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Parallel extraction and simplification of large isosurfaces using an extended tandem algorithm

机译:使用扩展串联算法并行提取和简化大等值面

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In order to deal with the common trend in size increase of volumetric datasets, in the past few years research in isosurface extraction has focused on related aspects such as surface simplification and load-balanced parallel algorithms. We present a parallel, block-wise extension of the tandem algorithm [Attali D, Cohen-Steiner D, Edelsbrunner H. Extraction and simplification of iso-surfaces in tandem. In: SGP '05: Proceedings of the third Eurographics symposium on Geometry processing. Aire-la-Ville, Switzerland: Eurographics Association; 2005. p. 139-148], which simplifies on the fly an isosurface being extracted. Our approach minimizes the overall memory consumption using an adequate block splitting and merging strategy along with the introduction of a component dumping mechanism that drastically reduces the amount of memory needed for particular datasets such as those encountered in geophysics. As soon as detected, surface components are migrated to the disk along with a meta-data index (oriented bounding box, volume, etc.) that permits further improved exploration scenarios (small component removal or particularly oriented component selection for instance). For ease of implementation, we carefully describe a master and worker algorithm architecture that clearly separates the four required basic tasks. We show several results of our parallel algorithm applied on a geophysical dataset of size 7000×1600×2000.
机译:为了应对体积数据集大小增加的共同趋势,在过去的几年中,等值面提取研究集中在相关方面,例如曲面简化和负载平衡并行算法。我们提出了串联算法的并行,逐块扩展[Attali D,Cohen-Steiner D,Edelsbrunner H.等值面的提取和简化。在:SGP '05:关于几何处理的第三届欧洲图形学研讨会论文集。瑞士Aire-la-Ville:欧洲地理学会; 2005。 139-148],它可以动态简化提取的等值面。我们的方法使用适当的块拆分和合并策略,并引入了组件转储机制,可最大程度地减少特定数据集(如地球物理中遇到的数据集)所需的内存量,从而将总体内存消耗降至最低。一旦检测到,表面成分就会与元数据索引(定向的边界框,体积等)一起迁移到磁盘,从而允许进一步改善勘探方案(例如,移除小成分或特别选择定向的成分)。为了易于实现,我们仔细描述了主算法和工作程序算法体系结构,该体系结构将四个必需的基本任务清楚地分开了。我们展示了将并行算法应用于大小为7000×1600×2000的地球物理数据集的一些结果。

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