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Effective Static and Adaptive Carrier Sensing for Dense Wireless CSMA Networks

机译:密集无线CSMA网络的有效静态和自适应载波侦听

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The increasingly dense deployments of wireless CSMA networks arising from applications of Internet-of-things call for an improvement to mitigate the interference among simultaneous transmitting wireless devices. For cost efficiency and backward compatibility with legacy transceiver hardware, a simple approach to address interference is by appropriately configuring the carrier sensing thresholds in wireless CSMA protocols, particularly in dense wireless networks. Most prior studies of the configuration of carrier sensing thresholds are based on a simplified conflict graph model, whereas this paper considers a realistic signal-to-interference-and-noise ratio model. We provide a comprehensive study for two effective wireless CSMA protocols: Cumulative-interference-Power Carrier Sensing and Incremental-interference-Power Carrier Sensing, in two aspects: (1) static approach that sets a universal carrier sensing threshold to ensure interference-safe transmissions regardless of network topology, and (2) adaptive approach that adjusts the carrier sensing thresholds dynamically based on the feedback of nearby transmissions. We also provide simulation studies to evaluate the starvation ratio, fairness, and goodput of our approaches.
机译:物联网应用引起的无线CSMA网络日益密集的部署要求进行改进以减轻同时传输的无线设备之间的干扰。为了节省成本并与传统收发器硬件向后兼容,一种简单的解决干扰的方法是在无线CSMA协议中,尤其是在密集无线网络中,适当配置载波侦听阈值。先前大多数有关载波侦听阈值配置的研究都是基于简化的冲突图模型,而本文则考虑了一种现实的信噪比模型。我们从两个方面对两种有效的无线CSMA协议进行了全面研究:累积干扰功率载波检测和增量干扰功率载波检测:(1)静态方法设置通用载波检测阈值以确保干扰安全传输(2)自适应方法可根据附近传输的反馈动态调整载波侦听阈值。我们还提供模拟研究,以评估我们的方法的饥饿比率,公平性和善意度。

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