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Efficient out-of-GPU memory strategies for solving matrix equation generated by method of moments

机译:用于解决矩量法生成的矩阵方程的高效GPU外内存策略

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摘要

The numerical solution of the dense linear complex valued system of equations generated by the method of moments (MoMs) generally proceeds by factoring the impedance matrix into LU decomposition. Depending on available hardware resources, the LU algorithm can be executed either on sequential or parallel computers. A straightforward parallel implementation of LU factorisation does not yield a well distributed workload, and therefore it is the computationally most expensive step of the MoMs process, especially when adapting to the GPU technology. Some performance improvement of LU decomposition can be achieved by applying a hybrid approach to the parallel processing model. In this reported work, the problem of accelerating an out-of-core-like LU solver on a heterogeneous low-cost single GPU/CPU computing platform is addressed. For this, a variable panel-width tuning scheme combined with a hybrid panel-based LU decomposition method is employed, which is something of a novelty in the development of dense linear algebra software. To demonstrate the efficiency of the proposed approach some numerical results are provided.
机译:通过矩量法(MoMs)生成的密集线性复数值方程组的数值解通常通过将阻抗矩阵分解为LU分解来进行。根据可用的硬件资源,LU算法可以在顺序或并行计算机上执行。 LU分解的直接并行实现不会产生分布良好的工作负载,因此,这是MoMs过程中计算上最昂贵的步骤,尤其是在适应GPU技术时。通过将混合方法应用于并行处理模型,可以实现LU分解的一些性能改进。在这份报告的工作中,解决了在异构低成本单个GPU / CPU计算平台上加速类似内核的LU解算器的问题。为此,采用了可变面板宽度调整方案,并结合了基于混合面板的LU分解方法,这在稠密线性代数软件的开发中是新颖的。为了证明所提出方法的有效性,提供了一些数值结果。

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  • 来源
    《Electronics Letters》 |2015年第19期|1542-1544|共3页
  • 作者

    Topa T.;

  • 作者单位

    Inst. of Electron., Silesian Univ. of Technol., Gliwice, Poland;

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  • 正文语种 eng
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