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Using cellular automata for parallel simulation of laser dynamics with dynamic load balancing

机译:使用元胞自动机对具有动态负载平衡的激光动力学进行并行仿真

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摘要

We present an analysis of the feasibility of executing a parallel bioinspired model of laser dynamics, based on cellular automata (CA), on the usual target platform of this kind of applications: a heterogeneous non-dedicated cluster. As this model employs a synchronous CA, using the single program, multiple data (SPMD) paradigm, it is not clear in advance if an appropriate efficiency can be obtained on this kind of platform. We have evaluated its performance including artificial load to simulate other tasks or jobs submitted by other users. A dynamic load balancing strategy with two main differences from most previous implementations of CA based models has been used. First, it is possible to migrate load to cluster nodes initially not belonging to the pool. Second, a modular approach is taken in which the model is executed on top of a dynamic load balancing tool - the Dynamite system - gaining flexibility. Very satisfactory results have been obtained, with performance increases from 60% to 80%.
机译:我们介绍了在这种应用程序的常见目标平台上执行基于细胞自动机(CA)的激光动力学并行生物启发模型的可行性分析:异构非专用集群。由于该模型采用同步CA,因此使用单个程序,多个数据(SPMD)范例,因此尚不清楚是否可以在这种平台上获得适当的效率。我们已经评估了它的性能,包括人工负载以模拟其他用户提交的其他任务或作业。使用了与基于CA的模型的大多数以前的实现有两个主要区别的动态负载平衡策略。首先,可以将负载迁移到最初不属于池的群集节点。其次,采用模块化方法,其中该模型在动态负载平衡工具-Dynamite系统之上执行,从而获得了灵活性。获得了非常令人满意的结果,性能从60%提高到80%。

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