Parallelizing the Computation of Green Functions for Computational Electromagnetism Problems

C. Pérez-Alcaraz, D. Giménez, Alejandro Álvarez Melcón, F. Quesada-Pereira
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引用次数: 3

Abstract

Green functions are used in various fields to solve non homogeneous integral equations with boundary conditions. In some cases it is necessary to obtain these functions in real time or they are used for big problems with a large execution time which should be reduced. To do so, efficient algorithms for the available computational systems must be developed. With the evolution of technology, the computational systems are now parallel, with multicore laptops or desktops with programmable graphic processing units, and with clusters or supercomputers composed by multicore nodes. In this paper, algorithms for Green functions using different parallelism paradigms are developed and compared. The Green functions used are from computational electromagnetism, and important reductions in the execution time are obtained for typical problems with the implemented algorithms.
计算电磁学问题格林函数的并行化计算
绿色函数被广泛应用于求解具有边界条件的非齐次积分方程。在某些情况下,有必要实时获取这些函数,或者它们用于具有较长执行时间的大问题,这应该减少。要做到这一点,必须为现有的计算系统开发有效的算法。随着技术的发展,计算系统现在是并行的,有带有可编程图形处理单元的多核笔记本电脑或台式机,也有由多核节点组成的集群或超级计算机。本文对不同并行范式下的格林函数算法进行了发展和比较。所使用的格林函数来自计算电磁学,所实现的算法对典型问题的执行时间有重要的减少。
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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