无缓冲OpMiGua节点分析

A. Kimsas, H. Øverby, N. Stol
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引用次数: 1

摘要

提出了一种估计无缓冲混合电路和分组交换OpMiGua节点丢包量的封闭表达式和马尔可夫模型。先前的混合网络节点流量分析是基于抢占和基于队列的优先级机制,然而,在本文中,我们关注的是时间窗口方法及其相关的保留诱导阻塞(RIB)。通过最小化RIB得到了丢包的封闭表达式,并证明了该表达式对于增加电路包长度是渐近精确的。提出了考虑肋条效应的马尔可夫模型,并用仿真验证了该模型的精度。对于低于85%的电路交换流量份额,相对误差的中位数和95%分别等于10%和25%。最后,当电路分组聚合成突发时,对于足够高的电路流量份额,总丢包量减少。确定了这种性能增益背后的机制,并提出了最大化其效果的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of a Bufferless OpMiGua Node
This paper presents a closed form expression and a Markov model estimating packet loss in a bufferless hybrid circuit and packet switched OpMiGua node. Prior traffic analysis of hybrid network nodes are based on preemptive and queue-based priority mechanisms, however, in this article we focus on the time-window approach with its associated reservation induced blocking (RIB). A closed form expression for packet loss is found by minimizing the RIB and is proved to be asymptotically exact for increasing length of circuit packets. A Markov model accounting for the effect of RIB is proposed and simulation is used to determine its accuracy. For lower than 85% share of circuit switched traffic, the respective median and 95- percentile for the relative error equals 10% and 25%. Finally, when circuit packets are aggregated into bursts the total packet loss is reduced for sufficiently high share of circuit traffic. The mechanisms behind this performance gain are identified and methods to maximise its effect are proposed.
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