无线传感器网络区域覆盖优化

Nejla Essaddi, Mohamed Hamdi, S. Habib, N. Boudriga
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引用次数: 0

摘要

自20世纪90年代中期以来,无线传感器网络(WSNs)引起了人们极大的研究兴趣。无线通信和微型机电系统(mems)的进步使低成本,低功耗,多功能,微型传感器节点的发展成为可能,这些传感器节点可以感知环境,执行数据处理,并在短距离内不受限制地相互通信。部署在wsn上的大多数应用程序都有很强的覆盖要求,特别是那些与检测和跟踪分布式事件相关的应用程序。此外,这些事件通过一组汇聚节点转发到分析中心,这些汇聚节点在本地收集从基本传感器发出的数据。本文提出了一种适应监控区域内部署多个汇聚节点情况的覆盖控制方案。与旨在保证均匀密度分布的传统覆盖方法相反,我们根据传感器节点与汇聚节点的接近程度来增加覆盖程度。为了降低优化过程的复杂性,我们考虑了一个离散的搜索空间,将被监视对象构造成一个统一的网格。然后使用进化算法来选择是否激活网格中每个单元中的传感器节点。为了评估该策略的性能,我们进行了一组仿真,主要是在确保多目标跟踪方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimizing area coverage in Wireless Sensor Networks
Wireless Sensor Networks (WSNs) have inspired tremendous research interest in since the mid-1990s. Advancement in wireless communication and miniature electromechanical systems (MEMSs) have enabled the development of low-cost, low power, multi-functional, tiny sensor nodes that can sense the environment, perform data processing, and communicate with each other untethered over short distances. Most of the applications deployed over WSNs require strong coverage requirements, especially those related to the detection and tracking of distributed events. Moreover, these events are forwarded to the analysis center(s) through a set of sink nodes that locally gather data emanating from the elementary sensors. This paper proposes a coverage control scheme that adapts to the situation where multiple sink nodes are deployed within the monitored area. On the opposite to traditional coverage approaches that aim at guaranteeing a uniform density distribution, we place the sensor nodes in a manner that increases the coverage degree according to their proximity to a sink node. To reduce the complexity of the optimization process, we consider a discrete search space by structuring the monitored into a uniform grid. An evolutionary algorithm is then used to choose whether to activate or not sensor nodes within every cell of the grid. We conducted a set of simulations in order to evaluate the performance of the proposed strategy, mainly in ensuring multi-target tracking.
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