Publication:
Integer‐Sheet‐Pump Quantization for Hexahedral Meshing

cris.virtual.author-orcid0000-0002-3190-1341
cris.virtualsource.author-orcid03b40323-360e-4358-b909-08018f29103c
datacite.rightsopen.access
dc.contributor.authorBrückler, H.
dc.contributor.authorBommes, D.
dc.contributor.authorCampen, M.
dc.date.accessioned2025-09-18T08:18:54Z
dc.date.available2025-09-18T08:18:54Z
dc.date.issued2024-07-31
dc.description.abstractSeveral state-of-the-art algorithms for semi-structured hexahedral meshing involve a so called quantization step to decide on the integer DoFs of the meshing problem, corresponding to the number of hexahedral elements to embed into certain regions of the domain. Existing reliable methods for quantization are based on solving a sequence of integer quadratic programs (IQP). Solving these in a timely and predictable manner with general-purpose solvers is a challenge, even more so in the open-source field. We present here an alternative robust and efficient quantization scheme that is instead based on solving a series of continuous linear programs (LP), for which solver availability and efficiency are not an issue. In our formulation, such LPs are used to determine where inflation or deflation of virtual hexahedral sheets are favorable. We compare our method to two implementations of the former IQP formulation (using a commercial and an open-source MIP solver, respectively), finding that (a) the solutions found by our method are near-optimal or optimal in most cases, (b) these solutions are found within a much more predictable time frame, and (c) the state of the art run time is outperformed, in the case of using the open-source solver by orders of magnitude.
dc.description.sponsorshipInstitute of Computer Science, Computer Graphics Group (CGG)
dc.description.sponsorshipInstitute of Computer Science
dc.identifier.doi10.48620/91396
dc.identifier.publisherDOI10.1111/cgf.15131
dc.identifier.urihttps://boris-portal.unibe.ch/handle/20.500.12422/218988
dc.language.isoen
dc.publisherWiley
dc.relation.ispartofComputer Graphics Forum
dc.relation.issn0167-7055
dc.relation.issn1467-8659
dc.titleInteger‐Sheet‐Pump Quantization for Hexahedral Meshing
dc.typearticle
dspace.entity.typePublication
dspace.file.typetext
oaire.citation.issue5
oaire.citation.volume43
oairecerif.author.affiliationInstitute of Computer Science, Computer Graphics Group (CGG)
oairecerif.author.affiliation2Institute of Computer Science
unibe.additional.sponsorshipInstitute of Computer Science
unibe.contributor.orcid0000-0002-3190-1341
unibe.contributor.roleauthor
unibe.description.ispublishedpub
unibe.refereedtrue
unibe.subtype.articlejournal

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