无线传感器网络的高能效容错路由

Khadidja Belkadi, M. Lehsaini
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引用次数: 1

摘要

容错特性是由网络在不因传感器故障而中断其功能的能力来定义的。在无线传感器网络(wsn)中,传感器节点容易由于各种原因而失效:能量耗尽,天气条件或动物造成的损坏等。此外,在无线传感器网络中,由传感器电池耗尽引起的故障是最主要的。因此,传感器能量的守恒可以防止其电池过早耗尽,从而增加传感器的使用寿命。为了保证这种网络的容错特性,容错协议使用了故障恢复算法。这种机制被认为是一种乐观的方法,它只在故障检测后执行;然后避免故障。此外,容错路由协议提供了尝试延迟或避免任何类型的故障的策略,以便尽可能长时间地保持网络功能。在本文中,我们提出了一种节能的基于集群的wsn容错路由协议,该协议旨在在故障发生之前覆盖故障,称为EE-FT协议。EE-FT协议根据伯努利可靠节点选择定律,选择最短的可靠路径将数据路由到基站。这些路径是由能量更高的碳氢化合物形成的。仿真结果表明,与其他协议相比,我们的方案在网络生存时间、端到端延迟和丢包率方面具有更好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy-efficient fault-tolerant routing for wireless sensor networks
The fault-tolerance property is defined by the ability of the network to maintain its functionality without interruption caused by sensor failure. In wireless sensor networks (WSNs), sensor nodes are prone to failures due to various causes: energy depletion, damage due to weather conditions or animals, etc. Moreover, in WSNs, failures caused by depletion of sensor batteries are the most predominant. Hence, the conservation of sensor energy prevents the premature extinction of their batteries, thus increasing the service life of the sensors. To ensure fault-tolerance property in this kind of networks, fault-tolerant protocols use fault recovery algorithms. This mechanism is considered to be an optimistic approach where it is only performed after fault detection; then to avoid breakdowns. Moreover, fault-tolerant routing protocols provide strategies that attempt to delay or avoid any type of failure in order to keep the network functional for as long as possible. In this paper, we propose an energy-efficient cluster-based fault-tolerant routing protocol for WSNs that aims to cover failures before they occur, called EE-FT protocol. EE-FT protocol chooses the shortest reliable paths for routing data to the base station based on Bernoulli's law for selecting reliable nodes. These paths are formed by CHs having more energy. Simulation results show that our proposal provides better performance in terms of network lifetime, end-to-end delay and packet loss rate compared to other protocols.
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