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Link Quality-Based Channel Selection for Resource Constrained WSNs

机译:资源受限的无线传感器网络基于链路质量的信道选择

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Wireless Sensor Networks (WSN) consist of autonomous and intelligent nodes that combine sensing, actuation, and distributed computing with small size and low energy. One of the major issues is overcoming the non-ideality of unreliable real-world wireless links and avoiding interferences. This paper presents a link quality-based lightweight channel selection mechanism that discovers low interference and lightly loaded channels, thus improving latency, reliability, and throughput. The mechanism grades a channel from link reliability and changes the channel on interference. The proposed selection is suitable for resource and energy constrained WSNs as it does not require any extra communication or channel sensing. The channel selection is implemented with a low energy 2.4 GHz multihop mesh WSN using 1 mW transmission power. In practical measurements in a typical office environment with 100 mW WLAN interference, the selection had 96% average link reliability compared to the 84% of randomized channel selection.
机译:无线传感器网络(WSN)由自治和智能节点组成,这些节点结合了传感,驱动和分布式计算,体积小,能耗低。主要问题之一是克服不可靠的现实世界无线链路的不理想性并避免干扰。本文提出了一种基于链路质量的轻量级信道选择机制,该机制可发现低干扰和轻负载的信道,从而改善等待时间,可靠性和吞吐量。该机制根据链路可靠性对信道进行分级,并在发生干扰时更改信道。提议的选择适用于资源和能量受限的WSN,因为它不需要任何额外的通信或信道感测。信道选择是使用1 mW发射功率的低能耗2.4 GHz多跳网状WSN实现的。在具有100 mW WLAN干扰的典型办公环境中的实际测量中,与84%的随机信道选择相比,该选择具有96%的平均链路可靠性。

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