首页> 外文会议>ICA3PP 2011;International conference on algorithms and architectures for parallel processing >Performance Evaluation of the Three-Dimensional Finite-Difference Time-Domain(FDTD) Method on Fermi Architecture GPUs
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Performance Evaluation of the Three-Dimensional Finite-Difference Time-Domain(FDTD) Method on Fermi Architecture GPUs

机译:Fermi架构GPU上的三维有限差分时域(FDTD)方法的性能评估

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GPUs excel at solving many parallel problems and hence dramatically increase the computation performance. In electrodynamics and many other fields, FDTD method is widely used due to its simplicity, accuracy, and practicability. In this paper, we applied the FDTD method on the Fermi Architecture GPUs, the latest product of NVidia, for a better understanding of Fermi's new features, such as the double precision support and improved memory hierarchy. Then we make a comparison between the strategies using the shared memory, the traditional optimization method on GPUs, and using LI cache. Next, the paper provides insights into the disparity of these two strategies. We demonstrate that parallel computations only using LI cache can reach the similar or even better performance as the traditional optimization method using the shared memory does when the dataset is not too large or the frequency of repeated use of the related data is low.
机译:GPU擅长解决许多并行问题,因此可以显着提高计算性能。在电动力学和许多其他领域,FDTD方法由于其简单性,准确性和实用性而被广泛使用。在本文中,我们将FDTD方法应用于NVidia的最新产品Fermi Architecture GPU,以更好地理解Fermi的新功能,例如双精度支持和改进的内存层次结构。然后,我们对使用共享内存,GPU上的传统优化方法以及使用LI缓存的策略进行了比较。接下来,本文提供了对这两种策略的差异的见解。我们证明,当数据集不太大或相关数据的重复使用频率较低时,仅使用LI缓存的并行计算可以达到与使用共享内存的传统优化方法相似或什至更好的性能。

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