Reducing congestion collapse and promoting fairness in the internet by optimizing SCTP

A. Al-kaisan, M. Ashrafuzzaman, S. Ahsan
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引用次数: 1

Abstract

The Internetpsilas excellent scalability and robustness result in part from the end-to-end nature of Internet congestion control. End-to-end congestion control algorithms alone however are unable to prevent the congestion collapse and unfairness created by applications that are unresponsive to network congestion. To address these maladies, we propose a modified Queue Management algorithm and Stream Control Transmission Protocol (SCTP) congestion control mechanism. SCTP mechanisms are based upon TCP congestion control principles. It allows network operators to simultaneously achieve high throughput and low average delay. One of the flaws of SCTP is-fast retransmission procedure is vulnerable to being mistakenly triggered multiple times leading to under utilization of the network during recovery and duplicate retransmissions of the lost packet. To solve these problems, we change in determining the congestion window while leaving the basic idea intact and then evaluate its performance using simulation. Simulation results show that our proposed method can effectively eliminates congestion collapse and give better performance than conventional procedure. Based on extensive simulation, we believe that our technique is sufficiently robust for deployment in routers.
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通过优化SCTP,减少拥塞崩溃,促进互联网公平
Internet具有出色的可伸缩性和健壮性,部分原因在于Internet拥塞控制的端到端特性。然而,端到端拥塞控制算法本身无法防止由对网络拥塞无响应的应用程序造成的拥塞崩溃和不公平。为了解决这些问题,我们提出了一种改进的队列管理算法和流控制传输协议(SCTP)拥塞控制机制。SCTP机制基于TCP拥塞控制原则。它允许网络运营商同时实现高吞吐量和低平均延迟。SCTP的缺陷之一是快速重传过程容易被错误地触发多次,导致在恢复和重复重传丢失的数据包时网络利用率不足。为了解决这些问题,我们在保持基本思想不变的情况下改变了拥塞窗口的确定方法,然后通过仿真来评估其性能。仿真结果表明,该方法可以有效地消除拥塞崩溃,并具有比传统方法更好的性能。基于广泛的仿真,我们认为我们的技术对于在路由器中部署具有足够的鲁棒性。
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