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通过非线性声学测量研究膜水听器的相位特性。

Membrane hydrophone phase characteristics through nonlinear acoustics measurements.

机构信息

Drexel University School of Biomedical Engineering, Science and Health Systems, Philadelphia, PA, USA.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2011 Nov;58(11):2418-37. doi: 10.1109/TUFFC.2011.2099.

Abstract

This work considers the need for both the amplitude and phase to fully characterize polyvinylidene fluoride (PVDF) membrane hydrophones and presents a comprehensive discussion of the nonlinear acoustic measurements utilized to extract the phase information and the experimental results taken with two widely used PVDF membrane hydrophones up to 100 MHz. A semi-empirical computer model utilized the hyperbolic propagation operator to predict the nonlinear pressure field and provide the complex frequency response of the corresponding source transducer. The PVDF hydrophone phase characteristics, which were obtained directly from the difference between the computer-modeled nonlinear field simulation and the corresponding measured harmonic frequency phase values, agree to within 10% with the phase predictions obtained from receive-transfer-function simulations based on software modeling of the membrane's physical properties. Cable loading effects and membrane hydrophone resonances were distinguished and identified through a series of impedance measurements and receive transfer function simulations on the hydrophones including their hard-wired coaxial cables. The results obtained indicate that the PVDF membrane hydrophone's phase versus frequency plot exhibits oscillations about a monotonically decreasing line. The maxima and minima inflection point slopes occur at the membrane thickness resonances and antiresonances, respectively. A cable resonance was seen at 100 MHz for the hydrophone with a 1-m cable attached, but not seen for the hydrophone with a shorter 0.65-m cable.

摘要

这项工作考虑到需要充分描述聚偏二氟乙烯(PVDF)膜水听器的幅度和相位,并全面讨论了用于提取相位信息的非线性声学测量以及在两个广泛使用的高达 100 MHz 的 PVDF 膜水听器上进行的实验结果。一个半经验的计算机模型利用双曲传播算子来预测非线性压力场,并提供相应源换能器的复频率响应。从计算机模型的非线性场模拟与相应的测量谐波频率相位值之间的差值直接获得的 PVDF 水听器相位特性,与基于膜物理特性软件建模的接收传递函数模拟获得的相位预测值相差在 10%以内。通过对包括其硬连线同轴电缆在内的水听器进行一系列阻抗测量和接收传递函数模拟,区分并识别了电缆加载效应和膜水听器共振。结果表明,PVDF 膜水听器的相位与频率图显示出围绕单调下降线的振荡。最大值和最小值拐点斜率分别出现在膜厚度共振和反共振处。在连接 1 米电缆的水听器上在 100 MHz 处观察到电缆共振,但在连接较短的 0.65 米电缆的水听器上未观察到。

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