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Improved loss calculations at an ATM multiplexer

机译:改进了ATM多路复用器的损耗计算

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摘要

In this paper we develop a simple and accurate analytical technique to determine the loss probability at an access node to an asynchronous transfer mode (ATM) network. This is an important problem from the point of view of admission control and network design. The arrival processes we analyze are the Markov-modulated Poisson process (MMPP) and the Markov-modulated fluid (MMF) process. These arrival processes have been shown to model various traffic types, such as voice, video, and still images, that are expected to be transmitted by ATM networks. Our hybrid analytical technique combines results from large buffer theories and quasi-stationary approaches to analyze the loss probability of a finite-buffer queue being fed by Markov-modulated sources such as the MMPP and MMF. Our technique is shown to be valid for both heterogeneous and homogeneous sources. We also show that capacity allocation based on the popular effective-bandwidth scheme can lead to considerable under-utilization of the network and that allocating bandwidth based on our model can improve the utilization significantly. We provide numerical results for different types of traffic and validate our model via simulations.
机译:在本文中,我们开发了一种简单而准确的分析技术来确定异步传输模式(ATM)网络的访问节点处的丢失概率。从准入控制和网络设计的角度来看,这是一个重要的问题。我们分析的到达过程是马尔可夫调制泊松过程(MMPP)和马尔可夫调制流体(MMF)过程。这些到达过程已显示出可以对各种流量类型进行建模,例如语音,视频和静止图像,这些流量类型有望由ATM网络发送。我们的混合分析技术结合了大型缓冲区理论和准平稳方法的结果,以分析由MMPP和MMF等Markov调制源馈入的有限缓冲区队列的丢失概率。我们的技术对异质源和同质源均有效。我们还表明,基于流行的有效带宽方案的容量分配会导致网络的大量利用率不足,并且基于我们的模型分配带宽可以显着提高利用率。我们提供不同类型流量的数值结果,并通过仿真验证我们的模型。

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