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Analysis of Inversely Proportional Carrier Sense Threshold and Transmission Power Setting Based on Received Power for IEEE 802.11ax

机译:IEEE 802.11ax基于接收功率的反比例载波侦听阈值和传输功率设置分析

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In this study, we conducted an analysis of the system performance of a wireless local area network in which access points (APs) dynamically adjust the carrier sense threshold (CST) based on the individual average received power to determine the optimal CST. Adjustment of the CST is a promising approach to improve spatial reuse and proposed for IEEE 802.11ax standard. Here, assuming to adopt the inversely proportional setting of the CST and transmission power, we can make the carrier sensing relationship symmetric, restraining throughput starvation. This paper analytically derives the density of successful transmissions (DST) on the basis of stochastic geometry. The DST is a system performance metric which expresses the number of APs whose transmission is successful based on signal-to-interference-plus-noise power ratio. We show that both results of the analytically derived DST and Monte Carlo simulation have the same trend. From the perspective of the derived DST, the optimal parameter setting is also discussed.
机译:在这项研究中,我们对无线局域网的系统性能进行了分析,其中接入点(AP)根据各个平均接收功率动态调整载波侦听阈值(CST),以确定最佳CST。调整CST是改善空间复用的一种有前途的方法,并针对IEEE 802.11ax标准提出了这一建议。在这里,假设采用CST与发射功率成反比的设置,我们可以使载波侦听关系对称,从而抑制吞吐量不足。本文根据随机几何学分析得出成功传输的密度(DST)。 DST是一种系统性能指标,它根据信号与干扰加噪声的功率比来表示其传输成功的AP的数量。我们表明,解析得出的DST和蒙特卡洛模拟的结果都具有相同的趋势。从导出的DST的角度,还讨论了最佳参数设置。

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