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Distinguishing Congestion Loss from Random Loss on Wireless Erroneous Links to Improve Performance of Wireless TCP - SACK

机译:区分拥塞损失与无线错误链路上的随机损失,以提高无线TCP-SACK的性能

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Last few years have shown brisk intensification in Internet over the entire globe with heterogeneous networks. Hence the effectiveness of most important & inseparable part, TCP/IP protocol suite, plays a significant role. Wireless links involved in the formation of heterogeneous network is facing serious problems of random BER (Bit Error Rates) which causes random loss. The older TCP (Transmission Control Protocol) was designed for wired links, where the cause of packet loss was due to congestion only. The same protocol policies were incorporated in TCP/IP model with least changes initially. As this was unable to differentiate between losses due to congestion and due to corruption (BERs-random loss), it became the main cause of performance degradation of TCP on wireless links. This paper explores the way to add intelligence in TCP by modifying it to improve data rate in case of random losses which occur on wireless link frequently. Scenarios used to test algorithm are experiencing congestion and corruption loss individually as well as together. Standard BERs are used to measure performance. Modified protocol shows great performance improvement over unmodified in case of random loss as well as shows compatibility with an unmodified protocol in case of congestion loss only.
机译:过去几年,异构网络在整个Internet上显示出迅猛的发展势头。因此,TCP / IP协议套件最重要和不可分割的部分的有效性起着重要作用。异构网络形成中涉及的无线链路面临着严重的随机BER(误码率)问题,这会导致随机丢失。较旧的TCP(传输控制协议)是为有线链路而设计的,在这种链路中,丢包的原因仅是由于拥塞。相同的协议策略已合并到TCP / IP模型中,最初更改最少。由于这无法区分拥塞和损坏造成的损失(BERs随机损失),因此成为无线链路上TCP性能下降的主要原因。本文探讨了通过修改TCP以增加数据速率以在无线链路上频繁发生随机丢失的情况下增加智能的方法。用于测试算法的方案分别或同时遇到拥塞和损坏损失。标准BER用于衡量性能。修改后的协议在随机丢失的情况下显示出比未修改的协议更好的性能改进,并且仅在拥塞丢失的情况下显示与未修改的协议的兼容性。

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