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Modeling call holding time distributions for CCS network design and performance analysis

机译:为CCS网络设计和性能分析建模呼叫保持时间分布

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摘要

The message traffic offered to the CCS signaling network depends on and is modulated by the traffic characteristics of the circuit switched calls supported by the CCS network. Most previous analyses of CCS network engineering, performance evaluation and congestion control protocols generally assume an exponential holding time of circuit switched calls. Analysis of actual holding time distributions in conversations, facsimile and voice mail connections revealed that these distributions radically differ from the exponential distribution. Especially significant is the large proportion of very short calls in real traffic in comparison with the exponential distribution model. The diversity of calls (partial dialing, subscriber busy, no answer) and services results in a multi-component call mix, with even larger proportion of short time intervals between message-generating events. Very short call holding times can have a significant impact on the traffic stream presented to the CCS network: for calls with short holding times, the different CCS messages arrive relatively close to each other, and this manifests as burstiness in the CCS traffic stream.
机译:提供给CCS信令网络的消息流量取决于CCS网络支持的电路交换呼叫的流量特性,并受其调制。先前对CCS网络工程,性能评估和拥塞控制协议的大多数分析通常都假设电路交换呼叫的指数保持时间。对对话,传真和语音邮件连接中实际保持时间分布的分析表明,这些分布与指数分布有根本不同。与指数分布模型相比,在实际流量中很大一部分非常短的呼叫尤为重要。呼叫(部分拨号,用户忙,无人接听)和服务的多样性导致了多部分呼叫的混合,在发生消息的事件之间的短时间间隔中所占比例更大。非常短的呼叫保持时间可能会对呈现给CCS网络的业务流产生重大影响:对于保持时间较短的呼叫,不同的CCS消息到达的位置相对较近,这表现为CCS业务流中的突发性。

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