Theoretical analysis of TCP throughput in adhoc wireless networks

Hannan Xiao, K. Chua, J. Malcolm, Ying Zhang
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引用次数: 13

Abstract

Researchers have used extensive simulation and experimental studies to understand TCP performance in adhoc wireless networks. In contrast, the objective of this paper is to theoretically analyze TCP performance in this environment. By examining the case of running one TCP session over a string topology, a system model for analyzing TCP performance in adhoc wireless networks is proposed, which considers packet buffering, nodes' contention for access to the wireless channel, and spatial reuse of the wireless channel. Markov chain modelling is applied to analyze this system model. Analytical results show that when the number of hops that the TCP session crosses is fixed, the TCP throughput is independent of the TCP congestion window size. When the number of hops increases from one, the TCP throughput decreases first, and then stabilizes when the number of hops becomes large. The analysis is validated by comparing the numerical and simulation results
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自组织无线网络中TCP吞吐量的理论分析
研究人员已经使用了大量的模拟和实验研究来了解TCP在自组织无线网络中的性能。相比之下,本文的目的是从理论上分析TCP在这种环境下的性能。通过研究在字符串拓扑上运行一个TCP会话的情况,提出了一个用于分析自组织无线网络中TCP性能的系统模型,该模型考虑了分组缓冲、节点对无线信道访问的争用以及无线信道的空间重用。采用马尔可夫链模型对系统模型进行了分析。分析结果表明,当TCP会话经过的跳数一定时,TCP吞吐量与TCP拥塞窗口大小无关。当跳数从1开始增加时,TCP吞吐量先降低,跳数增加后趋于稳定。通过数值与仿真结果的对比,验证了分析的正确性
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