GPU-accelerated MoM-based broadband simulations using Stoer-Bulirsch algorithm

A. Karwowski, A. Noga, T. Topa
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Abstract

This communication introduces a CUDA-enabled GPU accelerated technique for broadband analysis of arbitrary 3D conducting body-wire radiating/scattering structure. The solution is based on the integral equation dis-cretized by the method of moments (MoM) with the use of RWG-type basis functions. Wide-band data are generated from MoM simulation employing an adaptive frequency sampling of the observed quantity, and supported by implicit rational macromodelling via Stoer-Bulirsch algorithm. Numerical results are given for a helical antenna with a cylindrical cup reflector. The GPU-CUDA offers a speedup ratio nearly 9× over the CPU implementation.
使用stoer - bulrsch算法的gpu加速的基于mom的宽带模拟
本通信介绍了一种支持cuda的GPU加速技术,用于任意3D传导体线辐射/散射结构的宽带分析。求解基于矩量法离散的积分方程,采用rwg型基函数。采用观测量的自适应频率采样从MoM模拟中生成宽带数据,并通过stoer - bulrsch算法进行隐式理性宏观建模。给出了带圆柱形杯形反射镜的螺旋天线的数值结果。GPU-CUDA提供的加速比CPU实现的快近9倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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