2021/11/08 by William S. Chao, Chao, William S.
Business, Management and Accounting · Computer Science · Engineering · #Advanced Software Engineering Methodologies #Business Process Modeling and Analysis #FOS: Computer and information sciences #Product Development and Customization #Software Engineering (cs.SE) #Systems Engineering Methodologies and Applications #Technology Assessment and Management #cs.SE
paper · pdf · doi:10.48550/arxiv.2111.04910
arXiv admin note: substantial text overlap with arXiv:2110.15526
openalex publication_date 2021/11/08 · arxiv created 2021/11/09 · arxiv updated 2021/11/10 · openalex created_date 2022/05/05 · openalex updated_date 2026/07/28
In Model-Based Systems Engineering (MBSE), the Systems Modeling Language (SysML) specification includes a metamodel that defines the language concepts and a user model that defines how the language concepts are represented. In SysML, an important use of metamodel is to provide an integrated semantic framework that every diagram in the user model can be projected as a view of the metamodel. However, most existing SysML metamodels lack such capability of being a basis for unification of different views of a system. To overcome the shortcomings of the current SysML metamodel approaches, we developed Channel-Based Multi-Queue Structure-Behavior Coalescence Process Algebra (C-M-SBC-PA), which provides an integrated semantic framework that is able to integrate structural constructs with behavioral constructs. Using C-M-SBC-PA as the metamodel of SysML, each diagram in the user model can be projected as a view of the C-M-SBC-PA metamodel.