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首页> 外文期刊>Smart Materials & Structures >Parallel spectral element method for guided wave based structural health monitoring
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Parallel spectral element method for guided wave based structural health monitoring

机译:基于波的结构健康监测的并行光谱元件方法

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摘要

Parallel implementation of the spectral element method is developed in which flat shell spectral elements are utilized for spatial domain representation. The implementation is realised by using Matlab Parallel Computing Toolbox and optimized for Graphics Processing Unit (GPU) computation. In this way, considerable computation speed-up can be achieved in comparison to computation on conventional processors. The implementation includes an interpolation of wavefield on a uniform grid. The method was tested on experimental data set available on the Open Guided Waves platform. The qualitative comparison was performed on full wavefield data, whereas quantitative comparison was made directly on signals of propagating Lamb waves registered by piezoelectric transducers. In both cases, good agreement between numerical and experimental results was achieved. The proposed method is particularly useful for structural health monitoring algorithms in which signal parameters are required such as wave velocity dependence on the angle of propagation. Moreover, it enables model-assisted damage size estimation in which the damage influence curve is estimated based on large numerical data sets and sparse experimental data. Due to relatively short computation times, large data sets can be generated and used for machine learning or other soft computing methods opening up new possibilities in health monitoring of metallic and composite structures.
机译:开发了频谱元件方法的并行实现,其中扁平壳谱元件用于空间域表示。通过使用MATLAB并行计算工具箱来实现实现,并针对图形处理单元(GPU)计算进行了优化。以这种方式,与传统处理器的计算相比,可以实现相当大的计算速度。该实现包括均匀网格上的波场的插值。该方法在打开引导波平台上可用的实验数据集上进行测试。在全波场数据上进行定性比较,而直接对由压电换能器登记的羊毛波的信号进行定量比较。在这两种情况下,实现了数值和实验结果之间的良好一致性。所提出的方法对于结构健康监测算法特别有用,其中需要信号参数,例如对传播角度的波速度依赖性。此外,它能够实现模型辅助损伤尺寸估计,其中基于大数值数据集和稀疏实验数据估计损坏影响曲线。由于计算时间相对较短,可以生成大数据集并用于机器学习或其他软计算方法,开辟了金属和复合结构的健康监测中的新可能性。

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