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Charging Information Collection Modeling and Analysis of GPRS Networks

机译:GPRS网络计费信息采集建模与分析

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Charging is one of the most important functionalities in a telecommunication service system. In a General Packet Radio Service (GPRS) wireless network, the load of charging information flow depends on the intensity of call traffic and the size of charging records. During busy hours, the GPRS network might not be able to transfer charging records on a timely basis if new charging records are generated too fast. On the other hand, when a call happens, the related charging information must be collected and transferred to the billing system. If a failure of the data link occurs, a secondary data link must be employed to transfer the charging information. However, this redundant operation might result in charging information duplication. This paper formally addresses these two issues. A timed Petri net model is built to support the analysis of the charging system performance versus various factors when the system works in the normal status, which, in particular, gives the maximum supportable busy hour call attempts of the GPRS network. The Petri net approach is also used to model and verify the correctness of the redundancy operation in case a connection failure occurs.
机译:计费是电信服务系统中最重要的功能之一。在通用分组无线服务(GPRS)无线网络中,计费信息流的负载取决于呼叫流量的强度和计费记录的大小。在繁忙时间,如果新计费记录生成得太快,GPRS网络可能无法及时传输计费记录。另一方面,当发生呼叫时,必须收集相关的计费信息并将其转移到计费系统。如果发生数据链路故障,则必须使用辅助数据链路来传输计费信息。但是,此冗余操作可能会导致计费信息重复。本文正式讨论了这两个问题。建立了一个定时Petri网模型,以支持在系统处于正常状态下时分析充电系统性能与各种因素之间的关系,特别是可以提供GPRS网络最大的可支持繁忙时间呼叫尝试。在发生连接故障的情况下,Petri网方法还用于建模和验证冗余操作的正确性。

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