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Linear and nonlinear equivalent circuit modeling of CMUTs

机译:CMUT的线性和非线性等效电路建模

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摘要

Using piston radiator and plate capacitance theory capacitive micromachined ultrasound transducers (CMUT) membrane cells can be described by one-dimensional (1-D) model parameters. This paper describes in detail a new method, which derives a 1-D model for CMUT arrays from finite-element methods (FEM) simulations. A few static and harmonic FEM analyses of a single CMUT membrane cell are sufficient to derive the mechanical and electrical parameters of an equivalent piston as the moving part of the cell area. For an array of parallel-driven cells, the acoustic parameters are derived as a complex mechanical fluid impedance, depending on the membrane shape form. As a main advantage, the nonlinear behavior of the CMUT can be investigated much easier and faster compared to FEM simulations, e.g., for a design of the maximum applicable voltage depending on the input signal. The 1-D parameter model allows an easy description of the CMUT behavior in air and fluids and simplifies the investigation of wave propagation within the connecting fluid represented by FEM or transmission line matrix (TLM) models.
机译:使用活塞散热器和板电容理论,可以通过一维(1-D)模型参数来描述电容微机械超声换能器(CMUT)膜单元。本文详细介绍了一种新方法,该方法可以从有限元方法(FEM)仿真中得出用于CMUT阵列的一维模型。单个CMUT膜单元的一些静态和谐波FEM分析足以得出等效活塞作为单元区域移动部分的机械和电气参数。对于平行驱动单元的阵列,取决于膜的形状形式,声学参数被推导为复杂的机械流体阻抗。作为主要优点,与FEM仿真相比,可以更容易和更快地研究CMUT的非线性行为,例如,根据输入信号设计最大适用电压。一维参数模型可以轻松描述空气和流体中CMUT的行为,并简化了对由FEM或传输线矩阵(TLM)模型表示的连接流体中波传播的研究。

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