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Analysis of asymmetric hidden node problem in IEEE 802.11ax heterogeneous WLANs

机译:IEEE 802.11ax异构WLAN中的不对称隐藏节点问题分析

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In this paper, we investigate issues of fairness and spatial reuse in heterogeneous wireless local area networks (WLANs) based on IEEE 802.11ax. According to discussions in the evolving IEEE 802.11ax standardization, the value of carrier sensing threshold (CSTH) needs to be increased, in order to improve spectral efficiency of WLANs by means of spatial reuse. We reveal a serious problem of unfairness, referred to as asymmetric hidden node problem, arising when legacy devices that have smaller CSTH coexist and compete for channel access with new devices that have larger CSTH; legacy devices hardly access the wireless channel and the channel is mostly occupied by new devices. The reasons of this problem are analyzed from two viewpoints of asymmetry of carrier sensing and unintended operation of binary exponential backoff. We also show that this problem is not effectively resolved by the ready-to-send/clear-to-send (RTS/CTS) mechanism, which is a well-known solution to the hidden node problem. Via simulation study, we validate this problem and evaluate the trade-off between spatial reuse and fairness with respect to the value of CSTH.
机译:在本文中,我们根据IEEE 802.11AX调查异构无线局域网(WLAN)中的公平性和空间重用问题。根据进化IEEE 802.11AX标准化的讨论,需要增加载波感测阈值(CSTH)的值,以便通过空间重用来提高WLAN的光谱效率。我们揭示了一个严重的不公平问题,被称为不对称隐藏节点问题,当具有较小的CSTH共存的传统设备并竞争具有较大CSTH的新设备的频道访问时,产生的遗留设备产生的不对称节点问题。遗留设备几乎无法访问无线信道,并且频道主要由新设备占用。从载波传感的不对称性的两种观点来分析这个问题的原因,并意外反向反馈的意外操作。我们还表明,通过即可发送/清除发送(RTS / CTS)机制没有有效地解决此问题,这是隐藏节点问题的众所周知的解决方案。通过仿真研究,我们验证了这个问题,并评估了与CSTH值的空间重用和公平之间的权衡。

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