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dc.contributor.authorRen, Jingen_US
dc.contributor.authorMelzi, Simoneen_US
dc.contributor.authorWonka, Peteren_US
dc.contributor.authorOvsjanikov, Maksen_US
dc.contributor.editorDigne, Julie and Crane, Keenanen_US
dc.date.accessioned2021-07-10T07:46:17Z
dc.date.available2021-07-10T07:46:17Z
dc.date.issued2021
dc.identifier.issn1467-8659
dc.identifier.urihttps://doi.org/10.1111/cgf.14359
dc.identifier.urihttps://diglib.eg.org:443/handle/10.1111/cgf14359
dc.description.abstractWe propose a novel discrete solver for optimizing functional map-based energies, including descriptor preservation and promoting structural properties such as area-preservation, bijectivity and Laplacian commutativity among others. Unlike the commonly-used continuous optimization methods, our approach enforces the functional map to be associated with a pointwise correspondence as a hard constraint, which provides a stronger link between optimized properties of functional and point-topoint maps. Under this hard constraint, our solver obtains functional maps with lower energy values compared to the standard continuous strategies. Perhaps more importantly, the recovered pointwise maps from our discrete solver preserve the optimized for functional properties and are thus of higher overall quality. We demonstrate the advantages of our discrete solver on a range of energies and shape categories, compared to existing techniques for promoting pointwise maps within the functional map framework. Finally, with this solver in hand, we introduce a novel Effective Functional Map Refinement (EFMR) method which achieves the state-of-the-art accuracy on the SHREC'19 benchmark.en_US
dc.publisherThe Eurographics Association and John Wiley & Sons Ltd.en_US
dc.subjectComputing methodologies
dc.subjectShape analysis
dc.subjectTheory of computation
dc.subjectComputational geometry
dc.titleDiscrete Optimization for Shape Matchingen_US
dc.description.seriesinformationComputer Graphics Forum
dc.description.sectionheadersShape Matching
dc.description.volume40
dc.description.number5
dc.identifier.doi10.1111/cgf.14359
dc.identifier.pages81-96


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  • 40-Issue 5
    Geometry Processing 2021 - Symposium Proceedings

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