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A novel framework for G/M/1 queuing system based on scheduling-cum-polling mechanism to analyze multiple classes of self-similar and LRD traffic

机译:一种基于调度和轮询机制的G / M / 1排队系统新框架,用于分析多类自相似和LRD流量

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摘要

Provisioning guaranteed Quality of Service (QoS) in multiservice wireless internet is challenging due to diverse nature of end-user traffic (e. g., voice, streaming video, interactive gaming) passing through heterogeneous interconnected domains with their own policies and procedures. Numerous studies have shown that multimedia traffic carried in wireless internet possesses self-similar and longrange dependent characteristics. Nonetheless, published work on wireless traffic modeling is merely based on traditional Poisson traffic distribution which fails to capture these characteristics and hence yield misleading results. Moreover, existing work related to self-similar traffic modeling is primarily based on conventional queuing and scheduling combinations which are simple approximations. This paper presents a novel analytical framework for G/M/1 queuing system based on realistic internet traffic distribution to provide guaranteed QoS. We analyze the behavior of multiple classes of self-similar traffic based on newly proposed scheduling-cum-polling mechanism (i.e., combination of priority scheduling and limited service polling model). We formulate the Markov chain for G/M/1 queuing system and present closed form expressions for different QoS parameters i.e., packet delay, packet loss rate, bandwidth, jitter and queue length. We develop a customized discrete event simulator to validate the performance of the proposed analytical framework. The proposed framework can help in building comprehensive service level agreements for heterogeneous wireless domains.
机译:由于最终用户流量(例如,语音,流视频,交互式游戏)具有通过其自己的策略和过程通过异构互连域的多种多样的性质,因此在多业务无线互联网中提供保证的服务质量(QoS)是具有挑战性的。大量研究表明,无线互联网中承载的多媒体流量具有自相似且依赖于远程的特性。但是,已发表的有关无线流量建模的工作仅基于传统的Poisson流量分布,该分布无法捕获这些特征并因此产生误导性的结果。此外,与自相似流量建模有关的现有工作主要基于传统的排队和调度组合,它们是简单的近似值。本文提出了一种基于现实的互联网流量分配的G / M / 1排队系统的新颖分析框架,以提供有保证的QoS。我们基于新提出的调度兼轮询机制(即优先级调度和有限服务轮询模型的组合)来分析多类自相似流量的行为。我们为G / M / 1排队系统制定了马尔可夫链,并针对不同的QoS参数(即数据包延迟,数据包丢失率,带宽,抖动和队列长度)给出了封闭形式的表达式。我们开发了一个定制的离散事件模拟器来验证所提出的分析框架的性能。提议的框架可以帮助建立针对异构无线域的全面服务级别协议。

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