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MBSE modeling workflow for the development of automated aircraft production systems

Publication date
2023-10-12
Document type
Konferenzbeitrag
Author
Beers, Lasse  
Weigand, Maximilian  
Nabizada, Hamied  
Fay, Alexander  
Organisational unit
Automatisierungstechnik  
DTEC.bw  
DOI
10.1109/etfa54631.2023.10275444
URI
https://openhsu.ub.hsu-hh.de/handle/10.24405/22663
Conference
28th IEEE International Conference on Emerging Technologies and Factory Automation (ETFA 2023) ; Sinaia, Romania ; September 12-15, 2023
Project
Intelligente modulare Robotik und integrierte Produktionsgestaltung im Flugzeugbau  
Publisher
IEEE
Book title
2023 IEEE 28th International Conference on Emerging Technologies and Factory Automation (ETFA)
ISBN
979-8-3503-3991-8
Part of the university bibliography
✅
Additional Information
Language
English
Keyword
dtec.bw
Abstract
Contrary to classic document-based engineering, model-based systems engineering (MBSE) is an approach that focuses on the definition of engineering artifacts as formal information models. In complex engineering projects, such as the design of automated aircraft production systems, MBSE is a means to control complexity and support interdisciplinary collaboration. To implement MBSE in industry, ready-to-use modeling workflows that guide and support system engineers are required to minimize overhead workload. System Modeling Language (SysML), a general purpose modeling language derived from Unified Modeling Language (UML), is widely accepted as the standard modeling language in MBSE and therefore supported by industry-leading software. In this paper, we propose a SysML-based modeling workflow that supports the conceptual engineering of automated production systems. The system engineer is guided through a multi-layer modeling workflow, which is based on the Software Platform Embedded Systems (SPES) method. The modeling workflow is validated by applying it in the engineering of an automated production system that is used in aircraft manufacturing.
Version
Published version
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