A Cluster-Based Approach to Fault Detection and Recovery in Wireless Sensor Networks

G. Venkataraman, S. Emmanuel, S. Thambipillai
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引用次数: 39

Abstract

Wireless sensor networks (WSN) are inherently fault- prone due to the shared wireless communication medium and harsh environments in which they are deployed. Energy is one of the most constraining factors and node failures due to crash and energy exhaustion are commonplace. In order to avoid degradation of service due to faults, it is necessary for the WSN to be able to detect faults early and initiate recovery actions. In this paper we propose a localized cluster based method for fault detection and network connectivity recovery which is energy efficient and responsive. Extensive simulations show that our proposed algorithm with cluster size 20 enables the network to recover from faults in one fourth of the time consumed by fault tolerant clustering method (Gupta algorithm). Our proposed method is also shown to consume less energy than crash faults identification method. The proposed algorithm lends well to the continuous operation and maintenance of robust sensor networks.
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基于聚类的无线传感器网络故障检测与恢复方法
无线传感器网络(WSN)由于采用共享的无线通信介质和所处的恶劣环境,具有固有的故障易感性。能量是最大的限制因素之一,由于崩溃和能量耗尽而导致的节点故障是常见的。为了避免故障导致的服务降级,需要WSN能够及早发现故障并发起恢复动作。本文提出了一种基于局部聚类的故障检测和网络连接恢复方法,该方法既节能又响应迅速。大量的仿真结果表明,当聚类大小为20时,网络从故障中恢复的时间仅为容错聚类方法(Gupta算法)的四分之一。与碰撞故障识别方法相比,该方法消耗的能量更少。该算法适用于鲁棒传感器网络的连续运行和维护。
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