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Performance of Random Medium Access Control An Asymptotic Approach

机译:随机介质访问控制的一种渐近方法

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摘要

Random Medium-Access-Control (MAC) algorithms have played an increasingly important role in the development of wired and wireless Local Area Networks (LANs) and yet the performance of even the simplest of these algorithms, such as slotted-Aloha, are still not clearly understood. In this paper we provide a general and accurate method to analyze networks where interfering users share a resource using random MAC algorithms. We show that this method is asymptotically exact when the number of users grows large, and explain why it also provides extremely accurate performance estimates even for small systems. We apply this analysis to solve two open problems: (a) We address the stability region of non-adaptive Aloha-like systems. Specifically, we consider a fixed number of buffered users receiving packets from independent exogenous processes and accessing the resource using Aloha-like algorithms. We provide an explicit expression to approximate the stability region of this system, and prove its accuracy. (b) We outline how to apply the analysis to predict the performance of adaptive MAC algorithms, such as the exponential back-off algorithm, in a system where saturated users interact through interference. In general, our analysis may be used to quantify how far from optimality the simple MAC algorithms used in LANs today are, and to determine if more complicated (e.g. queue-based) algorithms proposed in the literature could provide significant improvement in performance.
机译:随机介质访问控制(MAC)算法在有线和无线局域网(LAN)的发展中起着越来越重要的作用,但是即使是最简单的算法(如sloted-Aloha)的性能仍然不高清楚地了解。在本文中,我们提供了一种通用且准确的方法,使用随机MAC算法来分析干扰用户共享资源的网络。我们证明了当用户数量增加时,该方法渐近精确,并说明了即使对于小型系统,为什么也可以提供极其准确的性能估计。我们应用此分析解决两个开放问题:(a)解决非自适应Aloha样系统的稳定性区域。具体来说,我们考虑固定数量的缓冲用户,这些用户从独立的外源进程接收数据包,并使用类似Aloha的算法访问资源。我们提供一个明确的表达式来逼近该系统的稳定区域,并证明其准确性。 (b)我们概述了在饱和用户通过干扰进行交互的系统中,如何应用该分析来预测自适应MAC算法(例如指数补偿算法)的性能。通常,我们的分析可用于量化当今局域网中使用的简单MAC算法与最优性之间的距离,并确定文献中提出的更复杂的(例如基于队列的)算法是否可以显着提高性能。

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