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Analysis and implementation of the discrete element method using a dedicated highly parallel architecture in reconfigurable computing

机译:可重构计算中使用专用高度并行体系结构的离散元素方法的分析和实现

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The Discrete Element Method (DEM) is a numerical model to describe the mechanical behaviour of discontinuous bodies. It has been traditionally used to simulate particle flows (e.g. sand, sugar), but is becoming more popular as a method to represent solid materials. The DEM is very computationally expensive, but has properties that make it amenable to acceleration by reconfigurable computing. This paper describes the implementation of a dedicated hardware architecture for the DEM implemented on an FPGA, which is capable of giving a speed-zip of about 30 times compared to an optimised software version running on a fast microprocessor.
机译:离散元素方法(DEM)是描述不连续物体力学行为的数值模型。传统上,它已用于模拟粒子流(例如沙子,糖),但作为表示固体材料的一种方法正变得越来越流行。 DEM在计算上非常昂贵,但是其属性使其可以通过可重新配置的计算来加速。本文描述了在FPGA上实现的DEM专用硬件体系结构的实现,与在快速微处理器上运行的优化软件版本相比,该体系能提供约30倍的速度压缩。

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