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A distributed self-healing coverage hole detection and repair scheme for mobile wireless sensor networks

机译:用于移动无线传感器网络的分布式自愈覆盖孔检测和修复方案

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摘要

The most fundamental task of the wireless sensor network (WSN) is to monitor a specified region of interest with sufficient sensor coverage. This task is jeopardized when coverage holes appear after the network's deployment. The emergence of coverage holes is unavoidable for many reasons such as sensor node energy depletion, physical damage, or external attacks. Therefore, it is important to have an ongoing mechanism for coverage maintenance because coverage holes can have debilitating effects on network performance if left unattended.Existing research into coverage hole repair tend to suffer from several shortcomings such as high energy consumption of mobile nodes and inaccurate assumptions about the coverage hole model. Furthermore, many solutions rely on the availability of redundant nodes or deploying new nodes in the network, which is not always feasible. We present a novel distributed self-healing algorithm called distributed hole detection and repair (DHDR), that simultaneously handles both hole detection and repair using only nodes already deployed in the network. Our algorithm can dynamically detect a coverage hole as it occurs, and accurately estimate its position and size. The algorithm selects suitable nodes from the vicinity which will maximize coverage and minimize energy consumption by sharing information and coordinating their movements. The selected nodes relocate in a way that restores the void area of a hole without disrupting their existing coverage or connectivity.The performance of the proposed approach is evaluated through simulation experiments. It is compared against two state-of-the-art algorithms and has been shown to outperform both in terms of improved coverage, more stable connectivity, and lower energy consumption.
机译:无线传感器网络(WSN)最基本的任务是通过足够的传感器覆盖监测指定的感兴趣区域。当网络部署后覆盖孔出现覆盖孔时,此任务会受到损害。由于许多原因,覆盖孔的出现是不可避免的,例如传感器节点能量消耗,物理损坏或外部攻击。因此,对于覆盖维护有持续的机制非常重要,因为覆盖孔可以对网络性能的衰弱影响,如果留下无人看管。进入覆盖孔修复,往往会遭受几种缺点,例如移动节点的高能量消耗和不准确的假设关于覆盖孔模型。此外,许多解决方案依赖于冗余节点的可用性或部署网络中的新节点,这并不总是可行的。我们介绍了一种名为分布式空穴检测和修复(DHDR)的新型分布式自修复算法,它同时使用已经部署在网络中的节点来处理空穴检测和修复。我们的算法可以在发生时动态检测覆盖孔,并准确估计其位置和尺寸。该算法从附近选择合适的节点,这将通过共享信息和协调其动作来最大限度地提高覆盖率并最小化能量消耗。所选择的节点以恢复孔的空隙区域的方式重新定位,而不会破坏其现有的覆盖率或连接。通过模拟实验评估所提出的方法的性能。将其与两个最先进的算法进行比较,并且已经在改进的覆盖范围内,更稳定的连通性和更低的能量消耗方面表现出优于胜过。

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