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首页> 外文期刊>The Journal of the Acoustical Society of America >Error evaluation of the structural intensity measured with a scanning laser Doppler vibrometer and a k-space signal processing
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Error evaluation of the structural intensity measured with a scanning laser Doppler vibrometer and a k-space signal processing

机译:用扫描激光多普勒振动计和k空间信号处理测量的结构强度的误差评估

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摘要

In structural intensity measurements, the calculation error in the higher-order spatial derivatives contained in the derivation has a large effect on the measurement accuracy, since the derivative operations magnify the noise. To overcome the difficulty in calculating the derivatives, the authors employ the k-space processing which is based on the Fourier transform. Then, in this paper, a k-space filter is introduced to reduce the noise further. On the other hand, a noncontact method to measure the vibration distribution is necessary in order to avoid the loading effect on the specimen. An optical method is one of the most promising candidates for this purpose. This paper presents an error evaluation of the structural intensity as measured with a scanning laser Doppler vibrometer and the k-space signal processing. The effectiveness of the combination of the noncontact optical method and the k-space method is confirmed by both simulations and experiments. First, the error in calculating structural intensity is examined numerically using a one-dimensional beam model. As a result, it became clear that the cutoff wave number for k-space filtering should be one and a half of the wave number of the measured vibration to minimize the influence of the error in the measured data. Furthermore, basic measurement conditions such as the minimum number of data points and the sampling rate are studied for practical use of the k-space method. Lastly, the results of the numerical studies are confirmed by the experiments for a beam and a two-dimensional plate.
机译:在结构强度测量中,导数中的高阶空间导数的计算误差对测量精度有很大影响,因为导数运算会放大噪声。为了克服计算导数的困难,作者采用了基于傅立叶变换的k空间处理。然后,在本文中,引入了k空间滤波器以进一步降低噪声。另一方面,需要一种非接触方法来测量振动分布,以避免对样本的负载效应。为此目的,光学方法是最有前途的候选方法之一。本文介绍了使用扫描激光多普勒振动计和k空间信号处理测量的结构强度的误差评估。仿真和实验均证实了非接触光学方法和k空间方法相结合的有效性。首先,使用一维梁模型对计算结构强度的误差进行数值检查。结果,很明显,用于k空间滤波的截止波数应该是所测量的振动的波数的一半,以使误差对所测量的数据的影响最小。此外,研究了基本测量条件,例如最小数据点数和采样率,以实际使用k空间方法。最后,通过梁和二维板的实验证实了数值研究的结果。

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