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Autonomous Channel Switching: Towards Efficient Spectrum Sharing for Industrial Wireless Sensor Networks

机译:自主通道切换:面向工业无线传感器网络的高效频谱共享

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摘要

Industrial wireless sensor networks (IWSNs) are committed to bring the industry automation into the era of Industry 4.0 by providing the ubiquitous perception to improve the production efficiency. However, the proliferation of wireless devices in industrial applications makes the spectrum sharing in limited industrial, scientific, and medical (ISM) band a challenging problem. In this paper, it is concerned with the intrinsic impact of the evenness of spectrum usage on the spectrum sharing performance in terms of channel accessing probability, spectrum utilization, and fairness of spectrum usage. In order to explore the explicit relationship between the evenness and spectrum sharing performance, a new concept of equilibrium is first defined to represent the achievable best evenness of spectrum usage. Then, a set of rules called local equilibrium-guided autonomous channel switching (LEQ-AutoCS) is devised, with which each accessed sensor autonomously equalizes the local channel occupations within its range of spectrum sensing without overhead on exchanging the sensors’ spectrum sensing reports. It is further proved that the equilibrium can be achieved by this concessive manner. Theoretical analysis and experimental results demonstrate that the proposed LEQ-AutoCS rules provide higher utilization and fairness of spectrum usage comparing to the existing spectrum access approaches. Moreover, it is shown that LEQ-AutoCS rules assist the system to reduce the spectrum access delay to 1/2 of CSMA-based systems and 1/50 of TDMA-based systems, respectively.
机译:工业无线传感器网络(IWSN)致力于通过提供普遍存在的看法来提高生产效率,从而将工业自动化带入工业4.0时代。但是,工业应用中无线设备的激增使有限的工业,科学和医学(ISM)频段中的频谱共享成为一个具有挑战性的问题。本文从信道访问概率,频谱利用率和频谱使用公平性的角度,关注频谱使用均匀性对频谱共享性能的内在影响。为了探索均匀度和频谱共享性能之间的显式关系,首先定义了一个新的均衡概念,以表示可达到的最佳频谱使用均匀度。然后,制定了一套称为局部平衡引导自主通道切换(LEQ-AutoCS)的规则,通过该规则,每个访问的传感器都可以在其频谱感知范围内自动均衡本地信道占用,而无需交换传感器频谱感知报告的开销。进一步证明,通过这种让步方式可以实现平衡。理论分析和实验结果表明,与现有的频谱访问方法相比,所提出的LEQ-AutoCS规则可提供更高的频谱利用率和公平性。而且,表明LEQ-AutoCS规则帮助系统将频谱访问延迟分别减小到基于CSMA的系统的1/2和基于TDMA的系统的1/50。

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