Large-Scale Integer Linear Programming for Orientation Preserving 3D Shape Matching
Thomas Windheuser, Ulrich Schlickwei, Frank R. Schimdt, Daniel Cremers
In Computer Graphics Forum, 30(5), August 2011.
Abstract: We study an algorithmic framework for computing an elastic orientation-preserving matching of non-rigid 3D shapes. We outline an Integer Linear Programming formulation whose relaxed version can be minimized globally in polynomial time. Because of the high number of optimization variables, the key algorithmic challenge lies in efficiently solving the linear program. We present a performance analysis of several Linear Programming algorithms on our problem. Furthermore, we introduce a multiresolution strategy which allows the matching of higher resolution models.
@article{Windheuser:2011:LIL,
author = {Thomas Windheuser and Ulrich Schlickwei and Frank R. Schimdt and Daniel Cremers},
title = {Large-Scale Integer Linear Programming for Orientation Preserving 3D Shape Matching},
journal = {Computer Graphics Forum},
volume = {30},
number = {5},
pages = {1471--1480},
month = aug,
year = {2011},
}
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