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A Performance Model of Non-deterministic Particle Transport on Large-Scale Systems

机译:大规模系统非确定性粒子运输性能模型

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In this work we present a predictive analytical model that encompasses the performance and scaling characteristics of a non-deterministic particle transport application, MCNP. Previous studies on the scalability of parallel Monte Carlo eigenvalue calculations have been rather general in nature [1]. It can be used for the simulation of neutron, photon, electron, or coupled transport, and has found uses in many problem areas. The performance model is validated against measurements on an AlphaServer ES40 system showing high accuracy across many processor/problem combinations. It is parametric with both application characteristics (e.g. problem size), and system characteristics (e.g. communication latency, bandwidth, achieved processing rate) serving as input. The model is used to provide insight into the achievable performance that should be possible on systems containing thousands of processors and to quantify the impact that possible improvements in sub-system performance may have. In addition, the impact on performance of modifying the communication structure of the code is also quantified.
机译:在这项工作中,我们提出了一种预测分析模型,包括非确定性粒子传输应用程序,MCNP的性能和缩放特性。以前关于平行蒙特卡罗特征值计算的可扩展性的研究在自然界中相当一般[1]。它可以用于模拟中子,光子,电子或耦合运输,并且在许多问题区域中发现了用于许多问题。性能模型是针对allowAserver ES40系统上的测量验证,在许多处理器/问题组合中显示出高精度。它是参数,具有应用特征(例如问题大小)和系统特征(例如,通信延迟,带宽,实现处理率)用作输入。该模型用于提供洞察可实现的可实现的性能,这些性能应该在包含数千个处理器的系统上,并量化可能有可能有改进的影响可能具有。此外,还量化了对修改码的通信结构的性能的影响。

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