息进行重发处理。 优选地, 所述业务重发处理模块包括: 业务判断模块; 所述业务判断模块设置为判断缓存的所述处理后的业务消息是否满足预设重发条 件, 若是, 则通知所述缓存处理模块提取缓存的所述处理后的业务消息传输给所述业 务发送模块进行重新发送, 并且判断当前重新发送所述处理后的业务消息是否成功, 若成功, 则通知所述缓存处理模块删除缓存的所述处理后的业务消息。 优选地, 所述业务判断模块还设置为当判断当前重新发送所述处理后的业务消息 失败时, 再次对缓存的所述处理后的业务消息进行重发处理。 优选地, 所述业务判断模块还设置为当判断缓存的所述处理后的业务消息不满足 预设重发条件时, 则通知所述缓存处理模块删除所述缓存的所述处理后的业务消息。 优选地, 所述业务判断模块设置为根据业务发送失败的原因判断是否需要重发所 述处理后的业务消息, 若否, 则判定不满足预设重发条件, 若是, 则进一步判断当前 重发的次数是否小于预设次数, 若小于, 则判定满足预设重发条件, 若大于, 则判定 不满足预设重发条件。 优选地, 所述缓存处理模块设置为缓存一份所述处理后的业务消息至会话中。 优选地, 该装置还包括: 业务处理模块, 设置为接收业务消息, 并对所述业务消 息进行处理。 优选地, 该装置还包括: 缓存判断模块, 设置为判断所述业务消息是否符合缓存 条件, 若是, 则调用所述缓存处理模块和所述业务发送模块, 否则, 调用所述业务发 送模块。 优选地, 所述缓存条件包括以下至少之一: 所述业务消息的重要程度高于预设级 另 I」、 所述业务消息的类型属于预设的需要缓存的类型。 本发明的有益效果是: 本发明提供一种业务消息发送方法及装置能够提供业务消息发送成功率, 其中业 务消息发送方法包括: 缓存一份处理后的业务消息; 对所述处理后的业务消息进行格 式转换后发送给对应的业务网关; 当所述处理后的业务消息发送失败时对缓存的所述 处理后的业务消息进行重发处理。 本发明的方法在发送业务消息之前缓存了一份业务 消息, 当业务消息发送失败时可以利用缓存的业务消息进程重发处理, 与现有技术相 比本发明业务消息发送方法可以提高业务消息发送成功率, 减少业务损失。 附图说明 图 1为本发明实施例一提供的 种业务消息发送方法的流程示意图; 图 2为本发明实施例一提供的 种业务消息发送方法的第一优选流程示意图; 图 3为本发明实施例一提供的 种业务消息发送方法的第二优选流程示意图; 图 4为本发明实施例一提供的 -种判断是否满足预设重发条件的方式的流程示意 图; 图 5为本发明实施例二提供的 种业务系统的结构示意图; 图 6为本发明实施例二提供的 种综合业务接入网关发送消息的流程示意图; 图 7为本发明实施例三提供的 种业务消息发送装置的结构示意图; 图 8为本发明实施例三提供的 种业务消息发送装置的第一优选结构示意图; 图 9为本发明实施例三提供的 种业务消息发送装置的第二优选结构示意图; 图 10为本发明实施例三提供的一种业务消息发送装置的第三优选结构示意图。 具体实肺式 下面通过具体实施方式结合附图对本发明作进一步详细说明。 实施例一: 如图 1所示, 本实施例提供了一种业务消息发送方法, 包括以下步骤: 步骤 101 : 缓存一份处理后的业务消息; 步骤 102: 对所述处理后的业务消息进行格式转换后发送给对应的业务网关; 步骤 103: 当所述处理后的业务消息发送失败时对缓存的所述处理后的业务消息 进行重发处理。 本实施例的业务消息发送方法可以在业务消息发送之前缓存一份业务消息, 当业 务消息发送失败时可以对所述缓存的业务消息进行重发处理; 从而防止业务消息由于 发送失败而导致业务消息损失, 可以提高业务消息发送的成功率。 本实施例的重发处 理可以是直接提取缓存的处理后的业务消息进行重发, 也可以根据预设的条件进行重 发。 需要说明的是, 该业务消息可以是从其他网元, 例如, SP接收的业务消息, 也可 以是本网元产生的业务消息, 本发明对此不做限定。 如图 2所示, 当本网元从其他网元接收业务消息的情况下, 本实施例还提供了一 种优选的业务消息发送方法, 包括以下步骤: 步骤 201 : 接收业务消息, 并对所述业务消息进行处理; 步骤 202: 缓存一份处理后的业务消息; 步骤 203: 对所述处理后的业务消息进行格式转换后发送给对应的业务网关; 步骤 204: 当所述处理后的业务消息发送失败时对缓存的所述处理后的业务消息 进行重发处理。 本实施例的业务消息发送方法可以在业务消息发送之前缓存一份业务消息, 当业 务消息发送失败时可以对所述缓存的业务消息进行重发处理; 从而防止业务消息由于 发送失败而导致业务消息损失, 可以提高业务消息发送的成功率。 本实施例的重发处 理可以是直接提取缓存的处理后的业务消息进行重发, 也可以根据预设的条件进行重 发。 本实施例中的对业务消息的处理可以包括对接收到的业务消息进行解析, 和对解 析后的消息进行内部流程处理, 例如计费、 统计等。 本实施例中对所述处理后的业务消息进行格式转换后发送给对应的业务网关, 其 格式转换的类型主要是依据业务网关和业务消息的类型。例如当接收到是短信消息时, 在对短信消息进行解析和内部流程处理后, 对处理后的短信消息进行格式转换, 可以 将其转换为标准的 SMPP/SMGP协议的消息, 最后发送给短信网关。 本实施例的业务消息发送方法在对业务消息进行缓存前还可以包括一个判断过 程, 对于不符合缓存条件的业务消息不进行缓存, 只对符合缓存条件的业务消息进行 缓存, 这样可以减少网络流量, 节省网络资源。 因此, 作为一个优选的实施方式, 在 缓存一份所述处理后的业务消息之前, 可以判断所述业务消息是否符合缓存条件, 若 是, 则进入缓存一份处理后的业务消息的步骤, 否则, 不缓存所述处理后的业务消息, 直接对所述处理后的业务消息进行格式转换后发送给对应的业务网关。 本实施例中缓 存条件可以根据实际需求进行设定, 例如可以根据业务消息的重要性来判断是否需要 缓存, 或者可以根据业务消息的类型判断是否需要缓存, 因此, 缓存条件可以包括以 下至少之一: 所述业务消息的重要程度高于预设级别、 所述业务消息的类型属于预设 的需要缓存的类型。 本实施例业务消息发送方法中对缓存的所述处理后的业务消息进行重发处理的过 程可以包括: 第一步: 判断缓存的所述处理后的业务消息是否满足预设重发条件, 若是, 转第 二步, 若否, 则转第四步; 第二步: 提取缓存的所述处理后的业务消息, 对所述处理后的业务消息进行格式 转换后重新发送给所述业务网关; 第三步: 判断当前重新发送所述处理后的业务消息是否成功, 若成功, 转第四步, 若失败, 转第一步; 第四步: 删除所述缓存的所述处理后的业务消息。 本实施例的业务消息发送方法中当重新发送成功时,在删除缓存的业务消息之后, 还可以生成发送成功状态报告并上报; 以及在不满足预设重发条件时, 在删除缓存的 业务消息之后, 还可以生成发送失败状态报告并上报。 本实施例方法可以在业务消息发送失败后重新发送缓存的业务消息, 若重新发送 成功, 则删除缓存的业务消息, 若不成功, 则可以根据实际需求进行处理, 例如可以 再次重新发送该缓存的业务消息, 或者不再发送该缓存的业务消息以及采用其他预设 的处理手段进行处理。 当然本实施例重新发送缓存的业务消息可以是在一定的时间间 隔到达时, 将缓存的业务消息重新发给业务网关; 也可以是缓存完成后立即发送。 重 新发送失败的业务消息能极大的提高消息发送成功率, 降低网络中的流量。 下面详细介绍本实施例的业务消息发送的一个优选实施方式的具体过程, 如图 3 所示, 具体包括以下步骤: 步骤 301 : 接收业务消息, 并对所述业务消息进行处理; 步骤 302: 缓存一份处理后的业务消息; 步骤 303: 将处理后的业务消息格式转换后发送给对应的业务网关; 步骤 304: 当所述处理后的业务消息发送失败时, 判断缓存的所述处理后的业务 消息是否满足预设重发条件, 若是, 则执行步骤 305, 若否, 则执行步骤 307 ; 步骤 305 : 提取缓存的所述处理后的业务消息, 将其格式转换后重新发送给所述 业务网关; 步骤 306: 判断当前重新发送所述处理后的业务消息是否成功, 若失败, 则返回 步骤 304, 若成功, 则执行步骤 308: 步骤 307: 删除所述缓存的业务消息, 生成发送失败状态报告并上报, 结束流程; 步骤 308: 删除所述缓存的业务消息, 生成发送成功状态报告并上报, 结束流程。 下面介绍一种判断缓存的所述处理后的业务消息是否满足预设重发条件的优选实 施方式, 如图 4所示, 包括以下步骤: 步骤 401 : 根据业务发送失败的原因判断是否需要重发所述处理后的业务消息, 若是, 执行步骤 402, 若否, 则执行步骤 404; 步骤 402:判断当前重发的次数是否小于预设次数,若是,则执行步骤 403,若否, 则执行步骤 404; 步骤 403: 判定满足再次重发的预设条件; 步骤 404: 判定不满足再次重发的预设条件。 本实施例中预设重发条件可以根据用户的需求进行设定, 例如可以为业务发送失 败的原因和发送次数。 在业务系统中, 由于 SP没有在短信 /彩信网关注册而导致发到 短信 /彩信网关的消息失败, 则在这种情况下, 作为一种优选的实施方式, 没有必要对 失败消息进行再次重发, 否则反而会增加网络流量; 而由于在网络拥塞或者短信网关 / 彩信网关异常情况下, 可以再次重发业务消息。 本实施例业务消息发送方法中,所述缓存一份所述处理后的业务消息的步骤包括: 缓存一份所述处理后的业务消息至 session (会话) 中。 本实施例的业务消息方法中还 可以缓存一份所述处理后的业务消息至其他存储介质中。 本实施例的业务消息发送方法适用于短信、 彩信业务缓存消息和发送, 也可以适 用于其他业务缓存消息和发送。 实施例二: 上述实施例一介绍的业务消息发送方法可以适用于综合业务接入网关 (ISAG) , 本实施例介绍了综合业务接入网关采用该业务发送方法具体的过程, 如图 5所示, 介 绍了一种业务系统, 由 SP、 ISAG以及短信网关、 彩信网关组成。 其中本实施例的综 合业务接入网关包括: 北向模块、 业务处理模块以及南向适配模块。 如图 6所示, 本实施例中 ISAG发送业务消息 (以短信消息为例) 的具体过程包 括: 步骤 601 : 北向模块接收 SP发送的短信消息并对其进行解析; 北向模块: 提供标准的电信能力 (parlayX) 接口, SP 可以将短信、 彩信内容以 parlayX的 webservice标准消息格式发送到北向模块。 由北向模块对消息进行解析。 步骤 602: 业务处理模块对解析后的消息进行内部流程处理; 业务处理模块: 北向模块把解析后的短信消息发送给业务处理模块, 由业务处理 模块进行内部流程的处理。 包括计费、 统计等。 步骤 603: 南向适配模块缓存一份内部的短信消息至 session中, 然后将内部的短 信消息转换为标准协议的消息发送给短信网关; 南向适配模块: 南向适配模块提供了短信、 彩信等不同业务的适配方法, 与短信 网关、彩信网关等业务网关对接。将 ISAG内部消息转换为标准的 SMPP/SMGP协议、 MM7协议或其他协议, 并发送给短信网关或者彩信网关等其他业务网关; 步骤 604: 南向适配模块判断短信消息是否发送成功, 若成功, 则执行步骤 610; 若失败, 则执行步骤 605; 步骤 605: 接收业务消息发送失败的错误码, 根据错误码判断是否需要重新发送 短信消息, 若是, 则执行步骤 606, 若否, 则执行步骤 609; 步骤 606: 判断当前总共重发的次数是否大于预设次数, 若是, 则执行步骤 609, 若否, 则执行步骤 607; 步骤 607: 当定时器记录重新发生时间间隔到达后, 南向适配模块从 session中提 取缓存的短信消息, 将其转换为标准协议的消息重新发送给短信网关; 步骤 608: 南向适配模块判断重新发送是否成功, 若失败, 则返回步骤 605, 若成 功, 则执行步骤 610; 步骤 609: 南向适配模块将消息从 session中删除, 生成失败的状态报告, 发给业 务处理模块, 并最终发送给 SP, 流程结束; 步骤 610: 南向适配模块将消息从 session中删除, 南向适配模块将短信网关返回 的响应消息经过解析并转换格式后发送给业务处理模块。 业务处理模块存入内存中, 等待状态报告消息, 消息下发流程结束。 采用本发明实施例提供的业务消息发送方法, 综合业务接入网关可以在发送消息 之前预先缓存待发送的消息, 当该消息发送失败时可以利用缓存的消息进行重新发送 极大的提高消息发送成功率, 降低网络中的流量。 本实施例的 ISAG适用于短信、 彩信业务缓存消息和发送, 也可以适用于其他业 务缓存消息和发送。 实施例三: 如图 7所示, 本实施例提供了一种业务消息发送装置, 包括: 缓存处理模块、 业 务重发处理模块和业务发送模块, 其中: 所述缓存处理模块设置为缓存一份处理后的业务消息; 所述业务发送模块设置为对所述处理后的业务消息进行格式转换后发送给对应的 业务网关; 所述业务重发处理模块设置为当所述处理后的业务消息发送失败时对缓存的所述 处理后的业务消息进行重发处理。 本实施例的业务消息发送装置可以在业务消息发送之前缓存一份业务消息, 当业 务消息发送失败时可以对所述缓存的业务消息进行重发处理; 从而防止业务消息由于 发送失败而导致业务消息损失, 可以提高业务消息发送的成功率。 本实施例的重发处 理可以是直接提取缓存的处理后的业务消息进行重发, 也可以根据预设的条件进行重 发。 需要说明的是, 该业务消息可以是从其他网元, 例如, SP接收的业务消息, 也可 以是本网元产生的业务消息, 本发明对此不做限定。 如图 8所示, 当本装置从其他网元接收业务消息的情况下, 本实施例还提供了一 种业务消息发送装置, 包括: 业务处理模块、 缓存处理模块、 业务重发处理模块和业 务发送模块, 其中: 所述业务处理模块设置为接收业务消息, 并对所述业务消息进行处理; 所述缓存处理模块设置为缓存一份处理后的业务消息; 所述业务发送模块设置为对所述处理后的业务消息进行格式转换后发送给对应的 业务网关; 所述业务重发处理模块设置为当所述处理后的业务消息发送失败时对缓存的所述 处理后的业务消息进行重发处理。 如图 9所示, 本实施例业务消息发送装置中业务重发处理模块包括: 业务判断模 块; 所述业务判断模块设置为判断缓存的所述处理后的业务消息是否满足预设重发条 件, 若是, 则通知所述缓存处理模块提取缓存的所述处理后的业务消息传输给所述业 务发送模块进行重新发送, 并且判断当前重新发送所述处理后的业务消息是否成功, 若成功, 则通知所述缓存处理模块删除缓存的所述处理后的业务消息。 在另一应用场景中, 所述业务判断模块还设置为当判断当前重新发送所述处理后 的业务消息失败时, 再次对缓存的所述处理后的业务消息进行重发处理。 在另一应用场景中, 所述业务判断模块还设置为当判断缓存的所述处理后的业务 消息不满足预设重发条件时, 则通知所述缓存处理模块删除所述缓存的所述处理后的 业务消息。 优选地, 本实施例中所述业务判断模块设置为根据业务发送失败的原因判断是否 需要重发所述处理后的业务消息, 若否, 则判定不满足预设重发条件, 若是, 则进一 步判断当前重发的次数是否小于预设次数, 若小于, 则判定满足预设重发条件, 若大 于, 则判定不满足预设重发条件。 优选地,如图 10所示,本实施例业务消息发送装置中还可以包括:缓存判断模块, 设置为判断所述业务消息是否符合缓存条件, 若是, 则调用所述缓存处理模块和所述 业务发送模块, 否则, 调用所述业务发送模块。 其中, 所述缓存条件可以根据实际情 况进行设置, 例如, 可以包括以下至少之一: 所述业务消息的重要程度高于预设级别、 所述业务消息的类型属于预设的需要缓存的类型。 优选地, 本实施例中缓存处理模块设置为缓存一份所述处理后的业务消息至会话 中。 本实施例中缓存处理模块还可以缓存一份所述处理后的业务消息至其他存储介质 中, 或者本实施例缓存处理模块本身就可以存储介质。 本实施例的业务消息发送装置可以为综合业务接入网关 (ISAG) , 该综合业务接 入网关 (ISAG) 的具体结构参考图 5, 综合业务接入网关发送消息的过程参考图 6, 在 ISAG中南向适配模块实现上述缓存处理模块、 业务判断模块和业务发送模块的所 有功能。 本实施例的业务消息发送装置通过事先对发送的消息进行缓存, 当该消息发送失 败时, 利用缓存的消息进行重新发送, 当成功时, 则删除缓存的消息极大的提高消息 发送成功率, 降低网络中的流量。 本实施例的业务消息发送装置适用于短信、 彩信业务缓存消息和发送, 也可以适 用于其他业务缓存消息和发送。 以上内容是结合具体的实施方式对本发明所作的进一步详细说明, 不能认定本发 明的具体实施只局限于这些说明。 对于本发明所属技术领域的普通技术人员来说, 在 不脱离本发明构思的前提下, 还可以做出若干简单推演或替换, 都应当视为属于本发 明的保护范围。

Claims

权 利 要 求 书
1. 一种业务消息发送方法, 包括:
缓存一份处理后的业务消息;
对所述处理后的业务消息进行格式转换后发送给对应的业务网关; 当所述处理后的业务消息发送失败时对缓存的所述处理后的业务消息进行 重发处理。
2. 如权利要求 1所述的业务消息发送方法, 其中, 对缓存的所述处理后的业务消 息进行重发处理包括:
判断缓存的所述处理后的业务消息是否满足预设重发条件, 若是, 则提取 缓存的所述处理后的业务消息, 对所述处理后的业务消息进行格式转换后重新 发送给所述业务网关, 并判断当前重新发送所述处理后的业务消息是否成功, 若成功, 则删除缓存的所述处理后的业务消息。
3. 如权利要求 2所述的业务消息发送方法, 其中, 对缓存的所述处理后的业务消 息进行重发处理还包括:
若当前重新发送所述处理后的业务消息失败, 再次对缓存的所述处理后的 业务消息进行重发处理。
4. 如权利要求 2所述的业务消息发送方法, 其中, 对缓存的所述处理后的业务消 息进行重发处理还包括:
当缓存的所述处理后的业务消息不满足预设重发条件时, 删除所述缓存的 所述处理后的业务消息。
5. 如权利要求 2-4中任一项所述的业务消息发送方法, 其中, 判断缓存的所述处 理后的业务消息是否满足预设重发条件包括:
根据业务发送失败的原因判断是否需要重发所述处理后的业务消息,若否, 则判定不满足预设重发条件, 若是, 则进一步判断当前重发的次数是否小于预 设次数, 若小于, 则判定满足预设重发条件, 若大于, 则判定不满足预设重发 条件。
6. 如权利要求 1所述的业务消息发送方法, 其中, 缓存一份所述处理后的业务消 息的包括:
缓存一份所述处理后的业务消息至会话中。
7. 如权利要求 1-6中任一项所述的业务消息发送方法, 其中, 在缓存一份所述处 理后的业务消息之前, 还包括:
接收业务消息, 并对所述业务消息进行处理。
8. 如权利要求 1-6中任一项所述的业务消息发送方法, 其中, 在缓存一份所述处 理后的业务消息之前, 还包括:
判断所述业务消息是否符合缓存条件, 若是, 则进入缓存一份处理后的业 务消息的步骤, 否则, 不缓存所述处理后的业务消息, 直接对所述处理后的业 务消息进行格式转换后发送给对应的业务网关。
9. 如权利要求 8所述的业务消息发送方法, 其中, 所述缓存条件包括以下至少之 一: 所述业务消息的重要程度高于预设级别、 所述业务消息的类型属于预设的 需要缓存的类型。
10. 一种业务消息发送装置, 包括: 缓存处理模块、 业务重发处理模块和业务发送 模块, 其中:
所述缓存处理模块设置为缓存一份处理后的业务消息;
所述业务发送模块设置为对所述处理后的业务消息进行格式转换后发送给 对应的业务网关;
所述业务重发处理模块设置为当所述处理后的业务消息发送失败时对缓存 的所述处理后的业务消息进行重发处理。
11. 如权利要求 10所述的业务消息发送装置, 其中, 所述业务重发处理模块包括: 业务判断模块, 其中;
所述业务判断模块设置为判断缓存的所述处理后的业务消息是否满足预设 重发条件, 若是, 则通知所述缓存处理模块提取缓存的所述处理后的业务消息 传输给所述业务发送模块进行重新发送, 并且判断当前重新发送所述处理后的 业务消息是否成功, 若成功, 则通知所述缓存处理模块删除缓存的所述处理后 的业务消息。
12. 如权利要求 11所述的业务消息发送装置, 其中,所述业务判断模块还设置为当 判断当前重新发送所述处理后的业务消息失败时, 再次对缓存的所述处理后的 业务消息进行重发处理。
13. 如权利要求 11所述的业务消息发送装置, 其中,所述业务判断模块还设置为当 判断缓存的所述处理后的业务消息不满足预设重发条件时, 则通知所述缓存处 理模块删除所述缓存的所述处理后的业务消息。
14. 如权利要求 11-13中任一项所述的业务消息发送装置, 其中, 所述业务判断模 块设置为根据业务发送失败的原因判断是否需要重发所述处理后的业务消息, 若否, 则判定不满足预设重发条件, 若是, 则进一步判断当前重发的次数是否 小于预设次数, 若小于, 则判定满足预设重发条件, 若大于, 则判定不满足预 设重发条件。
15. 如权利要求 10所述的业务消息发送装置,其中,所述缓存处理模块设置为缓存 一份所述处理后的业务消息至会话中。
16. 如权利要求 10-15中任一项所述的业务消息发送装置, 还包括: 业务处理模块, 设置为接收业务消息, 并对所述业务消息进行处理。
17. 如权利要求 10-15中任一项所述的业务消息发送装置, 还包括:
缓存判断模块, 设置为判断所述业务消息是否符合缓存条件, 若是, 则调 用所述缓存处理模块和所述业务发送模块, 否则, 调用所述业务发送模块。
18. 如权利要求 17所述的业务消息发送装置,其中,所述缓存条件包括以下至少之 一: 所述业务消息的重要程度高于预设级别、 所述业务消息的类型属于预设的 需要缓存的类型。
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