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Optimized Parallel Implementation of Gillespie's First Reaction Method on Graphics Processing Units

机译:Gillespie的“第一反应”方法在图形处理单元上的并行优化优化

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The simulation of chemical reacting systems is one of the most challenging topics in Systems Biology, due to their complexity and inherent randomness. The Gillespie's Stochastic Simulation Algorithm (SSA) is a standard algorithm to simulate well-stirred biochemical systems, butthe computational burden makes this algorithm slow to compute for many realistic problems. Recent programmability improvements allow non-graphics applications to leverage the Graphics Processing Units'(GPUs) computational power. This paper describes practical issues arising by a parallel implementation on GPU technology, shows how to reduce the memory space required by one of the most known versions of SSA, and presents the application of the implemented algorithm to a test model.
机译:由于其复杂性和固有的随机性,化学反应系统的模拟是系统生物学中最具挑战性的主题之一。 Gillespie的随机模拟算法(SSA)是用于模拟搅拌良好的生化系统的标准算法,但是计算量繁重,使得该算法对于许多现实问题的计算速度较慢。最近的可编程性改进允许非图形应用程序利用图形处理单元(GPU)的计算能力。本文介绍了在GPU技术上并行实现所引起的实际问题,展示了如何减少最知名版本的SSA所需的存储空间,并介绍了已实现算法在测试模型中的应用。

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