Publication Type |
pre-print |
School or College |
College of Engineering |
Department |
Computing, School of |
Creator |
Pascucci, Valerio |
Other Author |
Gyulassy, Attila; Bremer, Peer-Timo |
Title |
Computing morse-smale complexes with accurate geometry |
Date |
2012-01-01 |
Description |
Topological techniques have proven highly successful in analyzing and visualizing scientific data. As a result, significant efforts have been made to compute structures like the Morse-Smale complex as robustly and efficiently as possible. However, the resulting algorithms, while topologically consistent, often produce incorrect connectivity as well as poor geometry. These problems may compromise or even invalidate any subsequent analysis. Moreover, such techniques may fail to improve even when the resolution of the domain mesh is increased, thus producing potentially incorrect results even for highly resolved functions. To address these problems we introduce two new algorithms: (i) a randomized algorithm to compute the discrete gradient of a scalar field that converges under refinement; and (ii) a deterministic variant which directly computes accurate geometry and thus correct connectivity of the MS complex. The first algorithm converges in the sense that on average it produces the correct result and its standard deviation approaches zero with increasing mesh resolution. The second algorithm uses two ordered traversals of the function to integrate the probabilities of the first to extract correct (near optimal) geometry and connectivity. We present an extensive empirical study using both synthetic and real-world data and demonstrates the advantages of our algorithms in comparison with several popular approaches. |
Type |
Text |
Publisher |
Institute of Electrical and Electronics Engineers (IEEE) |
Volume |
18 |
Issue |
12 |
First Page |
2014 |
Last Page |
2022 |
Dissertation Institution |
University of Utah |
Language |
eng |
Bibliographic Citation |
Gyulassy, A., Bremer, P.-T., & Pascucci, V. (2012). Computing morse-smale complexes with accurate geometry. IEEE Transactions on Visualization and Computer Graphics, 18(12), 6327205, 2014-22. |
Rights Management |
(c) 2012 IEEE. Personal use of this material is permitted. However, permission to reprint/republish this material for advertising or promotional purposes or for creating new collective works for resale or redistribution to servers or lists, or to reuse any copyrighted component of this work in other works must be obtained from the IEEE. |
Format Medium |
application/pdf |
Format Extent |
842,667 bytes |
Identifier |
uspace,18012 |
ARK |
ark:/87278/s60s0761 |
Setname |
ir_uspace |
ID |
708213 |
Reference URL |
https://collections.lib.utah.edu/ark:/87278/s60s0761 |