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A Simple and Practical Scheme Using Multiple Channels for Improving System Spectral Efficiency of Highly Dense Wireless LANs

机译:一种简单实用的方案,使用多个通道提高高度密集的无线局域网的系统谱效率

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As the density of wireless LANs increases, performance degradation caused by hidden terminals and exposed terminals becomes significant. These problems come from carrier sensing based medium access control used in current wireless LANs. Hidden terminals are created if carrier sense threshold is too high, whereas exposed terminals are created if carrier sense threshold is too low. A good threshold depends on how far nodes are placed from their destinations, but that cannot be controlled by the system. In this paper, we propose a simple scheme that makes use of multiple channels. Multiple channels could be utilized by equipping multiple radios or using advanced hardware such as SDR to divide a single channel into multiple channels. Nodes are assigned channels based on their estimated distance from the AP. Once the assignment is done, carrier sense threshold for the channel is selected so that as many concurrent transmissions take place as possible, while preventing hidden terminals. Simulation results show that the proposed mechanism achieves significantly higher throughput without causing starvation at the edge nodes.
机译:随着无线局势的密度增加,隐藏端子和暴露终端引起的性能下降变得显着。这些问题来自当前无线局域网中使用的基于载波感测的媒体访问控制。如果载波侦听阈值太高,则会创建隐藏端子,​​而如果载波侦听阈值太低,则会创建暴露的终端。良好的阈值取决于从目的地置于目的地的距离,但不能由系统控制。在本文中,我们提出了一种利用多个通道的简单方案。可以通过配备多个无线电或使用诸如SDR的高级硬件来利用多个通道,以将单个通道划分为多个通道。节点基于与AP的估计距离分配信道。一旦完成了分配,则选择频道的载波感测阈值,以便尽可能多地进行许多并发传输,同时防止隐藏终端。仿真结果表明,该机制达到了明显较高的吞吐量,而不会导致边缘节点处的饥饿。

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