Performance characteristics of end-stations in an ATM network as viewed for applications and network

B. Patel, C. Bisdikian
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引用次数: 1

Abstract

Traffic shaping at a (traffic) source station as a prominent congestion control solution in ATM networks. The "leaky bucket" scheme in conjunction with a cell spacer is an extensively studied and used mechanism for such a traffic shaping. By dimensioning the leaky bucket and spacer parameters, a source station attempts to regulate the behavior of its own traffic in order to conform to a "good behavior" contract with the network. In this paper, we study the effect of the a single source's traffic characteristics and its leaky bucket parameters on the maximum burst size and the burst size distribution as seen by the network. The theoretical upper bound for the burst size is derived and simulation is used to study the effect of leaky bucket parameters on probability distribution of burst sizes. It is shown that while traffic shaping is done to abide to negotiated traffic characteristics, traffic shaping can lead to large queues of cells and result in large cell delay and delay jitter in the source station.<>
从应用和网络的角度看ATM网络中终端站的性能特征
在ATM网络中,流量源站的流量整形是一种重要的拥塞控制方案。“漏桶”方案与单元间隔器相结合,是一种被广泛研究和使用的交通整形机制。通过确定泄漏桶和间隔参数的尺寸,源站试图规范其自身流量的行为,以符合与网络的“良好行为”契约。本文研究了单个源的流量特性及其漏桶参数对网络中最大突发大小和突发大小分布的影响。推导了爆破尺寸的理论上限,并通过仿真研究了漏桶参数对爆破尺寸概率分布的影响。研究表明,当通信量整形是为了遵守协商的通信量特性时,通信量整形会导致大量的小区队列,并导致源站的大小区延迟和延迟抖动。
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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