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A hybrid system identification methodology for wireless structural health monitoring systems based on dynamic substructuring

机译:基于动态子结构的无线结构健康监测系统的混合系统识别方法

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System identification has been employed in numerous structural health monitoring (SHM) applications. Traditional system identification methods usually rely on centralized processing of structural response data to extract information on structural parameters. However, in wireless SHM systems the centralized processing of structural response data introduces a significant communication bottleneck. Exploiting the merits of decentralization and on-board processing power of wireless SHM systems, many system identification methods have been successfully implemented in wireless sensor networks. While several system identification approaches for wireless SHM systems have been proposed, little attention has been paid to obtaining information on the physical parameters (e.g. stiffness, damping) of the monitored structure. This paper presents a hybrid system identification methodology suitable for wireless sensor networks based on the principles of component mode synthesis (dynamic substructuring). A numerical model of the monitored structure is embedded into the wireless sensor nodes in a distributed manner, i.e. the entire model is segmented into sub-models, each embedded into one sensor node corresponding to the substructure the sensor node is assigned to. The parameters of each sub-model are estimated by extracting local mode shapes and by applying the equations of the Craig-Bampton method on dynamic substructuring. The proposed methodology is validated in a laboratory test conducted on a four-story frame structure to demonstrate the ability of the methodology to yield accurate estimates of stiffness parameters. Finally, the test results are discussed and an outlook on future research directions is provided.
机译:系统识别已在许多结构健康监测(SHM)应用中使用。传统系统识别方法通常依赖于结构响应数据的集中处理,以提取有关结构参数的信息。然而,在无线SHM系统中,结构响应数据的集中处理引入了重要的通信瓶颈。利用无线SHM系统的分散和板载处理能力的优点,许多系统识别方法已在无线传感器网络中成功实现。虽然已经提出了几种系统识别无线SHM系统的方法,但是已经注意到了解有关受监控结构的物理参数(例如刚度,阻尼)的信息。本文介绍了一种基于组件模式合成原理(动态子结构)的无线传感器网络的混合系统识别方法。监视结构的数值模型以分布式方式嵌入到无线传感器节点中,即,将整个模型分段为子模型,每个模型嵌入到与传感器节点分配的子结构对应的一个传感器节点中。通过提取本地模式形状和应用CRAIG-BAMPTON方法的方程来估计每个子模型的参数。所提出的方法在对四层框架结构上进行的实验室测试中验证,以证明方法的能力屈服于刚度参数的准确估计。最后,讨论了测试结果,并提供了未来研究方向的前景。

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