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RED for Improving TCP over Wireless Networks

机译:RED用于改善无线网络上的TCP

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摘要

TCP was designed and tuned to work well on networks where losses are mainly congestion losses. The performance of TCP decreases dramatically when a TCP connection traverses a wireless link on which packets may be lost due to wireless transmission errors. Explicit Congestion Notification (ECN) is known as an effective mechanism that can be used with Active Queue Management (e.g. RED) to control congestion on wired networks. ECN is used by routers to signal incipient congestion to end points. We evaluated the ability of ECN signals as a tool to distinguish between congestion losses and wireless losses. We concluded that the occurrence of an ECN signal is a bad predictor of imminent congestion losses and that when TCP senders are responsive to ECN signals, congestion losses appear to be as random as wireless losses. Based on this observation, we propose a simple technique, TCP-Eaglet, that distinguishes quite accurately congestion losses from wireless losses and improves TCP over wireless for ECN responsive flows. Preliminary simulations results show an improvement in throughput of up to 60%.
机译:TCP的设计和调整使其可以在损耗主要为拥塞损耗的网络上正常工作。当TCP连接穿越一条无线链路时,由于无线传输错误,数据包可能会丢失,TCP的性能会急剧下降。显式拥塞通知(ECN)是一种有效的机制,可以与主动队列管理(例如RED)一起使用来控制有线网络上的拥塞。路由器使用ECN向终点发出信号,指示初始拥塞。我们评估了ECN信号作为区分拥塞损耗和无线损耗的工具的能力。我们得出的结论是,ECN信号的出现不能很好地预测即将发生的拥塞损耗,并且当TCP发送方响应ECN信号时,拥塞损耗似乎与无线损耗一样随机。基于此观察,我们提出了一种简单的技术TCP-Eaglet,该技术可以非常准确地将拥塞损失与无线损失区分开,并针对ECN响应流改进了无线TCP。初步的模拟结果显示吞吐量提高了60%。

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