School of Electrical Engineering, Tel Aviv University, Tel Aviv, Israel.
IEEE Trans Ultrason Ferroelectr Freq Control. 2010 Jan;57(1):262-73. doi: 10.1109/TUFFC.2010.1404.
A fast algorithm for the evaluation of acoustic fields produced by given source distributions is developed with the aim of accelerating iterative boundary element method (BEM) solvers. The algorithm is based on field smoothing by phase and amplitude compensation, which allows for sampling of the fields radiated by finite-size source distributions over coarse nonuniform (spherical) grids (NGs). Subsequently, the fields at the desired target points can be obtained by an interpolation and phase and amplitude restoration. Combining this approach with the divide-and-conquer strategy, the total field is computed via a hierarchical decomposition of the source domain. In this computational scheme, the phase and amplitude compensated fields produced by neighboring subdomains are gradually aggregated through a multilevel process involving interpolation between increasingly dense NGs and the scatterer surface. This multilevel NG algorithm is used to reduce the computational cost of applying the field evaluation operator and its adjoint, as required in each iteration of the conjugate gradient solver based on the BEM-discretized integral representation of scattering problems. Accuracy and computational efficiency of the NG algorithm are demonstrated on representative examples of elongated, quasi-planar, and full 3-D scatterers.
为了加速迭代边界元法(BEM)求解器,开发了一种用于评估给定源分布产生的声场的快速算法。该算法基于相位和幅度补偿的场平滑,允许在粗非均匀(球形)网格(NG)上对有限大小的源分布辐射的场进行采样。随后,可以通过插值和相位和幅度恢复来获得所需目标点的场。通过将这种方法与分治策略相结合,可以通过源域的分层分解来计算总场。在这种计算方案中,通过涉及在越来越密集的 NG 和散射体表面之间进行插值的多级过程,逐渐聚合来自相邻子域的相位和幅度补偿场。该多级 NG 算法用于降低在共轭梯度求解器的每个迭代中应用场评估算子及其伴随的计算成本,该求解器基于 BEM 离散化的散射问题积分表示。在代表性的细长、准平面和全 3-D 散射体示例上验证了 NG 算法的准确性和计算效率。