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Efficient assembly for high order unstructured FEM meshes

机译:高阶非结构化FEM网格的高效组装

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The Finite Element Method (FEM) is a common numerical technique used for solving Partial Differential Equations (PDEs) on complex domain geometries. Large and unstructured FEM meshes are used to represent the computation domains which makes an efficient mapping of the Finite Element Method onto FPGAs particularly challenging. The focus of this paper is on assembly mapping, a key kernel of FEM, which induces the sparse and unstructured nature of the problem. We translate FEM vector assembly mapping into data access scheduling to perform vector assembly directly on the FPGA, as part of the hardware pipeline. We show how to efficiently partition the problem into dense and sparse sub-problems which map well onto FPGAs. The proposed approach, implemented on a single FPGA could outperform highly optimised FEM software running on two Xeon E5-2640 processors.
机译:有限元方法(FEM)是用于求解复杂域几何上的偏微分方程(PDE)的通用数值技术。大型且非结构化的FEM网格用于表示计算域,这使得将有限元方法有效映射到FPGA上尤其困难。本文的重点是程序集映射,这是FEM的关键内核,它导致问题的稀疏和非结构化性质。我们将FEM向量汇编映射转换为数据访问调度,以直接在FPGA上作为硬件管道的一部分执行向量汇编。我们展示了如何有效地将问题划分为密集和稀疏的子问题,这些问题可以很好地映射到FPGA。在单个FPGA上实施的拟议方法可以胜过在两个Xeon E5-2640处理器上运行的高度优化的FEM软件。

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