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Modeling and Analyzing the Optimal Contention Window Size for Distributed Synchronization in Ad Hoc Networks

机译:Ad Hoc网络中用于分布式同步的最佳竞争窗口大小的建模和分析

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摘要

Contention-based distributed synchronization (CDS) protocols, which first standardized in the IEEE 802.11 power saving mode (PSM), have been widely used in wireless ad hoc networks. The time required to complete the synchronization progress, i.e., synchronization efficiency, is obviously an important performance metrics for CDS protocols. However, few attempts have been focusing on modeling and analyzing the synchronization efficiency of the CDS protocols. In this letter, we present a 2-D Markov chain model for the CDS scheme of the IEEE 802.11 PSM. The purpose of our model is to determine the relationship between the time required to complete the synchronization process and the value of the contention parameter, i.e., the contention window size. Through modeling, we derive the optimal values of the contention window size to achieve the minimum synchronization time at different network scales. We also validate the accuracy of our model by comparing the analytical results with that obtained by means of simulations.
机译:首先在IEEE 802.11省电模式(PSM)中标准化的基于竞争的分布式同步(CDS)协议已广泛用于无线ad hoc网络中。完成同步进度所需的时间,即同步效率,显然是CDS协议的重要性能指标。但是,很少有尝试集中于对CDS协议的同步效率进行建模和分析。在这封信中,我们为IEEE 802.11 PSM的CDS方案提供了一个二维Markov链模型。我们模型的目的是确定完成同步过程所需的时间与竞争参数的值(即竞争窗口大小)之间的关系。通过建模,我们得出了竞争窗口大小的最佳值,以在不同的网络规模上获得最小的同步时间。我们还通过将分析结果与通过仿真获得的结果进行比较,来验证模型的准确性。

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    《IEEE communications letters》 |2017年第2期|390-393|共4页
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