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Decentralized fault detection and isolation in wireless structural health monitoring systems using analytical redundancy

机译:使用分析冗余的无线结构健康监测系统中的分散式故障检测和隔离

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One of the most critical issues when deploying wireless sensor networks for long-term structural health monitoring (SHM) is the correct and reliable operation of sensors. Sensor faults may reduce the quality of monitoring and, if remaining undetected, might cause significant economic loss due to inaccurate or missing sensor data required for structural assessment and life-cycle management of the monitored structure. This paper presents a fully decentralized approach towards autonomous sensor fault detection and isolation in wireless SHM systems. Instead of physically installing multiple redundant sensors in the monitored structure ("physical redundancy"), which would involve substantial penalties in cost and maintainability, the information inherent in the SHM system is used for fault detection and isolation ("analytical redundancy"). Unlike traditional centralized approaches, the analytical redundancy approach is implemented distributively: Partial models of the wireless SHM system, implemented in terms of artificial neural networks in an object-oriented fashion, are embedded into the wireless sensor nodes deployed for monitoring. In this paper, the design and the prototype implementation of a wireless SHM system capable of autonomously detecting and isolating various types of sensor faults are shown. In laboratory experiments, the prototype SHM system is validated by injecting faults into the wireless sensor nodes while being deployed on a test structure. The paper concludes with a discussion of the results and an outlook on possible future research directions.
机译:在部署无线传感器网络进行长期结构健康监测(SHM)时,最关键的问题之一是传感器的正确和可靠运行。传感器故障可能会降低监视质量,并且如果仍未被检测到,则可能会由于监视结构的结构评估和生命周期管理所需的传感器数据不准确或丢失而造成重大的经济损失。本文为无线SHM系统中的自主传感器故障检测和隔离提供了一种完全分散的方法。取代在监视的结构中物理安装多个冗余传感器(“物理冗余”)会导致成本和可维护性的重大损失,而是将SHM系统固有的信息用于故障检测和隔离(“分析冗余”)。与传统的集中式方法不同,分析冗余方法是分布式实现的:将无线SHM系统的部分模型(以面向对象的方式根据人工神经网络实现)嵌入到部署用于监视的无线传感器节点中。在本文中,示出了能够自主检测和隔离各种类型的传感器故障的无线SHM系统的设计和原型实现。在实验室实验中,原型SHM系统通过将故障注入到无线传感器节点中同时被部署在测试结构上来进行验证。本文最后对结果进行了讨论,并对未来可能的研究方向进行了展望。

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