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首页> 外文期刊>KSCE journal of civil engineering >Examining the Function of Wavelet Packet Transform (WPT) and Continues Wavelet Transform (CWT) in Recognizing the Crack Specification
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Examining the Function of Wavelet Packet Transform (WPT) and Continues Wavelet Transform (CWT) in Recognizing the Crack Specification

机译:检查小波包变换(WPT)的功能并继续小波变换(CWT)在识别裂纹规范中的作用

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摘要

Modern and efficient methods focus on signal analysis and have drawn researchers' attention to it in recent years. These methods mainly include Continuous Wavelet and Wavelet Packet transforms. The main advantage of the application of these Wavelets is their ability to analyze the signal position in different times and places. The frequency decomposition of this transform in location with high frequencies is very poor. Wavelet packet transform is more advanced form of continuous wavelet and can make a perfect level by level resolution for each signal. However, very few studies have been done in this field. In the present study, first there was an attempt to do a modal analysis on the structure by the ANSYS finite elements software, then using MATLAB, the wavelet was investigated through a continuous wavelet analysis. Finally, the results were displayed in 2-D location-coefficient figures. In the second form, transient dynamic analysis was done on the structure and to find out the characteristics of the crack, wavelet packet energy rate index was suggested. The results revealed that suggested index in the second form is both practical and applicable.
机译:现代高效的方法专注于信号分析,并且近年来引起了研究人员的注意。这些方法主要包括连续小波和小波包变换。这些小波应用的主要优点是它们能够分析不同时间和位置的信号位置。该变换在高频位置的频率分解非常差。小波包变换是连续小波的一种更高级的形式,可以为每个信号逐个级别地实现完美的分辨率。但是,在该领域中很少进行研究。在本研究中,首先尝试通过ANSYS有限元软件对结构进行模态分析,然后使用MATLAB通过连续小波分析研究小波。最后,结果以二维位置系数数字显示。在第二种形式中,对结构进行了瞬态动力分析,并找出裂纹的特征,提出了小波包能量速率指数。结果表明,第二种形式的建议索引既实用又适用。

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