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Using Unified Parallel C to Parallelize the FDTD method of Computational Electrodynamics

机译:使用统一的并行C并将COMPORTION电动动力学的FDTD方法并行化

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This paper discusses a parallel implementation of the Finite-Difference Time-Domain (FDTD) method using Unified Parallel C (UPC). UPC is an extension of ANSI C - primarily designed for programming distributed memory parallel hardware. The FDTD method is a powerful and widely used numerical technique in computational electromagnetics community. It is a resource - CPU cycles and memory - hungry technique. Consequently, a parallel implementation is highly desirable to decrease time-to-solution and be able to study larger problems with limited resources. To the best of our knowledge, this is the first attempt to exploit UPC to parallelize the FDTD method. We evaluate the performance of our implementation on a cluster of four SunFire v890 compute nodes-each equipped with 16 processing cores-and report impressive speedups.
机译:本文讨论了使用统一并行C(UPC)的有限差分时间域(FDTD)方法的平行实现。 UPC是ANSI C的扩展 - 主要用于编程分布式内存并行硬件。 FDTD方法是计算电磁共同体中的强大且广泛使用的数值技术。它是一种资源 - CPU周期和记忆饥饿的技术。因此,非常希望平行实现来减少解决时间并能够研究有限的资源的更大问题。据我们所知,这是第一次尝试利用UPC并行化FDTD方法。我们评估我们在四个SunFire V890计算节点的集群中执行的表现 - 每个都配备了16个处理核心,并报告了令人印象深刻的加速。

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