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Improved Approach for Determining Pile Length of Group Pile Using Complex Continuous Wavelet Transform

机译:基于复合小波变换的群桩桩长度的改进方法

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This article investigates the integrity testing ability of the sonic echo test by using a field-constructed group pile foundation. The energy of the reflected stress wave is relatively weak when a pile cap is presented during pile testing, and signal processing techniques were generally used to enhance the weak signal. The conventional real wavelet transform is difficult to use to identify the time of the reflected wave of the pile toe. The purpose of this article is to improve this drawback of conventional real wavelet transforms using a complex wavelet transform. This study utilized the amplitude and phase message of a complex continuous wavelet transform to determine the pile length of piles that are grouped with a pile cap by analyzing the time-frequency-phase angle diagram in the wide frequency band. Cases of group piles with two and four piles were studied. The results show that the suggested approach is able to detect the reflected signal from the pile toe, as the testing was performed on a pile cap. The results also show that the measured errors of pile length ranged from 2.5 % to -6.1 % in the cases of this study.
机译:本文通过使用现场构建的组桩基础调查了Sonic Hecho测试的完整性测试能力。当在绒毛测试期间呈现桩帽时,反射应力波的能量相对较弱,并且通常使用信号处理技术来增强弱信号。传统的真实小波变换难以用于识别桩脚趾的反射波的时间。本文的目的是使用复杂的小波变换来改善传统实物小波变换的该缺点。该研究利用复杂连续小波变换的幅度和相位消息,以通过分析宽频带中的时频相角图来确定用绒头帽分组的桩长度。研究了两个和四个桩的组桩的病例。结果表明,建议的方法能够检测桩脚趾的反射信号,因为在桩帽上进行测试。结果还表明,在本研究的情况下,桩长的测量误差范围为2.5%至-6.1%。

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