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Inversely Proportional Transmission Power and Carrier Sense Threshold Setting for WLANs: Experimental Evaluation of Partial Settings

机译:WLAN的反比例传输功率和载波侦听阈值设置:部分设置的实验评估

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Inversely proportional setting (IPS) of the transmission power and carrier sense threshold (CST) to a portion of access points/stations is discussed through numerical evaluation and experiments to examine coexistence with legacy devices. In densely deployed wireless local area networks (WLANs), tuning CST is a promising approach to facilitate spatial channel reuse. Particularly, IPS of the transmission power and CST keeps symmetric carrier sensing relationship between any two transceivers, and thus provides a novel solution for the starvation due to asymmetric carrier sensing relationship. We first model the throughput of two transmitter-receiver pairs when applying IPS. In addition, through experiments, we verify the throughput model and confirm that IPS does not cause throughput starvation even when applying IPS only to some APs and/or STAs.
机译:通过数值评估和实验来检验与传统设备的共存性,讨论了对部分接入点/站点的发射功率和载波侦听阈值(CST)的反比例设置(IPS)。在密集部署的无线局域网(WLAN)中,调整CST是促进空间信道重用的一种有前途的方法。特别地,传输功率的IPS和CST保持任何两个收发器之间的对称的载波侦听关系,并且因此由于非对称的载波侦听关系而为饥饿提供了新颖的解决方案。我们首先在应用IPS时对两个收发器对的吞吐量进行建模。此外,通过实验,我们验证了吞吐量模型,并确认即使仅将IPS应用于某些AP和/或STA,IPS也不会导致吞吐量不足。

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