基于超声信号和小波变换的流速估计

C. Guetbi, D. Kouamé, A. Ouahabi, J. Chemla, L. Bensaada
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引用次数: 0

摘要

众所周知,经典的时延估计对两个信号之间的真实时延给出了不精确的估计,而这两个信号之间的时延是采样周期的非整数倍。为了更准确地估计超声信号,提出了基于采样周期的小时延估计方法。本文主要研究了基于小波变换的两种超声发射脉冲与接收信号时延估计方法。第一种技术是在固定频率(即超声信号的发射频率)下计算两个信号(参考信号和延迟信号)的小波系数的最大时间参数之差。第二种技术,基于交叉小波表示,直接提供两个信号之间的时间延迟。这些方法在偏差和方差方面的性能与使用多项式插值的经典相关进行了比较。数值结果表明,交叉小波方法具有较好的时延估计性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flow velocity estimation using ultrasound signals and wavelet transformation
It is well known that classical time delay estimation gives an inexact estimation of the true delay between two signals delayed by nonintegral multiple of the sample period. For more accurate estimation, new methods are proposed to estimate small time delay with regard to sample period of ultrasonic signals. In this paper, the authors focus on two methods based on the wavelet transform for time delay estimation between ultrasound emitted pulses and the received signal. The first technique consists in computing at a fixed frequency (which is the emitting frequency of the ultrasonic signal) the difference of maximum time argument between wavelet coefficients of the two signals (the reference and the delayed signal). The second technique, based on a crosswavelet representation, directly provides the time delay between the two signals. The performance of these methods in terms of bias and variance are compared to classical correlation using polynomial interpolation. Numerical results show the superior performance of the crosswavelet approach for time delay estimation.
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