WO2023279896A1 - 消息处理方法、电子设备及存储介质 - Google Patents

消息处理方法、电子设备及存储介质 Download PDF

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WO2023279896A1
WO2023279896A1 PCT/CN2022/096412 CN2022096412W WO2023279896A1 WO 2023279896 A1 WO2023279896 A1 WO 2023279896A1 CN 2022096412 W CN2022096412 W CN 2022096412W WO 2023279896 A1 WO2023279896 A1 WO 2023279896A1
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signaling
optimization module
short message
simplified
message
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PCT/CN2022/096412
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English (en)
French (fr)
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彭焦阳
耿长剑
张朋飞
王巍
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中兴通讯股份有限公司
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Priority to EP22836651.4A priority Critical patent/EP4366334A1/en
Publication of WO2023279896A1 publication Critical patent/WO2023279896A1/zh

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    • 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]
    • 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

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  • the embodiments of the present application relate to the field of communication technologies, and in particular, to a message processing method, electronic equipment, and a storage medium.
  • SMSF Short Message Service Function
  • SMSF Short Message Service Function
  • each network element in the 5G network uses a service-oriented interface for message transmission, many signaling interfaces are involved in the message interaction process, which greatly increases the error probability of message interaction and reduces the efficiency of message transmission.
  • An embodiment of the present application provides a message processing method, including: receiving a short message; obtaining a simplified signaling process corresponding to the short message, the simplified signaling process is generated after simplifying the standard signaling process; according to the simplified signaling process, Perform signaling operations on short messages.
  • Embodiments of the present application also provide an electronic device, including:
  • the memory stores instructions executable by the at least one processor, and the instructions are executed by the at least one processor, so that the at least one processor can execute the message processing method as described above.
  • the embodiment of the present application also provides a computer-readable storage medium storing a computer program, and implementing the above-mentioned message processing method when the computer program is executed by a processor.
  • FIG. 1 is a specific flow chart 1 of a message processing method provided according to an embodiment of the present application
  • FIG. 2 is a specific flow chart II of a message processing method provided according to an embodiment of the present application.
  • FIG. 3 is a specific flowchart three of the message processing method provided according to the embodiment of the present application.
  • Fig. 4 is a schematic structural diagram of an electronic device provided according to an embodiment of the present application.
  • the purpose of the embodiments of the present application is to provide a message processing method, an electronic device, and a storage medium, which can effectively reduce the error probability of message interaction in a 5G network, and at the same time improve the efficiency of message transmission.
  • the simplified signaling process is generated after simplifying the standard signaling process; then according to the simplified signaling process , to perform a signaling operation on the short message. Since the signaling process is simplified, to a certain extent, subsequent signaling operations and message volumes for short messages are reduced, thereby effectively reducing the error probability of message interaction and improving the efficiency of message delivery.
  • An embodiment of the present application relates to a message processing method, which can be applied to an SMSF in a 5G network.
  • the message processing method provided by this embodiment includes the following steps.
  • Step 101 Receive a short message.
  • SMSF is a 5G SMS service network element in the 5G core network that follows the 3GPP 29.540 standard protocol.
  • the interface interacts with Unified Data Management (UDM), and interface protocols such as MAP (Mobile Application Part) are connected with Short Message Service Center (Short Message Service Center, SMSC)/IPSMGW to provide 5G terminal users with registration, deregistration, sending and receiving NAS SMS service.
  • UDM Unified Data Management
  • MAP Mobile Application Part
  • SMSC Short Message Service Center
  • IPSMGW Short Message Service Center
  • the short message in this step may be a short message sent to the SMSF by any 5G network element interacting with the SMSF above, and may include any message in a registration message, a logout message, a call-up message and a call-out message.
  • Step 102 Obtain a simplified signaling process corresponding to the short message, where the simplified signaling process is generated by simplifying the standard signaling process.
  • SMSF after SMSF receives the short message sent by the external 5G network element, it does not perform subsequent signaling operations on the short message using the signaling standard process as usual, but obtains the simplified signaling process corresponding to the short message,
  • the signaling simplified procedure is generated after simplifying the signaling standard procedure.
  • the signaling process is mainly used to synchronize the status of related devices, and when some 5G network elements send repeated short messages of repeated types or users, the corresponding follow-up signaling process is very difficult. overlap.
  • the states to be synchronized in these overlapping signaling processes already exist in the related devices, so there is no need to perform these signaling processes to repeatedly synchronize the already synchronized states.
  • this embodiment proposes the idea of simplifying the signaling process, that is, by simplifying the standard signaling process, a simplified signaling process for each short message, that is, a simplified signaling process, is obtained.
  • the SMSF After receiving the short message sent by the external 5G network element, the SMSF obtains the simplified signaling process corresponding to the current short message, and the simplified signaling process can be generated by a preset signaling optimization module.
  • Step 103 Perform a signaling operation on the short message according to the simplified signaling process.
  • the short message is executed with a simplified signaling operation compared with the signaling standard process, so as to speed up the delivery of the short message to the front end.
  • the simplified signaling process is generated after simplifying the standard signaling process; then according to the simplified signaling process , to perform a signaling operation on the short message. Since the signaling process is simplified, to a certain extent, subsequent signaling operations and message volumes for short messages are reduced, thereby effectively reducing the error probability of message interaction and improving the efficiency of message delivery.
  • the signaling optimization module obtains the simplified process of signaling corresponding to the short message.
  • the above step 102 may specifically include the following sub-steps.
  • Sub-step 1021 Send a signaling request for acquiring a simplified signaling process to the signaling optimization module.
  • the signaling optimization module can be built in the SMSF, or can be set separately from the SMSF.
  • the signaling optimization module can generate and provide short message signaling simplification processes based on the information request sent by the SMSF.
  • the process of generating a simplified signaling process by the signaling optimization module may include the following steps.
  • Step 1 Query whether there is historical signaling cache data of the same type of historical short messages sent by the sender of the short message in the local cache.
  • the signaling optimization module can identify the sender of the short message according to the International Mobile Subscriber Identification Number (IMSI) carried in the signaling request. And use the IMSI as the key to query whether there is historical signaling cache data of the same type of historical short message as the current short message in the local first-level cache. In other words, it is to inquire whether the sending end has sent a historical short message of the same type as the current short message, and has saved the historical signaling cache data corresponding to the historical short message, that is, the synchronized related state.
  • IMSI International Mobile Subscriber Identification Number
  • Step 2 If the historical signaling cache data is found, the signaling standard process is simplified based on the historical signaling cache data to obtain a simplified signaling process.
  • the signaling standard process can be simplified based on the historical signaling cache data, and the signaling part that has generated the historical signaling cache data can be deleted to obtain the simplified signaling process, namely Signaling simplifies the process.
  • Sub-step 1022 Receive the signaling response fed back by the signaling optimization module.
  • the signaling optimization module provides a simplified signaling process of the short message by sending a signaling response to the SMSF.
  • step 103 is executed to perform subsequent signaling operations on the short message according to the simplified signaling procedure.
  • Step 104 When the simplified signaling process carried in the signaling response is not available, or does not carry the simplified signaling process, or the signaling response is not received within the preset time (the latter two cases are not shown in the figure), then execute Step 104, perform signaling operations on the short message according to the signaling standard procedure corresponding to the short message.
  • the SMSF after receiving the signaling response carrying the simplified signaling procedure, the SMSF will verify the availability of the simplified signaling procedure. If the verification is available, the signaling process is simplified according to the signaling, and subsequent signaling operations are performed on the short message to simplify the actual signaling process. If verification is not available, standard signaling operations are performed on the short message according to the original signaling standard procedure.
  • the simplified signaling process is not carried in the received signaling response, or the signaling response is not received within the preset time, it is considered that the operation of obtaining the simplified signaling process has failed, and the original signaling standard process , perform standard signaling operations on short messages.
  • the simplified signaling process is obtained by sending a signaling request to the signaling optimization module; the process of obtaining the simplified signaling process is effectively guaranteed by utilizing the independent computing and processing capability of the signaling optimization module.
  • Another embodiment of the present application relates to a message processing method.
  • this embodiment by judging the running state of the signaling optimization module, it is determined whether to obtain the simplified signaling process from the signaling optimization module.
  • the above message processing method further includes the following steps.
  • Step 105 Determine the running state of the signaling optimization module.
  • the operating state of the signaling optimization module may include: a normal state, a temporary fault state and a fault state.
  • the following two manners may be used to determine the running status of the signaling optimization module by judging whether the signaling optimization module is reachable.
  • Mode 1 Periodically send detection information to the signaling optimization module, and update the operating status of the signaling optimization module according to the detection results.
  • the operating state of the signaling optimization module when the detection result is that the information is reachable, the operating state of the signaling optimization module is set as a normal state; when the detection result is that the information is unreachable, the operating state of the signaling optimization module is set as a temporary failure state; When the number of times of setting the temporary failure state exceeds the preset number of times, the operation state of the signaling optimization module is set as the failure state.
  • the SMSF may actively send detection information to the signaling optimization module periodically, independent of the trigger action of receiving the short message.
  • the purpose of the detection information is to detect whether the communication path between the SMSF and the signaling optimization module is Da.
  • the running state of the signaling optimization module is updated according to the detection result.
  • the operating state of the signaling optimization module when the detection result is that the information is reachable, the operating state of the signaling optimization module is set as a normal state.
  • the signaling optimization module When the signaling optimization module is in a normal state, after the SMSF sends a signaling request to the signaling optimization module, it can quickly receive a signaling response fed back by the signaling optimization module.
  • the operation state of the signaling optimization module is set as a temporary failure state.
  • the SMSF may not receive a signaling response fed back by the signaling optimization module soon or may not be able to receive it.
  • the SMSF may not receive the signaling response fed back by the signaling optimization module after sending a signaling request to the signaling optimization module.
  • Method 2 When the simplified signaling process carried in the signaling response is not available, or does not carry the simplified signaling process, or does not receive a signaling response within the preset time, set the operating status of the signaling optimization module to temporary Fault state: when the number of times the temporary fault state is continuously set based on the signaling response exceeds the preset number of times, the operating state of the signaling optimization module is set as a fault state.
  • the SMSF can passively determine the running state of the signaling optimization module depending on the trigger action of receiving the short message, and the determination basis mainly depends on the signaling response fed back by the signaling optimization module.
  • the simplified signaling process carried in the signaling response when the simplified signaling process carried in the signaling response is not available, or does not carry the simplified signaling process, or does not receive a signaling response within a preset time, it indicates that the signaling optimization module may appear If there is a fault, you can set the operating state of the signaling optimization module to be a temporary fault state; when the number of consecutive temporary fault state settings based on the signaling response exceeds the preset number of times, indicating that the probability of a fault is relatively high, then set the signaling optimization module at this time. Let the running state of the optimization module be a failure state.
  • step 104 is performed to perform a signaling operation on the short message according to the signaling standard procedure corresponding to the short message.
  • step 104 before performing the above step 104, according to the signaling standard procedure corresponding to the short message, before performing the signaling operation on the short message, the following steps may also be performed.
  • Step 1 According to the success rate of short message delivery in the current system, determine whether to trigger the signaling standard procedure. Specifically, since the signaling standard process is relatively complicated, in order to reduce unnecessary waste of time and resources, before executing the signaling standard process, it can be judged whether the signaling standard can be triggered according to the success rate of short message delivery in the current system. process. Wherein, the higher the success rate of short message delivery, the greater the possibility of triggering the signaling standard procedure.
  • Step 2 When it is determined that the signaling standard procedure is triggered, perform the processing of performing signaling operations on the short message according to the signaling standard procedure corresponding to the short message.
  • Step 3 When it is determined that the signaling standard procedure is not triggered, the signaling operation on the short message is refused.
  • FIG. 4 Another embodiment of the present application relates to an electronic device, as shown in FIG. 4 , including at least one processor 202; and a memory connected in communication with at least one processor 202; The instructions executed by the processor 202 are executed by at least one processor 202, so that the at least one processor 202 can execute any one of the above method embodiments.
  • the memory 201 and the processor 202 are connected by a bus, and the bus may include any number of interconnected buses and bridges, and the bus connects one or more processors 202 and various circuits of the memory 201 together.
  • the bus may also connect together various other circuits such as peripherals, voltage regulators, and power management circuits, all of which are well known in the art and therefore will not be further described herein.
  • the bus interface provides an interface between the bus and the transceivers.
  • a transceiver may be a single element or multiple elements, such as multiple receivers and transmitters, providing means for communicating with various other devices over a transmission medium.
  • the data processed by the processor 202 is transmitted on the wireless medium through the antenna, and further, the antenna also receives the data and transmits the data to the processor 202 .
  • Processor 202 is responsible for managing the bus and general processing, and may also provide various functions including timing, peripheral interfacing, voltage regulation, power management, and other control functions. And the memory 201 may be used to store data used by the processor 202 when performing operations.
  • Another embodiment of the present application relates to a computer-readable storage medium storing a computer program.
  • the computer program is executed by the processor, any one of the above method embodiments is realized.
  • a storage medium includes several instructions to make a device ( It may be a single-chip microcomputer, a chip, etc.) or a processor (processor) to execute all or part of the steps of the methods described in the various embodiments of the present application.
  • the aforementioned storage media include: U disk, mobile hard disk, read-only memory (ROM, Read-Only Memory), random access memory (RAM, Random Access Memory), magnetic disk or optical disc, etc., which can store program codes. .

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Abstract

本申请实施例涉及通信技术领域,公开了一种消息处理方法、电子设备及存储介质,通过在接收短消息后,先获取短消息对应的信令简化流程,该信令简化流程为对信令标准流程进行简化后生成;然后根据信令简化流程,对短消息执行信令操作。

Description

消息处理方法、电子设备及存储介质
相关申请的交叉引用
本申请基于申请号为“202110765320.6”、申请日为2021年07月07日的中国专利申请提出,并要求该中国专利申请的优先权,该中国专利申请的全部内容在此以引入方式并入本申请。
技术领域
本申请实施例涉及通信技术领域,特别涉及一种消息处理方法、电子设备及存储介质。
背景技术
短信作为网络必达的信息收发通道在5G时代会继续长期存在。SMSF(Short Message Service Function)是5G核心网中重要的短信服务网元,是5G核心网与传统短消息中心(Short Message Service Center,SMSC)之间终端收发5G短消息的接口与桥梁。
由于5G网络中各网元采用服务化接口进行消息传递,在消息交互过程中涉及信令接口较多,大大增加了消息交互的错误概率,同时也降低了消息传递的效率。
发明内容
本申请的实施例提供了一种消息处理方法,包括:接收短消息;获取短消息对应的信令简化流程,信令简化流程为对信令标准流程进行简化后生成;根据信令简化流程,对短消息执行信令操作。
本申请的实施例还提供了一种电子设备,包括:
至少一个处理器;以及,
与所述至少一个处理器通信连接的存储器;其中,
所述存储器存储有可被所述至少一个处理器执行的指令,所述指令被所述至少一个处理器执行,以使所述至少一个处理器能够执行如上所述的消息处理方法。
本申请的实施例还提供了一种计算机可读存储介质,存储有计算机程序,所述计算机程序被处理器执行时实现如上所述的消息处理方法。
附图说明
图1是根据本申请实施例提供的消息处理方法的具体流程图一;
图2是根据本申请实施例提供的消息处理方法的具体流程图二;
图3是根据本申请实施例提供的消息处理方法的具体流程图三;
图4是根据本申请实施例提供的电子设备的结构示意图。
具体实施方式
为使本申请实施例的目的、技术方案和优点更加清楚,下面将结合附图对本申请的各实施例进行详细的阐述。然而,本领域的普通技术人员可以理解,在本申请各实施例中,为了使读者更好地理解本申请而提出了许多技术细节。但是,即使没有这些技术细节和基于以下各实施例的种种变化和修改,也可以实现本申请所要求保护的技术方案。
本申请实施例的目的在于提供一种消息处理方法、电子设备及存储介质,能够有效降低5G网络中,消息交互的错误概率,同时提高消息传递的效率。
本申请实施例提供的消息处理方法,通过在接收短消息后,先获取短消息对应的信令简 化流程,该信令简化流程为对信令标准流程进行简化后生成;然后根据信令简化流程,对短消息执行信令操作。由于信令流程得到了简化,在一定程度上减少了后续针对短消息执行的信令操作环节和消息量,从而有效降低了消息交互的错误概率,同时提高了消息传递的效率。
本申请的一实施例涉及一种消息处理方法,可应用于5G网络中的SMSF。
如图1所示,本实施例提供的消息处理方法,包括如下步骤。
步骤101:接收短消息。
SMSF是5G核心网中,遵循3GPP 29.540标准协议的5G短信服务网元,其通过N20接口与5G核心网中的接入及移动性管理网元(Access and Mobility Management Function,AMF)交互、通过N21接口与统一数据管理(Unified Data Management,UDM)交互,MAP(Mobile Application Part)等接口协议与短消息服务中心(Short Message Service Center,SMSC)/IPSMGW对接,为5G终端用户提供注册、注销、收发NAS短信服务。
本步骤中的短消息可以是上述与SMSF交互的任一5G网元发送给SMSF的短消息,可以包括注册消息、注销消息、起呼消息和终呼消息中的任一消息。
步骤102:获取短消息对应的信令简化流程,信令简化流程为对信令标准流程进行简化后生成。
本实施例中,SMSF在接收到外部5G网元发送的短消息后,没有按照惯例采用信令标准流程对该短消息执行后续的信令操作,而是获取短消息对应的信令简化流程,该信令简化流程为对信令标准流程进行简化后生成。
在实际场景中,信令流程主要用于同步各相关设备之间的状态,而当某些5G网元多次发送类型重复或者用户重复的短消息时,其对应的后续信令流程存在很大的重叠。而这些重叠的信令流程所要同步的状态各相关设备早已具备,因此无需再执行这些信令流程而重复同步已经同步的状态。
基于该问题的出现,本实施例提出了简化信令流程的思想,即通过对信令标准流程进行简化,适应得到针对各短消息的简化后的信令流程,即信令简化流程。SMSF在接收到外部5G网元发送的短消息后,获取当前短消息对应的信令简化流程,该信令简化流程可通过预设的信令优化模块生成。
步骤103:根据信令简化流程,对短消息执行信令操作。
本实施例中,根据获取的信令简化流程,对短消息执行较信令标准流程简化的信令操作,以加快向前端传递该短消息的速度。
本申请实施例提供的消息处理方法,通过在接收短消息后,先获取短消息对应的信令简化流程,该信令简化流程为对信令标准流程进行简化后生成;然后根据信令简化流程,对短消息执行信令操作。由于信令流程得到了简化,在一定程度上减少了后续针对短消息执行的信令操作环节和消息量,从而有效降低了消息交互的错误概率,同时提高了消息传递的效率。
本申请的另一实施例涉及一种消息处理方法。在本实施例中,基于信令优化模块获取短消息对应的信令简化流程。相应的,如图2所示,上述步骤102可具体包括如下子步骤。
子步骤1021:向信令优化模块发送用于获取信令简化流程的信令请求。
其中,信令优化模块可以内置在SMSF中,也可以与SMSF分开设置,该信令优化模块基于SMSF发出的信息请求,可生成和提供短消息的信令简化流程。
本实施例中,信令优化模块生成信令简化流程的过程可包括如下步骤。
步骤1:查询本地是否缓存有短消息的发送端发送的同类型历史短消息的历史信令缓存数据。
本实施例中,信令优化模块可根据信令请求中携带的国际移动用户识别码(International Mobile Subscriber Identification Number,IMSI)识别短消息的发送端。并以IMSI为key查询本地的一级缓存中是否存在与当前短消同类型的历史短消息的历史信令缓存数据。换言之,就是查询该发送端是否发送过与当前短消类类型相同的历史短消息,并且保存有该历史短消息对应的历史信令缓存数据,即同步过的相关状态。
步骤2:如果查询到历史信令缓存数据,则基于历史信令缓存数据对信令标准流程进行简化,得到信令简化流程。
如果查询到历史信令缓存数据,则可以基于历史信令缓存数据对信令标准流程进行简化,从中删除掉已经生成了历史信令缓存数据的信令部分,得到简化后的信令流程,即信令简化流程。
子步骤1022:接收信令优化模块反馈的信令响应。
本实施例中,信令优化模块通过向SMSF发送信令响应的方式,提供短消息的信令简化流程。
当信令响应中携带的信令简化流程可用时,执行步骤103,根据信令简化流程,对短消息执行后续信令操作。
当信令响应中携带的信令简化流程不可用,或未携带信令简化流程,或在预设时间内未接收到所述信令响应时(后两个情况图中未示),则执行步骤104,根据短消息对应的信令标准流程,对短消息执行信令操作。
本实施例中,SMSF在接收到携带有信令简化流程的信令响应后,会对该信令简化流程的可用性进行验证。如果验证可用,则根据该信令简化流程,对短消息执行后续信令操作,简化实操的信令流程。如果验证不可用,则根据原有的信令标准流程,对短消息执行标准的信令操作。
另外,若接收到信令响应中未携带信令简化流程,或在预设时间内未接收到信令响应时,则认为获取信令简化流程的操作失败,则根据原有的信令标准流程,对短消息执行标准的信令操作。
本申请实施例通过向信令优化模块发送信令请求,获取信令简化流程;利用信令优化模块的独立计算处理能力,使得获取信令简化流程的过程得到有效保证。
本申请的另一实施例涉及一种消息处理方法。在本实施例中,通过判断信令优化模块的运行状态,确定是否从信令优化模块获取信令简化流程。相应的,在上一方法实施例的基础上,如图3所示,上述消息处理方法中还包括如下步骤。
步骤105:确定信令优化模块的运行状态。
其中,信令优化模块的运行状态可包括:正常状态、临时故障状态和故障状态。
本实施例中,可采用如下示出的两种方式,通过判断信令优化模块是否可达,来确定信令优化模块的运行状态。
方式1:周期性向信令优化模块发送探测信息,根据探测结果更新信令优化模块的运行状态。
其中,当探测结果为信息可达时,设置信令优化模块的运行状态为正常状态;当探测结 果为信息不可达,则设置信令优化模块的运行状态为临时故障状态;当基于探测结果连续设置临时故障状态的次数超过预设次数时,设置信令优化模块的运行状态为故障状态。
本实施例中,SMSF可以不依赖于接收短消息的触发动作,主动向信令优化模块周期性的发送探测信息,该探测信息的目的是探测SMSF到信令优化模块之间的通信通路是否可达。根据探测结果更新信令优化模块的运行状态。
本实施例中,当探测结果为信息可达时,设置信令优化模块的运行状态为正常状态。在信令优化模块处于正常状态下,SMSF在向信令优化模块发送信令请求后,可以很快的接收到信令优化模块反馈的信令响应。当探测结果为信息不可达,则设置信令优化模块的运行状态为临时故障状态。在信令优化模块处于临时故障状态下,SMSF在向信令优化模块发送信令请求后,可能不会很快或者不能接收到信令优化模块反馈的信令响应。在此基础上,如果基于探测结果连续设置临时故障状态的次数超过预设次数时,则表征信令优化模块极有可能出现永久性的故障,应设置信令优化模块的运行状态为故障状态。在信令优化模块处于故障状态下,SMSF在向信令优化模块发送信令请求后,极有可能接收不到信令优化模块反馈的信令响应。
方式2:当信令响应中携带的信令简化流程不可用,或未携带信令简化流程,或在预设时间内未接收到信令响应时,则设置信令优化模块的运行状态为临时故障状态;当基于信令响连续设置临时故障状态的次数超过预设次数时,设置信令优化模块的运行状态为故障状态。
本实施例中,SMSF可以依赖于接收短消息的触发动作,被动的确定信令优化模块的运行状态,确定的依据主要取决于信令优化模块反馈信令响应的情况。
本实施例中,当信令响应中携带的信令简化流程不可用,或未携带信令简化流程,或在预设时间内未接收到信令响应时,则均表明信令优化模块可能出现了故障,此时可设置信令优化模块的运行状态为临时故障状态;当基于信令响连续设置临时故障状态的次数超过预设次数时,表征出现故障的概率较大,则此时设置信令优化模块的运行状态为故障状态。
在此基础上,当信令优化模块的运行状态为正常状态或临时故障状态,则执行子步骤1021,向信令优化模块发送用于获取信令简化流程的信令请求的操作。
当信令优化模块的运行状态为故障状态,则执行步骤104根据短消息对应的信令标准流程,对短消息执行信令操作。
通过判断信令优化模块的运行状态来确定是否向信令优化模块发送用于获取信令简化流程的信令请求,从而可以避免在信令优化模块无法返回可用的信令简化流程的情况下,仍向信令优化模块发送信令请求而带来的时间和资源的浪费。
此外,在执行上述步骤104,根据短消息对应的信令标准流程,对短消息执行信令操作之前,还可包括执行如下步骤。
步骤1:根据当前系统的短消息投递成功率,判断是否触发信令标准流程。具体地,由于信令标准流程过程相对复杂,为减少不必要的时间和资源的浪费,可以在在执行信令标准流程之前,根据当前系统的短消息投递成功率,判断是否可以触发信令标准流程。其中,短消息投递成功率越高,则确定触发信令标准流程的可能性越大。
步骤2:当确定触发信令标准流程,则执行根据短消息对应的信令标准流程,对短消息执行信令操作的处理。
步骤3:当确定不触发信令标准流程,则拒绝对短消息执行信令操作。
本实施例中,通过判断信令优化模块的运行状态来确定是否向信令优化模块发送用于获取信令简化流程的信令请求,从而可以避免在信令优化模块无法返回可用的信令简化流程的情况下,仍向信令优化模块发送信令请求而带来的时间和资源的浪费。
此外,根据预置影响因子和当前系统的短消息投递成功率,决定是否触发信令标准流程,可以对触发信令标准流程的决策进行评价和指导。
本申请的另一实施例涉及一种电子设备,如图4所示,包括至少一个处理器202;以及,与至少一个处理器202通信连接的存储器;其中,存储器201存储有可被至少一个处理器202执行的指令,指令被至少一个处理器202执行,以使至少一个处理器202能够执行上述任一方法实施例。
其中,存储器201和处理器202采用总线方式连接,总线可以包括任意数量的互联的总线和桥,总线将一个或多个处理器202和存储器201的各种电路连接在一起。总线还可以将诸如外围设备、稳压器和功率管理电路等之类的各种其他电路连接在一起,这些都是本领域所公知的,因此,本文不再对其进行进一步描述。总线接口在总线和收发机之间提供接口。收发机可以是一个元件,也可以是多个元件,比如多个接收器和发送器,提供用于在传输介质上与各种其他装置通信的单元。经处理器202处理的数据通过天线在无线介质上进行传输,进一步,天线还接收数据并将数据传送给处理器202。
处理器202负责管理总线和通常的处理,还可以提供各种功能,包括定时,外围接口,电压调节、电源管理以及其他控制功能。而存储器201可以被用于存储处理器202在执行操作时所使用的数据。
本申请的另一实施例涉及一种计算机可读存储介质,存储有计算机程序。计算机程序被处理器执行时实现上述任一方法实施例。
即,本领域技术人员可以理解,实现上述实施例方法中的全部或部分步骤是可以通过程序来指令相关的硬件来完成,该程序存储在一个存储介质中,包括若干指令用以使得一个设备(可以是单片机,芯片等)或处理器(processor)执行本申请各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、只读存储器(ROM,Read-Only Memory)、随机存取存储器(RAM,Random Access Memory)、磁碟或者光盘等各种可以存储程序代码的介质。
本领域的普通技术人员可以理解,上述各实施例是实现本申请的具体实施例,而在实际应用中,可以在形式上和细节上对其作各种改变,而不偏离本申请的精神和范围。

Claims (10)

  1. 一种消息处理方法,包括:
    接收短消息;
    获取所述短消息对应的信令简化流程,所述信令简化流程为对信令标准流程进行简化后生成;
    根据所述信令简化流程,对所述短消息执行信令操作。
  2. 根据权利要求1所述的方法,其中,所述获取所述短消息对应的信令简化流程,包括:
    向信令优化模块发送用于获取所述信令简化流程的信令请求;
    接收所述信令优化模块反馈的信令响应;
    当所述信令响应中携带的信令简化流程可用时,执行所述根据所述信令简化流程,对所述短消息执行后续信令操作;
    当所述信令响应中携带的信令简化流程不可用,或未携带所述信令简化流程,或在预设时间内未接收到所述信令响应时,根据所述短消息对应的信令标准流程,对所述短消息执行信令操作。
  3. 根据权利要求2所述的方法,其中,所述信令优化模块生成所述信令简化流程的过程,包括:
    查询本地是否缓存有所述短消息的发送端发送的同类型历史短消息的历史信令缓存数据;
    如果查询到所述历史信令缓存数据,则基于所述历史信令缓存数据对所述信令标准流程进行简化,得到所述信令简化流程。
  4. 根据权利要求2所述方法,其中,所述向信令优化模块发送用于获取所述信令简化流程的信令请求之前,包括:
    确定所述信令优化模块的运行状态;
    当所述信令优化模块的运行状态为正常状态或临时故障状态,则执行所述向信令优化模块发送用于获取所述信令简化流程的信令请求的操作;
    当所述信令优化模块的运行状态为故障状态,则根据所述短消息对应的信令标准流程,对所述短消息执行信令操作。
  5. 根据权利要求4所述方法,其中,所述方法包括:
    周期性向所述信令优化模块发送探测信息,根据探测结果更新所述信令优化模块的运行状态;
    其中,当所述探测结果为信息可达时,设置所述信令优化模块的运行状态为正常状态;当所述探测结果为信息不可达,则设置所述信令优化模块的运行状态为临时故障状态;当基于所述探测结果连续设置所述临时故障状态的次数超过预设次数时,设置所述信令优化模块的运行状态为故障状态。
  6. 根据权利要求5所述的方法,其中,所述方法包括:
    当所述信令响应中携带的信令简化流程不可用,或未携带所述信令简化流程,或在预设时间内未接收到所述信令响应时,则设置所述信令优化模块的运行状态为临时故障状态;当基于所述信令响连续设置所述临时故障状态的次数超过预设次数时,设置所述信令优化模块的运行状态为故障状态。
  7. 根据权利要求1、2、4中任一项所述的方法,其中,所述根据所述短消息对应的信令标准流程,对所述短消息执行信令操作之前,包括:
    根据当前系统的短消息投递成功率,判断是否触发所述信令标准流程;
    当确定触发所述信令标准流程,则执行根据所述短消息对应的信令标准流程,对所述短消息执行信令操作的处理;
    当确定不触发所述信令标准流程,则拒绝对所述短消息执行信令操作。
  8. 根据权利要求1-7中任一项所述的方法,其中,所述短消息包括:注册消息、注销消息、起呼消息和终呼消息中的任一消息。
  9. 一种电子设备,包括:
    至少一个处理器;以及,
    与所述至少一个处理器通信连接的存储器;其中,
    所述存储器存储有可被所述至少一个处理器执行的指令,所述指令被所述至少一个处理器执行,以使所述至少一个处理器能够执行如权利要求1至8中任一项所述的消息处理方法。
  10. 一种计算机可读存储介质,存储有计算机程序,所述计算机程序被处理器执行时实现如权利要求1至8中任一项所述的消息处理方法。
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