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Statistical Approach for Vibration-Based Damage Localization in Civil Infrastructures Using Smart Sensor Networks

机译:智能传感器网络民用基础设施振动损伤定位的统计方法

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One of the most discussed aspects of vibration-based structural health monitoring (SHM) is how to link identified parameters with structural health conditions. To this aim, several damage indexes have been proposed in the relevant literature based on typical assumptions of the operational modal analysis (OMA), such as stationary excitation and unlimited vibration record. Wireless smart sensor networks based on low-power electronic components are becoming increasingly popular among SHM specialists. However, such solutions are not able to deal with long data series due to energy and computational constraints. The decentralization of processing tasks has been shown to mitigate these issues. Nevertheless, traditional damage indicators might not be suitable for onboard computations. In this paper, a robust damage index is proposed based on a damage sensitive feature computed in a decentralized fashion, suitable for smart wireless sensing solutions. The proposed method is tested on a numerical benchmark and on a real case study, namely the S101 bridge in Austria, a prestressed concrete bridge that has been artificially damaged for research purposes. The results obtained show the potential of the proposed method to monitor the conditions of civil infrastructures.
机译:基于振动的结构健康监测(SHM)的最多讨论的方面之一是如何将识别的参数与结构健康状况联系起来。为此目的,基于操作模态分析(OMA)的典型假设,如静止激励和无限振动记录,在相关文献中提出了几种伤害指标。基于低功耗电子元件的无线智能传感器网络在SHM专家中越来越受欢迎。然而,由于能量和计算限制,这种解决方案无法处理长数据系列。已显示处理任务的权力下放来减轻这些问题。尽管如此,传统的伤害指标可能不适合船上计算。本文基于以分散方式计算的损伤敏感特征提出了一种强大的损伤指数,适用于智能无线传感解决方案。该方法在数值基准测试和实际研究中进行了测试,即奥地利的S101桥梁,这是一种用于研究目的的预应力混凝土桥。得到的结果显示了监测民事基础设施条件的提出方法的潜力。

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