Time-delay estimation of ultrasonic echoes based on the physical model matching

Xiaole Yan, Lichen Gu
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引用次数: 7

Abstract

The estimation of time of flight (TOF) is fundamental to many ultrasonic-based techniques. This paper presents a novel method for estimating time delay of ultrasonic echoes based on vibration theory and signal processing methods. The method is inspired by the physical model of ultrasonic echoes that shows the rising edge of ultrasonic echoes depends on the damping factor of the vibration part of the ultrasonic transducer. The physical model is analyzed and simulated for the understand of the time-domain characters of ultrasonic echoes. For applications, the threshold method is also considered in the method. Two traditional methods of TOF are compared with the proposed by experiment data. It is shown that the proposed method can estimate the starting point of the ultrasonic echo quickly and effectively in the real ranging system.
基于物理模型匹配的超声回波时延估计
飞行时间(TOF)的估计是许多超声技术的基础。基于振动理论和信号处理方法,提出了一种估计超声回波时延的新方法。该方法的灵感来源于超声回波的物理模型,该模型表明超声回波的上升沿取决于超声换能器振动部分的阻尼系数。为了解超声回波的时域特性,对物理模型进行了分析和仿真。对于应用,方法中还考虑了阈值法。通过实验数据对两种传统的TOF方法进行了比较。结果表明,该方法在实际测距系统中能够快速有效地估计出超声回波的起始点。
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