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Equivalent ultrasonic impedance in multilayer media. A parameter estimation problem

机译:多层介质中的等效超声阻抗。参数估计问题

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摘要

This article deals with ultrasonic transmission through multilayer systems. The equivalent ultrasonic impedance of such systems is based on the transmission line built as a convenient model to reduce the computational time for numerical evaluation. Also, the one dimensional wave equation is considered as the full model for the propagation of a plane wave inside the material. From numerical simulations, we obtained signals useful to assess the equivalent model. Results clearly depict coherence between the models since there are full agreements in the computed velocity and stress at each interface. The identification of the parameters involved in the model, characteristic acoustic impedance and time of flight, related to the layer densities and propagation velocities, is posed as a non-linear parameter estimation problem. An ultrasonic transmission is set up and the complete waveform is recorded after travelling through the layers. The minimization of a least squares objective function defined to measure the misfit between the real and predicted waveforms, in frequency, was successfully performed and the estimated parameters give useful information for the mechanical characterization of the sample.
机译:本文讨论了通过多层系统的超声波传输。这种系统的等效超声阻抗基于传输线,该传输线被构建为方便的模型,以减少用于数字评估的计算时间。同样,一维波动方程被认为是平面波在材料内部传播的完整模型。通过数值模拟,我们获得了可用于评估等效模型的信号。由于每个接口的计算速度和应力完全一致,因此结果清楚地描述了模型之间的一致性。模型中涉及的参数,特征声阻抗和飞行时间的识别与层密度和传播速度有关,被认为是非线性参数估计问题。设置超声波传输,并在穿过层之后记录完整的波形。成功地执行了定义为测量实际波形和预测波形之间的频率不匹配的最小二乘目标函数的最小化,并且估计的参数为样品的机械表征提供了有用的信息。

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