TY - GEN
T1 - Ontology Enabled Hybrid Modeling and Simulation
AU - Beverley, John
AU - Tolk, Andreas
N1 - Publisher Copyright:
© 2025 IEEE.
PY - 2025
Y1 - 2025
N2 - We explore the role of ontologies in enhancing hybrid modeling and simulation through improved semantic rigor, model reusability, and interoperability across systems, disciplines, and tools. By distinguishing between methodological and referential ontologies, we demonstrate how these complementary approaches address interoperability challenges along three axes: Human-Human, Human-Machine, and Machine-Machine. Techniques such as competency questions, ontology design patterns, and layered strategies are highlighted for promoting shared understanding and formal precision. Integrating ontologies with Semantic Web Technologies, we showcase their dual role as descriptive domain representations and prescriptive guides for simulation construction. Four application cases - sea-level rise analysis, Industry 4.0 modeling, artificial societies for policy support, and cyber threat evaluation - illustrate the practical benefits of ontology-driven hybrid simulation workflows. We conclude by discussing challenges and opportunities in ontologybased hybrid M&S, including tool integration, semantic alignment, and support for explainable Artificial Intelligence.
AB - We explore the role of ontologies in enhancing hybrid modeling and simulation through improved semantic rigor, model reusability, and interoperability across systems, disciplines, and tools. By distinguishing between methodological and referential ontologies, we demonstrate how these complementary approaches address interoperability challenges along three axes: Human-Human, Human-Machine, and Machine-Machine. Techniques such as competency questions, ontology design patterns, and layered strategies are highlighted for promoting shared understanding and formal precision. Integrating ontologies with Semantic Web Technologies, we showcase their dual role as descriptive domain representations and prescriptive guides for simulation construction. Four application cases - sea-level rise analysis, Industry 4.0 modeling, artificial societies for policy support, and cyber threat evaluation - illustrate the practical benefits of ontology-driven hybrid simulation workflows. We conclude by discussing challenges and opportunities in ontologybased hybrid M&S, including tool integration, semantic alignment, and support for explainable Artificial Intelligence.
UR - https://www.scopus.com/pages/publications/105033157722
U2 - 10.1109/WSC68292.2025.11339044
DO - 10.1109/WSC68292.2025.11339044
M3 - Conference contribution
AN - SCOPUS:105033157722
T3 - Proceedings - Winter Simulation Conference
SP - 1107
EP - 1118
BT - 2025 Winter Simulation Conference, WSC 2025
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2025 Winter Simulation Conference, WSC 2025
Y2 - 7 December 2025 through 10 December 2025
ER -