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Queue Stability Analysis and Performance Evaluation of a TCP-Compliant Window Management Mechanism

机译:符合TCP的窗口管理机制的队列稳定性分析和性能评估

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Addressing performance degradations in end-to-end congestion control has been one of the most active research areas in the last decade. A huge number of techniques have been proposed in the past, but some of them miss the challenging target of both minimizing network delay and keeping goodput close to the network capacity (e.g., active queue management (AQM) techniques); others require changes in both network routers and hosts that make them difficult to deploy [e.g., eXplicit Control Protocol (XCP)]. In a previous paper, a novel mechanism, called Active Window Management (AWM), has been proposed by the same authors with the aim of controlling the queue length in network routers, maintaining it almost constant to achieve no loss, while maximizing network utilization. The target of this paper is twofold: 1) carrying out a deep analysis of the AWM algorithm stability to evaluate the impact of some system parameters on the performance of the whole system; 2) demonstrating that AWM can be gradually introduced, maintaining the compatibility with the current Internet. An extensive numerical analysis is proposed to demonstrate that AWM stabilizes the queue around a target value with small oscillations.
机译:在过去的十年中,解决端到端拥塞控制中的性能下降一直是最活跃的研究领域之一。过去已经提出了许多技术,但是其中一些技术既没有达到使网络延迟最小化又要使吞吐量保持与网络容量接近的挑战性目标(例如,主动队列管理(AQM)技术);其他路由器则需要同时更改网络路由器和主机,从而使其难以部署[例如,紧急控制协议(XCP)]。在以前的论文中,同一作者提出了一种称为主动窗口管理(AWM)的新颖机制,目的是控制网络路由器中的队列长度,使其保持几乎恒定以实现无损失,同时最大化网络利用率。本文的目标有两个:1)对AWM算法的稳定性进行深入分析,以评估某些系统参数对整个系统性能的影响; 2)证明可以逐步引入AWM,并保持与当前Internet的兼容性。提出了广泛的数值分析,以证明AWM以较小的振荡使队列稳定在目标值附近。

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