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A TCP Congestion Control Approach over Wireless Networks

机译:无线网络中的TCP拥塞控制方法

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Reliable transport protocols such as the Transmission Control Protocol (TCP) are tuned to perform well in traditional wired networks where packet losses occur mostly because of congestion. However, networks with wireless and lossy links also suffer from significant packet losses due to bit errors and hand-offs. TCPW has been proved to work better in performance and bandwidth utilization than Reno and New Reno in wireless networks. Our research mainly focuses on the slow-start phase and congestion control of TCPW and develops an algorithm to divide the phase into two parts. In the first half of slow-start, we use the exponential increase just like the original slow-start. We manage the congestion window by RTT estimation in the second half of slow-start. Simulate results shows a obvious improvement compared to TCPW.
机译:调整可靠的传输协议,如传输控制协议(TCP),以便在传统的有线网络中执行良好,其中包含由于拥塞而主要发生的数据包损耗。但是,具有无线和有损链路的网络也因位错误和交给而受到显着的分组损失。在无线网络中,TCPW已被证明在性能和带宽利用方面的工作更好,并在无线网络中使用新的Reno。我们的研究主要集中在TCPW的慢启动阶段和拥塞控制上,并开发一种将相分为两部分的算法。在慢速启动的前半部分,我们使用指数增加就像原始的慢动杆一样。我们通过RTT估计在慢速开始的下半部分来管理拥塞窗口。与TCPW相比,模拟结果表明了明显的改进。

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