无线传感器网络中保持阈值覆盖的节点替换策略

S. Parikh, V. Vokkarane, L. Xing, D. Kasilingam
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引用次数: 39

摘要

随着无线传感器网络的快速部署,出现了几种具有特定要求的新型传感应用。具体地说,目标跟踪应用基本上与传感站点的覆盖面积有关,以便准确地跟踪目标。我们考虑在无线传感器网络中保持最小阈值覆盖的问题,同时最大化网络寿命并最小化额外资源。我们假设当感知覆盖范围低于最小阈值覆盖范围时,网络已经失效。我们开发了三种节点替换策略来维持无线传感器网络的阈值覆盖。这些策略评估每个失效传感器节点的候选替换。根据不同的性能标准,每次网络中出现传感器节点故障时,我们的替换策略要么更换新的传感器,要么忽略故障事件。节点替换策略根据节点权重替换失效节点。节点权重的分配基于以下参数之一:感知覆盖的累计减少、每个节点的能量增加量和感知覆盖的局部减少。我们还实现了先故障先替换策略和不替换策略来比较性能结果。我们通过大量的模拟来评估不同的节点替换策略。我们的研究结果表明,给定一定数量的替换传感器节点,节点替换策略显著提高了网络寿命和覆盖质量,同时使传感器覆盖保持在预设的阈值左右。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Node-Replacement Policies to Maintain Threshold-Coverage in Wireless Sensor Networks
With the rapid deployment of wireless sensor networks, there are several new sensing applications with specific requirements. Specifically, target tracking applications are fundamentally concerned with the area of coverage across a sensing site in order to accurately track the target. We consider the problem of maintaining a minimum threshold-coverage in a wireless sensor network, while maximizing network lifetime and minimizing additional resources. We assume that the network has failed when the sensing coverage falls below the minimum threshold-coverage. We develop three node-replacement policies to maintain threshold-coverage in wireless sensor networks. These policies assess the candidature of each failed sensor node for replacement. Based on different performance criteria, every time a sensor node fails in the network, our replacement policies either replace with a new sensor or ignore the failure event. The node-replacement policies replace a failed node according to a node weight. The node weight is assigned based on one of the following parameters: cumulative reduction of sensing coverage, amount of energy increase per node, and local reduction of sensing coverage. We also implement a first-fail-first-replace policy and a no-replacement policy to compare the performance results. We evaluate the different node-replacement polices through extensive simulations. Our results show that given a fixed number of replacement sensor nodes, the node-replacement policies significantly increase the network lifetime and the quality of coverage, while keeping the sensing-coverage about a pre-set threshold.
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