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FPGA Hardware Acceleration of Monte Carlo Simulations for the Ising Model

机译:Ising模型的Monte Carlo仿真的FPGA硬件加速

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A two-dimensional Ising model with nearest-neighbors ferromagnetic interactions is implemented in a Field Programmable Gate Array (FPGA) board. Extensive Monte Carlo simulations were carried out using an efficient hardware representation of individual spins and a combined global-local LFSR random number generator. Consistent results regarding the descriptive properties of magnetic systems, like energy, magnetization and susceptibility are obtained while a speed-up factor of approximately six times is achieved in comparison to previous FPGA-based published works and almost times in comparison to a standard CPU simulation. A detailed description of the logic design used is given together with a careful analysis of the quality of the random number generator used. The obtained results confirm the potential of FPGAs for analyzing the statistical mechanics of magnetic systems.
机译:在现场可编程门阵列(FPGA)板上实现了具有最近邻居铁磁相互作用的二维Ising模型。使用单个自旋的有效硬件表示和组合的全局局部LFSR随机数生成器进行了广泛的蒙特卡洛模拟。获得了与磁性系统的描述特性(如能量,磁化强度和磁化率)一致的结果,而与以前的基于FPGA的已发表论文相比,加速因子达到了约六倍,而与标准CPU仿真相比则达到了近两倍。给出了所使用的逻辑设计的详细说明,并仔细分析了所使用的随机数发生器的质量。获得的结果证实了FPGA在分析磁性系统的统计力学方面的潜力。

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