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Adaptive decomposition and remapping algorithms for object-space-parallel direct volume rendering of unstructured grids

机译:非结构化网格的对象空间并行直接体积渲染的自适应分解和重新映射算法

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Object space (OS) parallelization of an efficient direct volume rendering algorithm for unstructured grids on distributed-memory architectures is investigated. The adaptive OS decomposition problem is modeled as a graph partitioning (GP) problem using an efficient and highly accurate estimation scheme for view-dependent node and edge weighting. In the proposed model, minimizing the cutsize corresponds to minimizing the parallelization overhead due to the data communication and redundant computation/storage while maintaining the GP balance constraint corresponds to maintaining the computational load balance in parallel rendering. A GP-based, view-independent cell clustering scheme is introduced to induce more tractable view-dependent computational graphs for successive visualizations. As another contribution, a graph-theoretical remapping model is proposed as a solution to the general remapping problem and is used in minimization of the cell-data migration overhead. The remapping tool RM-MeTiS is developed by modifying the GP tool MeTiS and is used in partitioning the remapping graphs. Experiments are conducted using benchmark datasets on a 28-node PC cluster to evaluate the performance of the proposed models. (C) 2006 Elsevier Inc. All rights reserved.
机译:研究了分布式内存体系结构上非结构化网格的高效直接体绘制算法的对象空间(OS)并行化。自适应OS分解问题被建模为图形分割(GP)问题,使用有效且高度准确的估计方案来实现与视图相关的节点和边缘加权。在提出的模型中,最小化剪切大小对应于最小化由于数据通信和冗余计算/存储而导致的并行化开销,而保持GP平衡约束对应于保持并行渲染中的计算负载平衡。引入了基于GP的,与视图无关的单元聚类方案,以诱导更易于处理的与视图相关的计算图,以进行连续的可视化。作为另一贡献,提出了一种图形理论的重映射模型作为一般重映射问题的解决方案,并用于最小化单元数据迁移开销。重映射工具RM-MeTiS是通过修改GP工具MeTiS开发的,并用于划分重映射图。实验是使用基准数据集在28个节点的PC群集上进行的,以评估所提出模型的性能。 (C)2006 Elsevier Inc.保留所有权利。

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