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Fault resilience in sensor networks: Distributed node-disjoint multi-path multi-sink forwarding

机译:传感器网络中的故障恢复能力:分布式节点不相交的多路径多宿转发

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Sensor network deployed for the critical infrastructure monitoring requires high degree of reliability in sensory data gathering, in spite of arbitrary node or sink failures. This paper proposes a robust data gathering scheme specially designed to provide guaranteed delivery of the sensory data for applications on the critical infrastructure monitoring. Redundancy in a sensor network, in terms of both the number of deployed sensors and the amount of duplicate data delivery, is explored to design an effective protocol that ensures the reliable data delivery while assuring the timeliness, connectivity and the sensing coverage. A set of active sensors is selected from all the sensors deployed, based on the network connectivity and the sensing coverage criteria that participates in the data forwarding process. Rest of the sensors go to the sleep state, and act as a replacement on the failure of an active sensor. The proposed protocol aims to find out multiple node-disjoint paths to multiple sinks, so that the loss of connectivity in one path due to node failure does not disrupt application services. The effectiveness of the proposed scheme has been analyzed using simulation results, and compared with other protocols proposed in the literature for reliable data delivery. (C) 2015 Elsevier Ltd. All rights reserved.
机译:尽管存在任意节点或接收器故障,但部署用于关键基础架构监视的传感器网络仍需要高度可靠的传感数据收集。本文提出了一个健壮的数据收集方案,该方案专门设计用于为关键基础设施监视中的应用程序提供保证的感觉数据传递。探索传感器网络中的冗余性,从部署的传感器数量和重复数据传递的数量来看,旨在设计一种有效的协议,以确保可靠的数据传递,同时确保及时性,连接性和感测范围。基于网络连接和参与数据转发过程的感测范围标准,从部署的所有传感器中选择一组活动传感器。其余传感器进入睡眠状态,并充当活动传感器故障的替代品。提出的协议旨在找出通向多个接收器的多个节点不相交的路径,从而使由于节点故障而导致的一条路径中的连接性丢失不会中断应用程序服务。使用仿真结果分析了该方案的有效性,并与文献中提出的其他协议进行了比较,以实现可靠的数据传递。 (C)2015 Elsevier Ltd.保留所有权利。

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