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Large-scale time-harmonic electromagnetic field analysis using a multigrid solver on a distributed memory parallel computer

机译:在分布式内存并行计算机上使用多网格求解器进行大规模时谐波电磁场分析

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This paper reports on an investigation into large-scale parallel time-harmonic electromagnetic field analysis based on the finite element method. The parallel geometric multigrid preconditioned iterative solver for the resulting linear system was developed on a cluster of shared memory parallel computers. We propose a hybrid parallel ordering method for the parallelization of a multiplicative Schwarz smoother, which is a key component of the multigrid solver for electromagnetic field analysis. The method, using domain decomposition ordering for multi-process parallelism and introducing block multi-color ordering for multi-thread parallel processing, attains a high convergence rate with a small number of message passing interface communications and thread synchronizations. The numerical test confirms that the proposed method attains a solver performance more than twice as good as the conventional method based on multi-color ordering. Furthermore, an approximately 800 million degrees of freedom problem is successfully solved on 256 quad-core processors.
机译:本文报道了基于有限元方法的大规模并行时谐电磁场分析研究。在一组共享内存并行计算机上开发了用于最终线性系统的并行几何多网格预处理迭代求解器。我们提出了一种混合并行排序方法,用于并行化乘法Schwarz平滑器,这是用于电磁场分析的多网格求解器的关键组件。该方法将域分解排序用于多进程并行处理,并将块多色排序用于多线程并行处理,从而实现了较高的收敛速度,且消息传递接口通信和线程同步的消息数量较少。数值测试证实,该方法获得的求解器性能是基于多色排序的常规方法的两倍以上。此外,在256个四核处理器上成功解决了大约8亿个自由度问题。

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