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Practical high-fidelity frequency-domain force and location identification

机译:实用的高保真频域力和位置识别

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Identifying the force information and location of an impact event is important for predicting and/or monitoring potential damage to the structures. Directly measuring the impact event and/or locating the impact force is not always possible due to the nature of the impact or the structure. In this work, a new force and location identification method is introduced which utilizes a spectral finite element method (SFEM) model of the structure. The identification technique is demonstrated and studied through its application to beam structures in order to identify impulsive loads. Wave propagation data collected with accelerometers placed on the structure are used in order to determine the impact information. When the impact force is applied between the accelerometers, the calculated force is distributed over the two accelerometer positions on either side of the impact location. The location identification process uses the distribution of the identified force information in order to locate the impact position. This method is performed by matching simulated data to the identified force data by tuning the impact location within the numerical model. When a sufficient level of agreement is achieved, the impact location is determined. In order to validate the results of the numerical studies, identified impact forces and locations are calculated for experimental data and good agreement is observed with the measured force information and impact locations. (C) 2015 Elsevier Ltd. All rights reserved.
机译:识别力信息和冲击事件的位置对于预测和/或监视结构的潜在损坏非常重要。由于冲击或结构的性质,并不总是可能直接测量冲击事件和/或定位冲击力。在这项工作中,引入了一种新的力和位置识别方法,该方法利用了结构的光谱有限元方法(SFEM)模型。通过将其应用到梁结构中来识别和研究识别技术,以识别脉冲载荷。为了确定冲击信息,使用了通过放置在结构上的加速度计收集的波传播数据。当在加速度计之间施加冲击力时,计算出的力会分布在冲击位置两侧的两个加速度计位置上。位置识别过程使用识别出的力信息的分布来定位冲击位置。通过调整数值模型中的冲击位置,将模拟数据与已标识的力数据进行匹配来执行此方法。当达成足够的协议水平时,确定影响位置。为了验证数值研究的结果,为实验数据计算了确定的冲击力和位置,并观察到与测得的力信息和冲击位置的一致性。 (C)2015 Elsevier Ltd.保留所有权利。

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