An Ontology-Based Approach to Supporting Decision-Making in Cyber-Physical Systems: A Production Process Scenario

Lade...
Vorschaubild
Autor:innen
Autor:in (Körperschaft)
Publikationsdatum
2022
Typ der Arbeit
Master
Studiengang
Typ
11 - Studentische Arbeit
Herausgeber:innen
Herausgeber:in (Körperschaft)
Übergeordnetes Werk
Themenheft
DOI der Originalpublikation
Link
Reihe / Serie
Reihennummer
Jahrgang / Band
Ausgabe / Nummer
Seiten / Dauer
Patentnummer
Verlag / Herausgebende Institution
Hochschule für Wirtschaft FHNW
Verlagsort / Veranstaltungsort
Olten
Auflage
Version
Programmiersprache
Abtretungsempfänger:in
Praxispartner:in/Auftraggeber:in
Zusammenfassung
Cyber-physical systems in manufacturing have the ability to deeply integrate physical manufacturing processes with virtual management processes and foster adaptive and exible manufacturing. CPS development requires knowledge in many diu000berent disciplines which increases complexity. To reduce the complexity, model-based approaches are employed to gain a better understanding of the reality. While humans are able to interpret incomplete or unstructured models, machines demand models that represent formal knowledge such as ontologies. Ontologies provide formal semantics to any sort of information, introducing new prospects for information retrieval. Some research has proven the usability of ontologies in cyber-physical systems and manufacturing. However, human-interpretable and machine-interpretable models are mostly separated, which causes consistency issues. Also, existing modeling languages might not be expressive enough to address specifc domains, such as manufacturing. An approach to solve both issues is the Agile and Ontology-Aided Modeling Environment (AOAME), which is based on ontology-based metamodeling. Hence, the contribution of this thesis is to build on AOAME's approach to create an ontology-based domain-specifc model which can be exploited to support decision-making for domain experts in manufacturing.
Schlagwörter
Fachgebiet (DDC)
Projekt
Veranstaltung
Startdatum der Ausstellung
Enddatum der Ausstellung
Startdatum der Konferenz
Enddatum der Konferenz
Datum der letzten Prüfung
ISBN
ISSN
Sprache
Englisch
Während FHNW Zugehörigkeit erstellt
Ja
Zukunftsfelder FHNW
Publikationsstatus
Begutachtung
Open Access-Status
Lizenz
Zitation
Yasar, S. (2022). An Ontology-Based Approach to Supporting Decision-Making in Cyber-Physical Systems: A Production Process Scenario [Hochschule für Wirtschaft FHNW]. https://irf.fhnw.ch/handle/11654/48645