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Modeling transducer impulse responses for predicting calibrated pressure pulses with the ultrasound simulation program Field II

机译:使用超声模拟程序建模换能器脉冲响应以预测校准的压力脉冲

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摘要

FIELD II is a simulation software capable of predicting the field pressure in front of transducers having any complicated geometry. A calibrated prediction with this program is, however, dependent on an exact voltage-to-surface acceleration impulse response of the transducer. Such impulse response is not calculated by FIELD II. This work investigates the usability of combining a one-dimensional multilayer transducer modeling principle with the FIELD II software. Multilayer here refers to a transducer composed of several material layers. Measurements of pressure and current from Pz27 piezoceramic disks as well as pressure and intensity measurements in front of a 128 element commercial convex medical transducer are compared to the simulations. Results show that the models can predict the pressure from the piezoceramic disks with a root mean square (rms) error of 11.2% to 36.2% with a 2 dB amplitude decrease. The current through the external driving circuits are predicted within 8.6% to 36% rms error. Prediction errors of 30% and in the range of 5.8%-19.9% for the pressure and the intensity, respectively, are found when simulating the commercial transducer. It is concluded that the multilayer transducer model and the FIELD II software in combination give good agreement with measurements.
机译:FIELD II是一种仿真软件,能够预测具有任何复杂几何形状的换能器前面的磁场压力。但是,使用此程序进行的校准预测取决于换能器的精确电压-表面加速度脉冲响应。 FIELD II不计算这种脉冲响应。这项工作研究了将一维多层换能器建模原理与FIELD II软件结合使用的可用性。多层在这里是指由几个材料层组成的换能器。将来自Pz27压电陶瓷圆盘的压力和电流的测量结果,以及在128元件商用凸型医用换能器前面的压力和强度测量结果与模拟进行了比较。结果表明,该模型可以预测压电陶瓷圆盘的压力,均方根(rms)误差为11.2%至36.2%,振幅降低2 dB。预计通过外部驱动电路的电流均方根误差在8.6%至36%范围内。模拟商用传感器时,发现压力和强度的预测误差分别为30%和5.8%-19.9%。结论是,多层换能器模型和FIELD II软件结合在一起可以很好地与测量结果吻合。

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