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Analysis of Errors in the Estimation of Impact Positions in Plate-Like Structure through the Triangulation Formula by Piezoelectric Sensors Monitoring

机译:压电传感器监测通过三角剖分公式估算板状结构碰撞位置的误差分析

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摘要

The structural health monitoring (SHM) of critical structures is a complex task that involves the use of different sensors that are also aimed at the identification of the location of the impact point using ultrasonic sensors. For the evaluation of the impact position, reference is often made to the well-known triangulation method. This method requires the estimation of the differential time of arrival (DToA) and the group velocity of the Lamb waves propagating into a plate-like structure: the uncertainty of these two parameters is taken into consideration as main cause of localization error. The work proposes a simple laboratory procedure based on a set-up with a pair of sensors that are symmetrically placed with respect to the impact point, to estimate the uncertainty of the DToA and the propagation velocity estimates. According to a theoretical analysis of the error for the impact position, the experimental uncertainties of DToA and the propagation velocity are used to estimate the overall limit of the SHM system for the impact positioning. Because the error for the DToA estimate depends also on the adopted signal processing, three common methods are selected and compared: the threshold, the correlation method, and a likelihood algorithm. Finally, the analysis of the positioning error using multisensory configuration is reported as useful for the design of the SHM system.
机译:关键结构的结构健康状况监视(SHM)是一项复杂的任务,涉及使用不同的传感器,这些传感器还旨在使用超声波传感器来识别撞击点的位置。为了评估冲击位置,经常参考众所周知的三角测量方法。这种方法需要估计差分到达时间(DToA)和传播到板状结构中的兰姆波的群速度:将这两个参数的不确定性视为定位误差的主要原因。这项工作提出了一个简单的实验室程序,该程序基于具有一对相对于撞击点对称放置的传感器的设置,以估计DToA的不确定性和传播速度估计。根据对撞击位置误差的理论分析,利用DToA的实验不确定性和传播速度来估算SHM系统对撞击定位的总体极限。由于DToA估计的误差还取决于所采用的信号处理,因此选择并比较了三种常用方法:阈值,相关方法和似然算法。最后,据报道使用多传感器配置分析定位误差对于SHM系统的设计很有用。

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