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Estimating ultrasonic time-of-flight through echo signal envelope and modified Gauss Newton method

机译:通过回波信号包络和改进的高斯牛顿法估算超声飞行时间

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摘要

The accurate estimation of ultrasonic Time-Of-Flight (TOF) is essential in ultrasonic non-destructive testing (NDT). In this paper, a novel method for TOF estimation through envelope is proposed. Firstly, the wavelet denoising technique is applied to the noisy echo to improve the estimation accuracy. Then, the Hilbert transform (HT) is used in ultrasonic signal processing in order to extract the envelope of the echo and to reduce the computational burden. Finally, the echo parameters are estimated by using a Modified Gauss Newton (MGN) based nonlinear Least Squares (LS) estimation method. And, a fast algorithm is adopted to estimate the parameters of M-superimposed echoes. Numerical simulation and experimental results have been carried out to show the performances of the proposed method in estimating TOF of ultrasonic signal. (C) 2016 Elsevier Ltd. All rights reserved.
机译:超声飞行时间(TOF)的准确估算对于超声无损检测(NDT)至关重要。提出了一种通过包络估计TOF的新方法。首先,将小波去噪技术应用于噪声回波以提高估计精度。然后,希尔伯特变换(HT)用于超声信号处理中,以提取回波的包络并减少计算负担。最后,通过使用基于改进高斯牛顿(MGN)的非线性最小二乘(LS)估计方法来估计回波参数。并且,采用快速算法来估计M个叠加回波的参数。数值模拟和实验结果表明了该方法在超声信号TOF估计中的性能。 (C)2016 Elsevier Ltd.保留所有权利。

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