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A hardware acceleration of the time domain boundary integral equation method for the wave equation in two dimensions

机译:二维波动方程的时域边界积分方程方法的硬件加速

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We aimed at reducing the runtime of the time domain boundary integral equation method (TDBIEM) for the two-dimensional scalar wave equation by the help of a special-purpose computer MDGRAPE-2, which is a high-performance vector-parallel computer dedicated to computing long-range forces in classical molecular dynamics simulations. To this end, we presented a formulation to make MDGRAPE-2 compute the layer potential that is the most time-consuming in a run of the TDBIEM, considering to minimise the amount of data-transfer between MDGRAPE-2 and the host computer. The newly implemented TDBIEM code using three MDGRAPE-2s boards was about 109 times faster than the conventional code in an analysis of 5400 boundary elements and 640 time steps. We also demonstrated that the present hardware acceleration helps to perform large-scale simulations such as light propagation in photonic crystals.
机译:我们的目标是借助专用计算机MDGRAPE-2减少二维标量波动方程的时域边界积分方程方法(TDBIEM)的运行时间,该专用计算机是高性能的矢量并行计算机,在经典分子动力学模拟中计算远程力。为此,我们考虑到最小化MDGRAPE-2与主机之间的数据传输量,提出了一种使MDGRAPE-2计算TDBIEM运行中最耗时的层电势的公式。在分析5400个边界元素和640个时间步长的过程中,使用三个MDGRAPE-2s板新实施的TDBIEM代码比传统代码快约109倍。我们还证明了当前的硬件加速有助于执行大规模仿真,例如光子晶体中的光传播。

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