DocumentCode :
963799
Title :
A Practical Approach to Morse-Smale Complex Computation: Scalability and Generality
Author :
Gyulassy, A. ; Bremer, P.-T. ; Hamann, B. ; Pascucci, V.
Author_Institution :
Livermore Nat. Lab., UC Davis & Lawrence, Livermore, CA
Volume :
14
Issue :
6
fYear :
2008
Firstpage :
1619
Lastpage :
1626
Abstract :
The Morse-Smale (MS) complex has proven to be a useful tool in extracting and visualizing features from scalar-valued data. However, efficient computation of the MS complex for large scale data remains a challenging problem. We describe a new algorithm and easily extensible framework for computing MS complexes for large scale data of any dimension where scalar values are given at the vertices of a closure-finite and weak topology (CW) complex, therefore enabling computation on a wide variety of meshes such as regular grids, simplicial meshes, and adaptive multiresolution (AMR) meshes. A new divide-and-conquer strategy allows for memory-efficient computation of the MS complex and simplification on-the-fly to control the size of the output. In addition to being able to handle various data formats, the framework supports implementation-specific optimizations, for example, for regular data. We present the complete characterization of critical point cancellations in all dimensions. This technique enables the topology based analysis of large data on off-the-shelf computers. In particular we demonstrate the first full computation of the MS complex for a 1 billion/10243 node grid on a laptop computer with 2 Gb memory.
Keywords :
data visualisation; divide and conquer methods; Morse-Smale complex computation; critical point cancellations; divide-and-conquer strategy; scalar-valued data; weak topology complex; Adaptive mesh refinement; Data analysis; Data mining; Data visualization; Feature extraction; Grid computing; Large-scale systems; Scalability; Size control; Topology; Index Terms— Morse-Smale complex; Topology-based analysis; large scale data.;
fLanguage :
English
Journal_Title :
Visualization and Computer Graphics, IEEE Transactions on
Publisher :
ieee
ISSN :
1077-2626
Type :
jour
DOI :
10.1109/TVCG.2008.110
Filename :
4658183
Link To Document :
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