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A Survey of Adaptive Carrier Sensing Mechanisms for IEEE 802.11 Wireless Networks

机译:IEEE 802.11无线网络的自适应载波侦听机制研究

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摘要

This survey provides a comprehensive review of existing physical carrier sensing enhancements for IEEE 802.11 wireless networks. The original physical carrier sensing mechanism, used by wireless stations to gain access to the medium, is limited. Consequently, IEEE 802.11 networks are vulnerable to the presence of hidden and exposed nodes. Such nodes can significantly decrease system performance by increasing the collision rate and decreasing the channel spatial reuse. The value of the physical carrier sensing threshold is a key factor influencing the presence of hidden and exposed nodes in a wireless network. Several enhancements have been proposed in the literature, which attempt to mitigate the loss in performance caused by the limited carrier sensing. Firstly, the notion of an optimum carrier sensing threshold has been studied, and results indicate that it can be tuned to an optimum value. Building on the positive early results, further work was performed to develop mechanisms that dynamically adjust the threshold according to varying network conditions. This article presents an in-depth survey of the existing literature in the area, detailing the various approaches and their efficacy in addressing the problem of hidden and exposed nodes (and consequently increasing performance). It offers a comparison of the techniques, by evaluating the models, limitations, assumptions, and performance gains.
机译:该调查对IEEE 802.11无线网络的现有物理载波侦听增强功能进行了全面回顾。无线站用来访问介质的原始物理载波侦听机制受到限制。因此,IEEE 802.11网络容易受到隐藏和暴露节点的影响。这样的节点可以通过增加冲突率和减少信道空间复用来显着降低系统性能。物理载波侦听阈值的值是影响无线网络中隐藏节点和暴露节点的存在的关键因素。文献中已经提出了几种增强措施,它们试图减轻由于有限的载波侦听引起的性能损失。首先,研究了最佳载波侦听阈值的概念,结果表明可以将其调整为最佳值。在早期的积极成果的基础上,进行了进一步的工作,以开发根据变化的网络条件动态调整阈值的机制。本文对这一领域的现有文献进行了深入的调查,详细介绍了各种方法及其在解决隐藏节点和暴露节点(从而提高性能)方面的功效。通过评估模型,局限性,假设和性能增益,可以对这些技术进行比较。

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