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Improving the performance of TCP over wireless networks

机译:通过无线网络提高TCP的性能

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摘要

One of the major issues facing TCP (Transmission Control Protocol) when implemented in 802.11 wireless networks is that it doesn't adapt its RTO (retransmission timeout) to sudden large delays. Several times the usual RTT (Round Trip Time), i.e. RTO is reached before the sudden large delay passes leading to an early timeout and early retransmissions. Such delays can be caused by errors on wireless data links like shadowing, fading, noise, interference, etc. In this paper, we propose an end-to-end enhancement for the current TCP by dealing with sudden large delays in wireless networks caused by combined shadowing and path loss. This will be done through extending RTO dynamically using different methods in such a way that prevents early timeouts and early retransmissions due to shadowing. The proposed approach is validated using simulations and compared to the normal implemented TCP where no extension is added to RTO. The simulation results showed higher goodput and less retransmissions compared to standard TCP.
机译:在802.11无线网络中实现时,TCP(传输控制协议)面临的主要问题之一是它不适应其RTO(重传超时)突然大延迟。几次通常的RTT(往返时间),即RTO在突然大的延迟通行证之前达到了早期超时和早期重传。这种延迟可能是由无线数据链路上的错误引起的,如阴影,衰落,噪声,干扰等。在本文中,我们通过处理由由此引起的无线网络中的突然大延迟来提出当前TCP的端到端增强组合阴影和路径损耗。这将通过以不同的方法在这种方式使用不同方法延伸RTO来完成,以防止由于阴影引起的早期超时和早期重传。使用仿真验证所提出的方法,并与正常实现的TCP进行了验证,RTO没有扩展。与标准TCP相比,仿真结果表明较高的净化量和更少的重传。

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