Ellis Michael A, Guenther Drake, Walker William F
Department of Biomedical Engineering, University of Virginia, Charlottesville, VA, USA.
IEEE Trans Ultrason Ferroelectr Freq Control. 2007 May;54(5):1045-54. doi: 10.1109/tuffc.2007.350.
Computer simulations are an essential tool for the design of phased-array ultrasonic imaging systems. FIELD II, which determines the two-way temporal response of a transducer at a point in space, is the current de facto standard for ultrasound simulation tools. However, the need often arises to obtain two-way spatial responses at a single point in time, a set of dimensions for which FIELD II is not well optimized. This paper describes an analytical approach for computing the two-way, far-field, spatial impulse response from rectangular transducer elements under arbitrary excitation. The described approach determines the response as the sum of polynomial functions, making computational implementation quite straightforward. The proposed algorithm, named DELFI, was implemented as a C routine under Matlab and results were compared to those obtained under similar conditions from the well-established FIELD II program. Under the specific conditions tested here, the proposed algorithm was approximately 142 times faster than FIELD II for computing spatial sensitivity functions with similar amounts of error. For temporal sensitivity functions with similar amounts of error, the proposed algorithm was about 1.7 times slower than FIELD II using rectangular elements and 19.2 times faster than FIELD II using triangular elements. DELFI is shown to be an attractive complement to FIELD II, especially when spatial responses are needed at a specific point in time.
计算机模拟是相控阵超声成像系统设计的重要工具。FIELD II是目前超声模拟工具的实际标准,它可确定换能器在空间某点的双向时间响应。然而,经常需要在单个时间点获得双向空间响应,而FIELD II针对这组维度并未进行很好的优化。本文描述了一种分析方法,用于计算任意激励下矩形换能器元件的双向远场空间脉冲响应。所描述的方法将响应确定为多项式函数的总和,使得计算实现相当直接。所提出的算法名为DELFI,在Matlab下作为C例程实现,并将结果与在类似条件下从成熟的FIELD II程序获得的结果进行比较。在此处测试的特定条件下,对于计算具有相似误差量的空间灵敏度函数,所提出的算法比FIELD II快约142倍。对于具有相似误差量的时间灵敏度函数,使用矩形元件时,所提出的算法比FIELD II慢约1.7倍;使用三角形元件时,比FIELD II快约19.2倍。DELFI被证明是FIELD II的一个有吸引力的补充,特别是在需要在特定时间点获得空间响应时。