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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >A nonlinear lumped model for ultrasound systems using CMUT arrays
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A nonlinear lumped model for ultrasound systems using CMUT arrays

机译:使用CMUT阵列的超声系统非线性集总模型

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We present a nonlinear lumped model that predicts the electrical input-output behavior of an ultrasonic system using CMUTs with arbitrary array/membrane/electrode geometry in different transmit-receive configurations and drive signals. The receive-only operation, where the electrical output signal of the CMUT array in response to incident pressure field is calculated, is included by modifying the boundary elementbased vibroacoustic formulation for a CMUT array in rigid baffle. Along with the accurate large signal transmit model, this formulation covers pitch-catch and pulse-echo operation when transmit and receive signals can be separated in time. In cases when this separation is not valid, such as CMUTs used in continuous wave transmit-receive mode, pulse-echo mode with a nearby hard or soft wall or in a bounded space such as in a microfluidic channel, an efficient formulation based on the method of images is used. Some of these particular applications and the overall modeling approach have been validated through comparison with finite element analysis on specific examples including CMUTs with multiple electrodes. To further demonstrate the capability of the model for imaging applications, the two-way response of a partial dual-ring intravascular ultrasound array is simulated using a parallel computing cluster, where the output currents of individual array elements are calculated for given input pulse and compared with experimental results. With its versatility, the presented model can be a useful tool for rapid iterative CMUT-based system design and simulation for a broad range of ultrasonic applications.
机译:我们提出了一个非线性集总模型,该模型使用具有不同阵列/膜/电极几何形状的CMUT在不同的发射-接收配置和驱动信号中预测超声系统的电输入-输出行为。通过修改刚性挡板中CMUT阵列的基于边界元的振动声学公式,可以计算出仅接收操作,其中计算CMUT阵列响应于入射压力场的电输出信号。与精确的大信号传输模型一起,当发射和接收信号可以及时分离时,该公式还涵盖了音高捕获和脉冲回波操作。在这种分隔无效的情况下,例如在连续波发射-接收模式下使用的CMUT,在附近的硬壁或软壁上或在有限空间(例如在微流体通道中)使用的脉冲回波模式下,基于使用图像方法。通过与包括多个电极的CMUT在内的特定示例的有限元分析进行比较,已经验证了其中的某些特定应用和整体建模方法。为了进一步证明该模型在成像应用中的能力,使用并行计算集群模拟了部分双环血管内超声阵列的双向响应,其中针对给定的输入脉冲计算单个阵列元件的输出电流并进行比较具有实验结果。凭借其多功能性,提出的模型可以成为用于广泛的超声应用的快速迭代基于CMUT的系统设计和仿真的有用工具。

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