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Fast simulation of non-linear pulsed ultrasound fields using an angular spectrum approach

机译:使用角谱方法快速仿真非线性脉冲超声场

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摘要

A fast non-linear pulsed ultrasound field simulation is presented. It is implemented based on an angular spectrum approach (ASA), which analytically solves the non-linear wave equation. The ASA solution to the Westervelt equation is derived in detail. The calculation speed is significantly increased compared to a numerical solution using an operator splitting method (OSM). The ASA has been modified and extended to pulsed non-linear ultrasound fields in combination with Field II, where any array transducer with arbitrary geometry, excitation, focusing and apodization can be simulated. The accuracy of the non-linear ASA is compared to the non-linear simulation program - Abersim, which is a numerical solution to the Burgers equation based on the OSM. Simulations are performed for a linear array transducer with 64 active elements, focus at 40 mm, and excitation by a 2-cycle sine wave with a center frequency of 5 MHz. The speed is increased approximately by a factor of 140 and the calculation time is 12 min with a standard PC, when simulating the second harmonic pulse at the focal point. For the second harmonic point spread function the full width error is 1.5% at -6 dB and 6.4% at -12 dB compared to Abersim.
机译:提出了一种快速的非线性脉冲超声场仿真。它是基于角谱方法(ASA)实施的,该方法可以解析非线性波动方程。详细推导了针对Westervelt方程的ASA解。与使用算子拆分方法(OSM)的数值解决方案相比,计算速度显着提高。 ASA已与Field II相结合进行了修改,并扩展到脉冲非线性超声领域,在该领域中,可以模拟具有任意几何形状,激发,聚焦和切趾的任何阵列换能器。将非线性ASA的准确性与非线性仿真程序Abersim进行了比较,该程序是基于OSM的Burgers方程的数值解。对具有64个有源元件,聚焦在40 mm处,中心频率为5 MHz的2周期正弦波激励的线性阵列换能器进行了仿真。当在焦点处模拟二次谐波脉冲时,速度大约增加140倍,并且使用标准PC的计算时间为12分钟。与Abersim相比,对于二次谐波点扩展功能,在-6 dB时的全宽误差为1.5%,在-12 dB时的全宽误差为6.4%。

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