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Hierarchical Parallelization of the Multilevel Fast Multipole Algorithm (MLFMA)

机译:多级快速多极算法(MLFMA)的分层并行化

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摘要

Due to its ${cal O}(Nlog N)$ complexity, the multilevel fast multipole algorithm (MLFMA) is one of the most prized algorithms of computational electromagnetics and certain other disciplines. Various implementations of this algorithm have been used for rigorous solutions of large-scale scattering, radiation, and miscellaneous other electromagnetics problems involving 3-D objects with arbitrary geometries. Parallelization of MLFMA is crucial for solving real-life problems discretized with hundreds of millions of unknowns. This paper presents the hierarchical partitioning strategy, which provides a very efficient parallelization of MLFMA on distributed-memory architectures. We discuss the advantages of the hierarchical strategy over previous approaches and demonstrate the improved efficiency on scattering problems discretized with millions of unknowns.
机译:由于其 $ {cal O}(Nlog N)$ 的复杂性,多级快速多极算法(MLFMA)是其中之一计算电磁学和某些其他学科的最有价值的算法。此算法的各种实现方式已用于解决大型散射,辐射以及涉及具有任意几何形状的3-D对象的其他电磁问题的严格解决方案。 MLFMA的并行化对于解决因数亿未知数而离散化的现实问题至关重要。本文提出了分层分区策略,该策略为分布式内存体系结构上的MLFMA提供了非常有效的并行化。我们讨论了分层策略相对于先前方法的优势,并展示了在离散成千上万未知数的散射问题上提高的效率。

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