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Performance of a Massively Parallel Higher-Order Method of Moments Code Using Thousands of CPUs

机译:使用数千个CPU的大规模平行高阶方法的性能

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The efficiency and scalability of a parallel higher-order method of moments is illustrated using up to 4096 CPU cores on a supercomputer. The scattering problems solved includes the analysis from a full scale airplane. The scattering problem is simulated to demonstrate the efficiency and scalability of the algorithm. Numerical results show that one can achieve above 60% efficiency when the used memory to the total memory ratio is larger than 15%, and the scalability can reach a theoretical value between O(N2) and O(N3), where N is the number of unknowns. Due to its high efficiency and excellent scalability, the algorithm is able to accurately solve large complex electromagnetic radiation and scattering problems including composite and multi-scale structures.
机译:在超级计算机上使用高达4096个CPU核心进行了并行高阶矩的效率和可扩展性。解决的散射问题包括来自全尺度飞机的分析。模拟散射问题以展示算法的效率和可扩展性。数值结果表明,当使用的存储器与总存储器比率大于15%时,可以达到高于60%的效率,并且可伸缩性可以达到O(n之间的理论值 2 )和o(n 3 ),其中n是未知数的数量。由于其高效率和优异的可扩展性,该算法能够精确地解决大型复杂电磁辐射和散射问题,包括复合材料和多尺度结构。

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