选择性慢启动:一种提高无线ATM环境下TCP性能的简单算法

U. Varshney
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引用次数: 2

摘要

移动计算已经成为一个重要的研究和开发活动领域。为了支持这种移动计算,一些研究人员采用的一种方法涉及在无线环境中引入ATM技术(称为无线ATM),并使用合适的传输协议来支持各种应用程序。最初的实现很可能会采用TCP(或其修改版本)作为传输协议,因为它在研究社区中得到了极大的支持。然而,现有版本的TCP存在的问题是缺乏对网络拥塞和无线网络切换造成的段丢失的区分。在段丢失后,TCP将启动一个缓慢的启动阶段,以减少其提供的流量,假设网络正在经历拥塞。这可能会显著降低TCP吞吐量,并导致无法接受的性能,特别是如果底层无线ATM网络能够支持高数据速率。本文提出了一种称为“选择性慢启动”的新算法,其中TCP将尝试区分由于网络拥塞和由于基于损失模式(超时)的切换而导致的段损失。在前一种情况下,它将启动缓慢启动阶段,在后一种情况下,它将继续以目前的速度传输。仿真结果表明,在无线ATM环境下,SSS算法显著提高了传输层吞吐量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Selective slow start: a simple algorithm for improving TCP performance in wireless ATM environment
Mobile computing has emerged as an area of significant research and development activities. To support this computing on move, one approach taken by several researchers involves the introduction of the ATM technology in the wireless environment (termed wireless ATM) and the use a suitable transport protocol to support various applications. It is likely that initial implementations will employ TCP (or a modified version of it) as the transport protocol due to the tremendous support it enjoys in the research community. However the problem with existing versions of TCP is a lack of differentiation between segment loss due to the network congestion and due to the handoff in the wireless network. After a segment loss, TCP would initiate a slow start phase to reduce its offered traffic assuming that the network is going through congestion. This may reduce the TCP throughput significantly and will lead to unacceptable performance specially if the underlying wireless ATM network is capable of supporting high data rates. This paper proposes a new algorithm called 'selective slow start', where TCP will attempt to differentiate between segment losses due to the network congestion and due to the handoffs based on the pattern of losses (timeouts). It will initiate the slow start phase in the former case and it will continue to transmit at its current speed in the latter case. Based on the simulation results presented, the SSS algorithm improves the transport layer throughput significantly in a wireless ATM environment.
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