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首页> 外文期刊>Nondestructive Testing and Evaluation >Estimation of time-of-flight based on threshold and peak analysis method for microwaves signals reflected from the crack
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Estimation of time-of-flight based on threshold and peak analysis method for microwaves signals reflected from the crack

机译:基于阈值和峰值分析方法的飞行时间估算从裂缝反射的微波信号

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摘要

This paper will propose a new approach for Time-of-flight (TOF) estimation based on the peak analysis and threshold method, signal processing procedure developed to precisely evaluate crack position in pipes. In order to acquire a crack position, TOF of the waves reflected from the crack can be estimated from the time domain signal. In this regard, to obtain a crack position with sufficient accuracy, there is a necessity to enhance precision of the measured TOF. First, the original signal is denoised by the wavelet transform smoothed with Savitzky-Golay filtering. Next, to extract appropriate peak, Hilbert Transform is used to construct the signal envelope. After applying peak extraction technique to the signal envelope, the time of the extracted peak has been considered as a TOF. Finally, crack position has been evaluated by calculating group velocities of the propagated waves in each waveguide of the detection system and test pipe.
机译:本文将提出一种基于峰值分析和阈值方法的飞行时间(TOF)估计的新方法,其开发的信号处理程序精确地评估管道中的裂缝位置。 为了获得裂缝位置,可以从时域信号估计从裂缝反射的波的TOF。 在这方面,为了获得充分精度的裂缝位置,需要提高测量的TOF的精度。 首先,原始信号由小波变换与Savitzky-Golay滤波进行平滑的小波变换。 接下来,为了提取合适的峰值,使用Hilbert变换来构建信号包络。 在向信号包络施加峰值提取技术之后,提取峰的时间被认为是TOF。 最后,通过计算检测系统的每个波导中的传播波的组速度来评估裂缝位置。

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