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An Application of GPU Parallel Computing to Power Flow Calculation in HVDC Networks

机译:GPU并行计算在高压直流输电潮流计算中的应用

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Numerical computation on GPU has become easily accessible and offers good computation power for relatively little cost. Recently an application of Newton-Rap son method for analyzing power flow in multi-terminal high-voltage direct current (HVDC) networks was proposed and shown to have good results on five terminal grids. Since this method involves costly matrix operation, especially the inverse, increasing the number of terminals in the grid yields prohibitively large execution times in sequential operation. To address this issue, we adjust the algorithm so that it benefits from parallel computation and test our approach on recent GPU from NVidia. We give experimental results for grids up to few thousand terminals and show that execution time is still acceptable for real applications. We also provide some benchmarks of the GPU computation compared with other platforms.
机译:GPU上的数值计算已变得易于访问,并以相对较低的成本提供了良好的计算能力。最近,提出了一种牛顿-拉普森方法在分析多端子高压直流(HVDC)网络中的功率流中的应用,并在五个端子网格上显示出良好的效果。由于该方法涉及昂贵的矩阵运算,尤其是逆运算,因此增加网格中终端的数量会导致顺序运算中执行时间过长。为了解决这个问题,我们调整了算法,使其从并行计算中受益,并在NVidia的最新GPU上测试了我们的方法。我们给出了多达数千个终端的网格的实验结果,并表明执行时间对于实际应用仍然是可以接受的。与其他平台相比,我们还提供了一些GPU计算基准。

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