TY - JOUR
T1 - A semantic model-based systems engineering approach for assessing the operational performance of metal forming process
AU - Lu, Jinzhi
AU - Tsinarakis, George
AU - Sarantinoudis, Nikolaos
AU - Arampatzis, George
AU - Zheng, Xiaochen
AU - Kiritsis, Dimitris
N1 - Publisher Copyright:
© 2024 Elsevier Ltd
PY - 2024/4
Y1 - 2024/4
N2 - Metal Forming is a basic and essential industrial process to provide materials for constructing complex products. To design an efficient metal forming process, the functional requirements and operational performance are two important aspects to be considered. In this paper, a semantic Model-based Systems Engineering (sMBSE) approach is proposed to support the design of the entire metal forming process. A multi-architecture modeling language KARMA is used to develop meta-models and architecture models of the metal forming process from the perspectives of mission, operation, function, logic flow and physical structure. Enabled by customized software, the KARMA models are transformed to ontology models, which are then converted to Petri Net (PN) models. Simulations are conducted based on the PN models to evaluate the operational performance of the created processes. A case study based on a real metal forming scenario is conducted to evaluate the proposed approach using quantitative and qualitative analysis. The result proves that the proposed approach enables to formalize the entire architecture modeling for metal forming process; and to provide an efficient approach for evaluating the operational performance of the designed solution for initial verification.
AB - Metal Forming is a basic and essential industrial process to provide materials for constructing complex products. To design an efficient metal forming process, the functional requirements and operational performance are two important aspects to be considered. In this paper, a semantic Model-based Systems Engineering (sMBSE) approach is proposed to support the design of the entire metal forming process. A multi-architecture modeling language KARMA is used to develop meta-models and architecture models of the metal forming process from the perspectives of mission, operation, function, logic flow and physical structure. Enabled by customized software, the KARMA models are transformed to ontology models, which are then converted to Petri Net (PN) models. Simulations are conducted based on the PN models to evaluate the operational performance of the created processes. A case study based on a real metal forming scenario is conducted to evaluate the proposed approach using quantitative and qualitative analysis. The result proves that the proposed approach enables to formalize the entire architecture modeling for metal forming process; and to provide an efficient approach for evaluating the operational performance of the designed solution for initial verification.
KW - KARMA language
KW - Metal forming process
KW - Model-based systems engineering
KW - Petri nets
KW - Semantic modeling
UR - https://www.scopus.com/pages/publications/85187553441
U2 - 10.1016/j.cie.2024.110042
DO - 10.1016/j.cie.2024.110042
M3 - 文章
AN - SCOPUS:85187553441
SN - 0360-8352
VL - 190
JO - Computers and Industrial Engineering
JF - Computers and Industrial Engineering
M1 - 110042
ER -