Parallel numerical simulations of three-dimensional electromagnetic radiation with MPI-CUDA paradigms

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Abstract

Using parallel computation can enhance the performance of numerical simulation of electromagnetic radiation and get great runtime reduction. We simulate the electromagnetic radiation calculation based on the multicore CPU and GPU Parallel Architecture Clusters by using MPI-OpenMP and MPI-CUDA hybrid parallel algorithm. This is an effective solution comparing to the traditional finite-difference time-domain method which has a shortage in the calculation of the electromagnetic radiation on the problem of inadequate large data space and time. What is more, we use regional segmentation, subregional data communications, consolidation, and other methods to improve procedures nested parallelism and finally verify the correctness of the calculation results. Studying these two hybrid models of parallel algorithms run on the high-performance cluster computer, we draw the conclusion that both models are suitable for large-scale numerical calculations, and MPI-CUDA hybrid model can achieve higher speedup.

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He, B., Tang, L., Xie, J., Wang, X., & Song, A. (2015). Parallel numerical simulations of three-dimensional electromagnetic radiation with MPI-CUDA paradigms. Mathematical Problems in Engineering, 2015. https://doi.org/10.1155/2015/823426

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