Modeling TCP over Ad hoc Wireless Networks using Multi-dimensional Markov Chains

Shyamnath Gollakota, B. Ramana, C. Murthy
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引用次数: 5

Abstract

The performance of transmission control protocol (TCP) over ad hoc wireless networks (or simply ad hoc networks) has been extensively studied through simulations by the research community. Although many theoretical models, such as [1], have been proposed for estimating the performance of TCP over wired networks, researchers have faced many difficulties in modeling TCP over ad hoc networks. These difficulties are mainly due to the behavior of the underlying physical and MAC layers. Recently, [2] attempted to solve this problem by simplifying the behavior of TCP, besides assuming that no packet losses occur. In this work, we attempt to provide a theoretical model for TCP by considering the main phases of TCP, namely the slow start phase and the congestion avoidance phase, thus providing a more accurate model that captures all of its main features. To the best of our knowledge, ours is the first model that considers the slow start phase while analyzing TCP's performance in ad hoc networks. We make use of multi-dimensional Markovian chains to model each of these phases. We then use the resulting steady state probabilities to estimate the goodput. Furthermore, the analysis is validated by comparing the theoretical and simulation results using various error models.
基于多维马尔可夫链的自组织无线网络TCP建模
在自组织无线网络(或简称自组织网络)上传输控制协议(TCP)的性能已经被研究团体通过仿真进行了广泛的研究。虽然已经提出了许多理论模型,如[1],用于估计有线网络上TCP的性能,但研究人员在对自组织网络上的TCP建模时面临许多困难。这些困难主要是由于底层物理层和MAC层的行为。最近,[2]试图通过简化TCP的行为来解决这个问题,除了假设没有丢包发生。在这项工作中,我们试图通过考虑TCP的主要阶段,即慢启动阶段和拥塞避免阶段,为TCP提供一个理论模型,从而提供一个更准确的模型,捕捉其所有主要特征。据我们所知,我们的模型是第一个在分析自组织网络中TCP性能时考虑慢启动阶段的模型。我们利用多维马尔可夫链来模拟这些阶段。然后,我们使用得到的稳态概率来估计商品。通过对不同误差模型下的理论和仿真结果的比较,验证了分析的正确性。
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