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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >CMUT array modeling through free acoustic CMUT modes and analysis of the fluid CMUT interface through Fourier transform methods
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CMUT array modeling through free acoustic CMUT modes and analysis of the fluid CMUT interface through Fourier transform methods

机译:通过自由声学CMUT模式进行CMUT阵列建模,并通过傅立叶变换方法分析流体CMUT接口

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摘要

A method for analyzing capacitive micromachined ultrasonic transducer (CMUT) arrays and arrays of elements composed of several CMUTs is proposed. It is based on a combination of a free acoustic mode description of an isolated CMUT, and the coupling of these modes to the fluid in which waves should be excited or detected through an impedance matrix that will depend on frequency. The parameters of the model describing the isolated CMUT is independent of frequency and excitation of neighbor CMUTs, whereas the acoustic impedance matrix describing the coupling to the fluid will depend on both the excitation of neighbor CMUTs and frequency. Hence, this splitting of the calculations has a potential for saving computer time. The analysis gives transfer functions from excitations that vary harmonically with time and space along the array surface to CMUT parameters as current, mode excitations, or output acoustic pressure. Based on this, the response of essentially arbitrary excitations of the CMUTs may be obtained. The method is used to analyze an infinitely large array of circular CMUTs on a rectangular grid. The CMUTs are assumed to be operating in collapsed mode. Sharp resonances are shown to occur that could be significantly damped by adding series resistors to the CMUTs or increasing the water viscosity.
机译:提出了一种分析电容式微加工超声换能器(CMUT)阵列和由多个CMUT组成的元件阵列的方法。它基于对孤立CMUT的自由声学模式描述以及这些模式与流体的耦合的组合,在该流体中应通过取决于频率的阻抗矩阵来激发或检测波。描述隔离的CMUT的模型的参数与频率和相邻CMUT的激励无关,而描述与流体耦合的声阻抗矩阵将取决于相邻CMUT的激励和频率。因此,计算的这种拆分具有节省计算机时间的潜力。该分析提供了传递函数,从沿着阵列表面随时间和空间而谐波变化的激励到电流,模式激励或输出声压的CMUT参数。基于此,可以获得CMUT的基本上任意激励的响应。该方法用于分析矩形网格上无限大的圆形CMUT阵列。假定CMUT在折叠模式下运行。通过在CMUT上增加串联电阻或增加水的粘度,可以明显抑制尖锐的谐振。

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