首页> 外文会议>Compumag Conference on the Computation of Electromagnetic Fields vol.1; 20050626-30; Shenyang(CN) >Analysis and Design of Parallel 3-D Mesh Refinement Dynamic Load Balancing Algorithms for Finite Element Electromagnetics with Tetrahedra
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Analysis and Design of Parallel 3-D Mesh Refinement Dynamic Load Balancing Algorithms for Finite Element Electromagnetics with Tetrahedra

机译:四面体有限元电磁的并行3-D网格细化动态负载平衡算法分析与设计

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摘要

We develop a simulation-based approach for the computational analysis and design of dynamic load balancing algorithms in parallel, 3-D, unstructured mesh refinement with tetrahedra. A Petri Nets model is implemented based on a random polling algorithm and the target multiprocessor architecture, which simulates the behavior of the parallel mesh refinement. Subsequently, estimates for performance measures are derived from discrete event simulations. The benefits of this new approach for developing high performance parallel mesh refinement algorithms are demonstrated with results for an example geometric mesh refinement model.
机译:我们开发了一种基于仿真的方法,用于通过四面体并行,3-D,非结构化网格细化来进行动态负载平衡算法的计算分析和设计。 Petri Nets模型是基于随机轮询算法和目标多处理器体系结构实现的,该模型可模拟并行网格细化的行为。随后,从离散事件模拟中得出性能度量的估计。通过示例几何网格细化模型的结果,证明了这种开发高性能并行网格细化算法的新方法的优势。

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