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Deploying wireless sensor networks with fault-tolerance for structural health monitoring

机译:部署具有容错能力的无线传感器网络以进行结构健康监测

摘要

Structural health monitoring (SHM) systems are implemented for structures (e.g., bridges, buildings) to monitor their operations and health status. Wireless sensor networks (WSNs) are becoming an enabling technology for SHM applications that are more prevalent and more easily deployable than traditional wired networks. However, SHMbrings new challenges to WSNs: engineering-driven optimal deployment, a large volume of data, sophisticated computing, and so forth. In this paper, we address two important challenges: sensor deployment and decentralized computing. We propose a solution, to deploy wireless sensors at strategic locations to achieve the best estimates of structural health (e.g., damage) by following the widely used wired sensor system deployment approach from civil/structural engineering. We found that faults (caused by communication errors, unstable connectivity, sensor faults, etc.) in such a deployed WSN greatly affect the performance of SHM. To make the WSN resilient to the faults, we present an approach, called FTSHM (fault-tolerance in SHM), to repair the WSN and guarantee a specified degree of fault tolerance. FTSHM searches the repairing points in clusters in a distributed manner, and places a set of backup sensors at those points in such a way that still satisfies the engineering requirements. FTSHM also includes an SHM algorithm suitable for decentralized computing in the energy-constrained WSN, with the objective of guaranteeing that the WSN for SHM remains connected in the event of a fault, thus prolonging the WSN lifetime under connectivity and data delivery constraints. We demonstrate the advantages of FTSHM through extensive simulations and real experimental settings on a physical structure.
机译:为建筑物(例如桥梁,建筑物)实施了结构健康监控(SHM)系统,以监控其运行和健康状况。无线传感器网络(WSN)正在成为SHM应用程序的使能技术,与传统的有线网络相比,SHM应用程序更普遍且更易于部署。但是,SHM给WSN带来了新的挑战:工程驱动的最佳部署,大量数据,复杂的计算等等。在本文中,我们解决了两个重要的挑战:传感器部署和分散计算。我们提出一种解决方案,通过遵循土木/结构工程中广泛使用的有线传感器系统部署方法,在关键位置部署无线传感器,以对结构健康状况(例如损坏)做出最佳估计。我们发现,这样部署的WSN中的故障(由通信错误,不稳定的连接,传感器故障等引起)极大地影响了SHM的性能。为了使WSN能够容错,我们提出了一种称为FTSHM(SHM中的容错)的方法来修复WSN并确保指定程度的容错。 FTSHM以分布式方式搜索群集中的维修点,并在一组维修点处放置一组备用传感器,从而仍能满足工程要求。 FTSHM还包括一种适用于能量受限的WSN中的分散计算的SHM算法,目的是确保发生故障时用于SHM的WSN保持连接状态,从而在连接性和数据传递约束下延长WSN寿命。我们通过在物理结构上进行广泛的模拟和实际实验设置来证明FTSHM的优势。

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