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A Pipelined and Parallel Architecture for Quantum Monte Carlo Simulations on FPGAs

机译:FPGA上的量子蒙特卡洛模拟的流水线和并行架构

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Recent advances in Field-Programmable Gate Array (FPGA) technology make reconfigurable computing using FPGAs an attractive platform for accelerating scientific applications. We develop a deeply pipelined and parallel architecture for Quantum Monte Carlo simulations using FPGAs. Quantum Monte Carlo simulations enable us to obtain the structural and energetic properties of atomic clusters. We experiment with different pipeline structures for each component of the design and develop a deeply pipelined architecture that provides the best performance in terms of achievable clock rate, while at the same time has a modest use of the FPGA resources. We discuss the details of the pipelined and generic architecture that is used to obtain the potential energy and wave function of a cluster of atoms.
机译:现场可编程门阵列(FPGA)技术的最新进展使使用FPGA的可重配置计算成为加速科学应用的有吸引力的平台。我们为使用FPGA的Quantum Monte Carlo仿真开发了深度流水线和并行架构。量子蒙特卡洛模拟使我们能够获得原子团簇的结构和能量性质。我们为设计的每个组件尝试了不同的流水线结构,并开发了深度流水线结构,该结构在可实现的时钟速率方面提供了最佳性能,同时适当地利用了FPGA资源。我们讨论了用于获得原子簇的势能和波函数的流水线和通用体系结构的详细信息。

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