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Distributed Fault Detection Based on Credibility and Cooperation for WSNs in Smart Grids

机译:智能网络中基于信誉与协作的WSN分布式故障检测

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Due to the increasingly important role in monitoring and data collection that sensors play, accurate and timely fault detection is a key issue for wireless sensor networks (WSNs) in smart grids. This paper presents a novel distributed fault detection mechanism for WSNs based on credibility and cooperation. Firstly, a reasonable credibility model of a sensor is established to identify any suspicious status of the sensor according to its own temporal data correlation. Based on the credibility model, the suspicious sensor is then chosen to launch fault diagnosis requests. Secondly, the sending time of fault diagnosis request is discussed to avoid the transmission overhead brought about by unnecessary diagnosis requests and improve the efficiency of fault detection based on neighbor cooperation. The diagnosis reply of a neighbor sensor is analyzed according to its own status. Finally, to further improve the accuracy of fault detection, the diagnosis results of neighbors are divided into several classifications to judge the fault status of the sensors which launch the fault diagnosis requests. Simulation results show that this novel mechanism can achieve high fault detection ratio with a small number of fault diagnoses and low data congestion probability.
机译:由于传感器在监视和数据收集中起着越来越重要的作用,因此准确,及时的故障检测是智能电网中无线传感器网络(WSN)的关键问题。本文提出了一种基于信誉与合作的新型无线传感器网络分布式故障检测机制。首先,建立传感器的合理可信度模型,以根据其自身的时间数据相关性识别传感器的任何可疑状态。然后,基于信誉模型,选择可疑传感器以启动故障诊断请求。其次,讨论了故障诊断请求的发送时间,避免了不必要的诊断请求带来的传输开销,提高了基于邻居协作的故障检测效率。根据邻居传感器的状态分析其诊断结果。最后,为了进一步提高故障检测的准确性,将邻居的诊断结果分为几种类别,以判断发出故障诊断请求的传感器的故障状态。仿真结果表明,这种新颖的机制可以实现较高的故障检测率,并且故障诊断次数少,数据拥塞概率低。

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