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一种基于非线性传播模型的膜式水听器相位校准技术。

A nonlinear propagation model-based phase calibration technique for membrane hydrophones.

作者信息

Cooling Martin P, Humphrey Victor F

机构信息

Univ. of Southampton, ISVR (FDAG), Hampshire, UK.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2008 Jan;55(1):84-93. doi: 10.1109/TUFFC.2008.619.

Abstract

A technique for the phase calibration of membrane hydrophones in the frequency range up to 80 MHz is described. This is achieved by comparing measurements and numerical simulation of a nonlinearly distorted test field. The field prediction is obtained using a finite-difference model that solves the nonlinear Khokhlov-Zabolotskaya-Kuznetsov (KZK) equation in the frequency domain. The measurements are made in the far field of a 3.5 MHz focusing circular transducer in which it is demonstrated that, for the high drive level used, spatial averaging effects due to the hydrophone's finite-receive area are negligible. The method provides a phase calibration of the hydrophone under test without the need for a device serving as a phase response reference, but it requires prior knowledge of the amplitude sensitivity at the fundamental frequency. The technique is demonstrated using a 50-microm thick bilaminar membrane hydrophone, for which the results obtained show functional agreement with predictions of a hydrophone response model. Further validation of the results is obtained by application of the response to the measurement of the high amplitude waveforms generated by a modern biomedical ultrasonic imaging system. It is demonstrated that full deconvolution of the calculated complex frequency response of a nonideal hydrophone results in physically realistic measurements of the transmitted waveforms.

摘要

描述了一种用于在高达80 MHz频率范围内对膜式水听器进行相位校准的技术。这是通过比较非线性失真测试场的测量结果和数值模拟来实现的。使用有限差分模型获得场预测,该模型在频域中求解非线性的霍克洛-扎博洛茨卡娅-库兹涅佐夫(KZK)方程。测量是在一个3.5 MHz聚焦圆形换能器的远场中进行的,结果表明,对于所使用的高驱动电平,由于水听器有限接收面积引起的空间平均效应可以忽略不计。该方法无需使用作为相位响应参考的装置即可对被测水听器进行相位校准,但需要预先知道基频下的幅度灵敏度。使用一个50微米厚的双层膜式水听器演示了该技术,所获得的结果与水听器响应模型的预测在功能上一致。通过将响应应用于现代生物医学超声成像系统产生的高幅度波形的测量,进一步验证了结果。结果表明,对非理想水听器计算出的复频率响应进行完全反卷积可得到传输波形的符合物理实际的测量结果。

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