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RESEARCH ON ACCELERATION METHOD OF REACTOR PHYSICS BASED ON FPGA PLATFORMS

机译:基于FPGA平台的反应堆物理加速方法研究

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The physical designs of the new concept reactors which have complex structure, various materials and neutronic energy spectrum, have greatly improved the requirements to the calculation methods and the corresponding computing hardware. Along with the widely used parallel algorithm, heterogeneous platforms architecture has been introduced into numerical computations in reactor physics. Because of the natural parallel characteristics, the CPU-FPGA architecture is often used t o accelerate numerical computation. This paper studies the application and features of this kind of heterogeneous platforms used in numerical calculation of reactor physics through practical examples. After the designed neutron diffusion module based on CPU-FPGA architecture achieves a 11.2 speed up factor, it is proved to be feasible to apply this kind of heterogeneous platform into reactor physics.
机译:新概念反应堆的物理设计具有复杂的结构,多种材料和中子能谱,极大地提高了对计算方法和相应计算硬件的要求。伴随着广泛使用的并行算法,异构平台架构已被引入到反应堆物理的数值计算中。由于自然的并行特性,通常使用CPU-FPGA架构来加速数值计算。本文通过实例,研究了这种用于反应堆物理数值计算的异构平台的应用和特点。在基于CPU-FPGA架构设计的中子扩散模块达到11.2的加速因子后,证明将这种异构平台应用于反应堆物理学是可行的。

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