DocumentCode :
1865776
Title :
A unified infrastructure for parallel out-of-core isosurface extraction and volume rendering of unstructured grids
Author :
Chiang, Yi-Jen ; Farias, Ricardo ; Silva, Claudio T. ; Wei, Bin
Author_Institution :
Dept. of Comput. & Inf. Sci., Polytech. Univ. Brooklyn, NY, USA
fYear :
2001
fDate :
23-23 Oct. 2001
Firstpage :
59
Lastpage :
151
Abstract :
We present a unified infrastructure for parallel out-of-core isosurface extraction and volume rendering of large unstructured grids on distributed-memory parallel machines. We parallelize the out-of-core isosurface extraction algorithm of Chiang et al. (1998) and the out-of-core ZSweep technique (Farias and Silva, 2001) for direct volume rendering, using the meta-cell technique as a unified underlying building block. Our one-time preprocessing first partitions the dataset into meta-cells that are stored in disk. From the meta-cells, we build a BBIO tree in disk, which can be used to speed up isosurface extraction, and a bounding-box file in disk, which is used for direct volume rendering. At run-time, we use a simple self-scheduling scheme to achieve load balancing among the processors. We perform several experiments on a sixteen-node cluster of PCs connected by a gigabit Ethernet, using datasets as large as 6.6 million cells. For the larger datasets, we have found that both our isosurface extraction and direct volume rendering approaches are perfectly scalable up to sixteen nodes.
Keywords :
data visualisation; distributed memory systems; rendering (computer graphics); resource allocation; workstation clusters; BBIO tree; Ethernet; bounding-box file; direct volume rendering; distributed-memory parallel machines; load balancing; meta-cell technique; out-of-core ZSweep technique; parallel computation; parallel out-of-core isosurface extraction; scientific visualization; self-scheduling scheme; sixteen-node PC cluster; unified infrastructure; unstructured grids; volume rendering; Concurrent computing; Data mining; Data visualization; Ethernet networks; Isosurfaces; Load management; Parallel machines; Partitioning algorithms; Personal communication networks; Runtime;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Parallel and Large-Data Visualization and Graphics, 2001. Proceedings. IEEE 2001 Symposium on
Conference_Location :
San Diego, CA, USA
Print_ISBN :
0-7803-7223-9
Type :
conf
DOI :
10.1109/PVGS.2001.964405
Filename :
964405
Link To Document :
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