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Empirical mode decomposition of the acceleration response of a prismatic beam subject to a moving load to identify multiple damage locations

机译:载荷作用下棱柱梁加速度响应的经验模式分解,以识别多个损伤位置

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摘要

Empirical Mode Decomposition (EMD) is a technique that converts the measured signal into a number of basic functions known as Intrinsic Mode Functions (IMFs). The EMD-based damage detection algorithm relies on the principle that a sudden loss of stiffness in a structural member will cause a discontinuity in the measured response that can be detected through a distinctive spike in the filtered IMF. Recent studies have shown that applying EMD to the acceleration response, due to the crossing of a constant load over a beam finite element model, can be used to detect a single damaged location. In this paper, the technique is further tested using simulations of a beam with multiple damaged sections. The use of a moving average filter on the acceleration response, prior to applying EMD, is also investigated. A bridge deck is modelled as a series of discretized beam elements where a loss of stiffness is introduced at some random locations. The ability of the EMD algorithm to detect more than one damaged section is analysed for a variety of scenarios including a range of bridge lengths, speeds of the moving load and noise levels. The influence of the number of measurement points and their distance to the damaged locations on the accuracy of the predicted damage is also discussed.
机译:经验模式分解(EMD)是一种将测量的信号转换为称为基本模式函数(IMF)的许多基本函数的技术。基于EMD的损坏检测算法基于以下原理:结构构件的刚度突然损失会导致所测响应的不连续性,该不连续性可以通过过滤后的IMF中的明显尖峰来检测。最近的研究表明,由于在梁有限元模型上遇到了恒定的载荷,因此将EMD应用于加速度响应可用于检测单个损坏的位置。在本文中,该技术将通过对具有多个损坏截面的光束进行仿真来进一步测试。还研究了在应用EMD之前,对加速度响应使用移动平均滤波器。桥面板被建模为一系列离散的梁单元,其中在某些随机位置引入了刚度损失。针对多种情况,分析了EMD算法检测一个以上损坏部分的能力,其中包括桥的长度范围,移动负载的速度和噪声水平。还讨论了测量点的数量及其到损坏位置的距离对预测损坏的准确性的影响。

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