Modeling and optimizing flow networks with several constrains using sequential dynamical systems

bibb.id784667
bibb.participationBIBB-Mitarbeiterde
dc.contributor.authorDörpinghaus, Jens [Verfasser]de
dc.contributor.authorTiemann, Michael [Verfasser]de
dc.contributor.authorHelmrich, Robert [Verfasser]de
dc.date.accessioned2026-04-07T12:33:28Z
dc.date.available2026-04-07T12:33:28Z
dc.date.issued2025
dc.description.abstract"This paper introduces a novel framework for modeling and optimizing flow networks with multiple constraints using Sequential Dynamical Systems (SDS). We have extended the Sequential Flow Network (SFN) definition to encompass both Sequential Flow Networks (SFN) and Bounded Sequential Flow Networks (bSFN), which incorporate directional constraints and weighted transitions. These models can be utilized to simulate intricate real-world applications, such as educational pathways and labor market issues. In order to optimize local flow to specific nodes with minimal global impact, we propose three novel approaches: a linear programming formulation and two greedy heuristics. The evaluation metrics employed are defined as a means to balance local improvement and global disturbance. The efficacy of these methods is evaluated through experimentation on both artificial and real-world-inspired random networks. Notwithstanding the encouraging results and observations yielded by the experimental analysis of random graphs, suggestions for further research will be made in order to overcome the limitations of the present study." (Authors' abstract, BIBB-Doku)de
dc.description.statementofresponsibilityJens Dörpinghaus, Michael Tiemann, Robert Helmrichde
dc.format.extentSeite 55-62
dc.format.illustrationIllustrationende
dc.format.illustrationDiagrammede
dc.format.mediumElektronische Ressourcede
dc.format.mediumSammelbandbeitragde
dc.identifier.uriDOI:10.15439/2025F1746
dc.identifier.urihttps://bibb-dspace.bibb.de/jspui/handle/BIBB/784667
dc.language.isoende
dc.rdacarrier.codecrde
dc.rdacarrier.termOnline-Ressourcede
dc.rdacontent.codetxtde
dc.rdacontent.sourcerdacontentde
dc.rdacontent.termTextde
dc.rdamedia.codecde
dc.rdamedia.sourcerdacontentde
dc.rdamedia.termComputermediende
dc.relation.haspartAnnals of Computer Science and Information Systems, (2025), Vol. 45: Communication Papers of the 20th Conference on Computer Science and Intelligence Systems (FedCSIS), September 14–17, 2025. Kraków, Poland / Marek Bolanowski [Hrsg.] ; Maria Ganzha [Hrsg.] ; Leszek Maciaszek [Hrsg.] ; Marcin Paprzycki [Hrsg.] ; Dominik Ślęzak [Hrsg.]
dc.relation.ispartofAnnals of Computer Science and Information Systems, (2025), Vol. 45: Communication Papers of the 20th Conference on Computer Science and Intelligence Systems (FedCSIS), September 14–17, 2025. Kraków, Poland / Marek Bolanowski [Hrsg.] ; Maria Ganzha [Hrsg.] ; Leszek Maciaszek [Hrsg.] ; Marcin Paprzycki [Hrsg.] ; Dominik Ślęzak [Hrsg.]
dc.rights.licenseDeutsches Urheberrecht
dc.source.urihttps://annals-csis.org/Volume_45/drp/pdf/1746.pdf (Volltext)de
dc.subject.ddc370de
dc.subject.otherNetzwerkanalysede
dc.subject.otherProgrammierung
dc.subject.otherModellierung
dc.subject.otherHeuristik
dc.titleModeling and optimizing flow networks with several constrains using sequential dynamical systemsde

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