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A novel fault detection and recovery technique for cluster‐ based underwater wireless sensor networks

机译:基于集群的水下无线传感器网络的新型故障检测和恢复技术

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The performance of underwater wireless sensor network gets affected by the working of a cluster in the network. The cluster head (CH) or cluster member (CM) fails because of energy depletion or hardware errors that increase delay and message overhead of the network. To recover the affected cluster, a technique is required to identify the failed CH or CM. We propose a fault detection and recovery technique (FDRT) for a cluster-based network in this paper. Primarily, while selecting the CH, a backup cluster head (BCH) is selected using fuzzy logic technique based on parameters such as node density, residual energy, load, distance to sink, and link quality. Then, failure of CH, BCH, and CM is detected. If fault is detected at CH, then the BCH will start performing the task of failed CH. Simultaneously, when BCH failed, any other CM will be elected as BCH. If any of the CM appears to be nonperforming, then CH will detect the communication failure and request BCH to transfer the data from the failed CM to CH. The comparison of proposed FDRT is performed with existing FDRTs EDETA, RCH, and SDMCGC on the basis of packet drop, end-to-end delay, energy consumption, and delivery ratio of data packets. By simulation results, it is shown that FDRT for cluster-based underwater wireless sensor network results in quicker detection of failures and recovery of the network along with the reduction in energy consumption, thereby increasing the lifespan of the network.
机译:水下无线传感器网络的性能受到网络中群集工作的影响。群集头(CH)或群集成员(CM)发生故障,原因是能量消耗或硬件错误增加了网络的延迟和消息开销。要恢复受影响的群集,需要一种技术来识别故障的CH或CM。本文提出了一种基于集群的网络故障检测与恢复技术(FDRT)。首先,在选择CH的同时,基于诸如节点密度,剩余能量,负载,到汇聚的距离和链路质量之类的参数,使用模糊逻辑技术来选择备用簇头(BCH)。然后,检测到CH,BCH和CM的故障。如果在CH处检测到故障,则BCH将开始执行失败的CH任务。同时,当BCH失败时,任何其他CM将被选为BCH。如果任何CM均表现不佳,则CH将检测到通信故障,并请求BCH将数据从发生故障的CM传输到CH。建议的FDRT与现有FDRT EDETA,RCH和SDMCGC的比较是基于数据包丢失,端到端延迟,能耗和数据包的传递比率进行的。通过仿真结果表明,基于集群的水下无线传感器网络的FDRT可以更快地检测故障并恢复网络,同时减少能耗,从而延长了网络的使用寿命。

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