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GPU-Based Massively Parallel 3-D HIE-FDTD Method for High-Speed Electromagnetic Field Simulation

机译:基于GPU的大规模并行3-D HIE-FDTD方法用于高速电磁场仿真

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摘要

This paper describes the implementation and estimation of a hybrid implicit–explicit (HIE)-finite-difference time-domain (FDTD) method on graphics processing unit (GPU) for massively parallel electromagnetic field simulation. The HIE-FDTD method was proposed for the analysis of the shielding effectiveness of an enclosure and is very useful for the simulation of computational domain with thin unit cell such as printed circuit board. Since the computational domain can be divided arbitrarily along the $x$ - and $y$-directions in the HIE-FDTD method, this method can be suitable for the parallel computing. Thus, the HIE-FDTD method is implemented on GPU and applied to the large-scale problems. Finally, it is shown that the performance of the HIE-FDTD method on GPU is drastically superior to the HIE-FDTD method on single CPU.
机译:本文介绍了在图形处理单元(GPU)上进行大规模并行电磁场模拟的混合隐式-显式(HIE)-时差有限域(FDTD)方法的实现和估计。提出了HIE-FDTD方法来分析外壳的屏蔽效果,该方法对于模拟薄单元电池(如印刷电路板)的计算域非常有用。由于在HIE-FDTD方法中可以沿$ x $和$ y $方向任意划分计算域,因此该方法适用于并行计算。因此,HIE-FDTD方法在GPU上实现并应用于大规模问题。最后,结果表明,GPU上的HIE-FDTD方法的性能大大优于单个CPU上的HIE-FDTD方法。

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