Upper bounds for individual queue length distribution in GPS with LRD traffic input

Xiang Yu, I. Thng, Yuming Jiang, C. Qiao
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引用次数: 4

Abstract

We analyze the arrival process of long range dependent (LRD) traffic and demonstrate that it is a Weibull bounded burstiness (WBB) process. By decomposing a generalized processor sharing (GPS) system into isolated queues and servers, we then obtain two upper bounds on the individual session queue length, which are useful for quality of service (QoS) control. We also demonstrate that some parameters in determining the upper bound on an individual session queue, such as the index, the asymptotic constant and the decay rate may be affected by other flows existing in the GPS system. However, under certain conditions, by carefully choosing the GPS weight parameters, an individual session with LRD traffic input can be well isolated from other flows.
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具有LRD流量输入的GPS中单个队列长度分布的上界
本文分析了远程依赖(LRD)交通的到达过程,证明了它是一个威布尔有界突发过程。通过将广义处理器共享(GPS)系统分解为孤立的队列和服务器,我们得到了单个会话队列长度的两个上界,这对服务质量(QoS)控制很有用。我们还证明了确定单个会话队列上界的一些参数,如索引、渐近常数和衰减率可能受到GPS系统中存在的其他流的影响。然而,在某些条件下,通过仔细选择GPS权重参数,可以很好地将具有LRD流量输入的单个会话与其他流隔离开来。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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