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首页> 外文期刊>IEICE Transactions on Information and Systems >The Performance Modeling Application of SIP-T Signaling System Based on Two-Class Priority Queueing Process in Carrier Class VoIP Network
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The Performance Modeling Application of SIP-T Signaling System Based on Two-Class Priority Queueing Process in Carrier Class VoIP Network

机译:基于两类优先级排队过程的SIP-T信令系统性能建模在运营商级VoIP网络中的应用

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This paper presents the performance modeling application of SIP-T (Session Initiation Protocol for Telephones) signaling system based on two-class priority queueing process in carrier class VoIP (Voice over IP) network. The SIP-T signaling system denned in IETF (Internet Engineering Task Force) is a mechanism that uses SIP (Session Initiation Protocol) to facilitate the interconnection of existing PSTN (Public Switched Telephone Network) with carrier class VoIP network. One of the greatest challenges in the migration from PSTN toward NGN (Next Generation Networks) is to build a carrier class VoIP network that preserves the ubiquity, quality, and reliability of PSTN services while allowing the greatest flexibility for use of new VoIP technology. Based on IETF, the SIP-T signaling system not only promises scalability, flexibility, and interoperability with PSTN but also provides call control function of MGC (Media Gateway Controller) to set up, tear down, and manage VoIP calls in carrier class VoIP network. This paper presents the two class priority queueing model, performance analysis, and simulation of SIP-T signaling system in carrier class VoIP network focused on toll bypass or tandem by-pass of PSTN. In this papef, we analyze the average queueing length, the mean of queueing delay, and the variance of queueing delay of SIP-T signaling system that are the major performance evaluation parameters for improving QoS (Quality of Service) and system performance of MGC in carrier class VoIP network. A mathematical model of the M/G/1 queue with two-class non-preemptive priority assignment is proposed to represent SIP-T signaling system. Then, the formulae of average queueing length, queueing delay, and delay variation for the non-preemptive priority queue are expressed respectively. Several significant numerical examples of average queueing length, queueing delay, and delay variation are presented as well. Finally, the two-class priority queueing model and performance analysis of SIP-T signaling system are shown the accuracy and robustness after the comparison between theoretical estimates and simulation results.
机译:本文介绍了基于两类优先级排队过程的SIP-T(电话会话发起协议)信令系统的性能建模在运营商级VoIP(IP语音)网络中的应用。在IETF(Internet工程任务组)中定义的SIP-T信令系统是一种使用SIP(会话发起协议)来促进现有PSTN(公共交换电话网络)与运营商级VoIP网络互连的机制。从PSTN过渡到NGN(下一代网络)的最大挑战之一是建立一个运营商级VoIP网络,该网络在保留PSTN服务的普遍性,质量和可靠性的同时,还为使用新VoIP技术提供最大的灵活性。 SIP-T信令系统基于IETF,不仅具有可扩展性,灵活性和与PSTN的互操作性,而且还提供了MGC(媒体网关控制器)的呼叫控制功能,可在运营商级VoIP网络中建立,拆除和管理VoIP呼叫。 。本文针对PSTN的收费绕行或串联旁路,提出了电信级VoIP网络中SIP-T信令系统的两类优先级排队模型,性能分析和仿真。在本文中,我们分析了SIP-T信令系统的平均排队长度,排队延迟的平均值以及排队延迟的方差,它们是提高MGC的QoS(服务质量)和系统性能的主要性能评估参数。运营商级VoIP网络。提出了具有两类非抢先优先级分配的M / G / 1队列的数学模型来表示SIP-T信令系统。然后,分别表示非抢占优先级队列的平均排队长度,排队延迟和延迟变化的公式。还给出了平均排队长度,排队延迟和延迟变化的几个重要数值示例。最后,通过理论估计和仿真结果的比较,给出了两类优先级排队模型和SIP-T信令系统的性能分析。

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