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Implementation of Jacobi Iterative method on Graphics Processor Unit

机译:Jacobi迭代方法在图形处理器单元上的实现

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摘要

CUDA is a new computing architecture introduced by NVIDIA Corporation, aiming at general purpose computation on GPU. The architecture has strong compute power in the compute-intensive applications and data-intensive applications, so in recent years, how the framework is applied to the scientific computing has become a hot research. The iterative method for solving systems of linear equations in engineering and scientific computing has a very farranging application. The algorithm provided with high computing intensity and parallelism is very suitable for CUDA architecture. In this paper, Jacobi iterative method is implemented on CUDA-enable GPU. The experimental results show that this iterative method can effectively make use of the CUDA-enable GPU computing power and achieve good performance.
机译:CUDA是NVIDIA Corporation推出的一种新的计算体系结构,旨在在GPU上进行通用计算。该架构在计算密集型应用程序和数据密集型应用程序中具有强大的计算能力,因此,近年来,如何将该框架应用于科学计算已成为热门研究。在工程和科学计算中求解线性方程组的迭代方法具有非常广泛的应用。具有高计算强度和并行性的算法非常适合CUDA体系结构。本文在支持CUDA的GPU上实现了Jacobi迭代方法。实验结果表明,该迭代方法可以有效利用支持CUDA的GPU计算能力,并具有良好的性能。

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