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An accurate two dimensional Markov chain model for IEEE 802.11n DCF

机译:IEEE 802.11n DCF的精确二维马尔可夫链模型

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According to the amendment 5 of the IEEE 802.11 standard, 802.11n still uses the distributed coordination function (DCF) access method as mandatory function in access points and wireless stations (essentially to assure compatibility with previous 802.11 versions). This article provides an accurate two dimensional Markov chain model to investigate the throughput performance of IEEE 802.11n networks when frame aggregation and block acknowledgements (Block-ACK) schemes are adopted. Our proposed model considered packet loss either from collisions or channel errors. Further, it took anomalous slots and the freezing of backoff counter into account. The contribution of this work was the analysis of the DCF performance under error-prone channels considering both 802.11n MAC schemes and the anomalous slot in the backoff process. To validate the accuracy of our proposed model, we compared its mathematical simulation results with those obtained using the 802.11n DCF in the network simulator (NS-2) and with other analytical models investigating the performance of 802.11n DCF. Simulation results proved the accuracy of our model.
机译:根据IEEE 802.11标准的修订5,802.11n仍将分布式协调功能(DCF)访问方法用作访问点和无线站中的强制功能(实质上是为了确保与以前的802.11版本兼容)。本文提供了一种精确的二维马尔可夫链模型,用于研究采用帧聚合和块确认(Block-ACK)方案时IEEE 802.11n网络的吞吐性能。我们提出的模型考虑了由于冲突或信道错误造成的数据包丢失。此外,它考虑了异常时隙和冻结退避计数器。这项工作的贡献在于分析了容易出错的信道下的DCF性能,同时考虑了802.11n MAC方案和退避过程中的异常时隙。为了验证我们提出的模型的准确性,我们将其数学仿真结果与使用网络模拟器(NS-2)中的802.11n DCF获得的数学仿真结果以及调查802.11n DCF性能的其他分析模型进行了比较。仿真结果证明了该模型的准确性。

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