This thesis presents a modeling approach for the development of the interdisciplinary system structure of mechatronic production systems, which is based on SysML, a well-established language in systems engineering. Thus, a consistent, cross-disciplinary comprehension of the overall system in the development and a basis for a model-based analysis of change impacts are achieved. The approach was verified and evaluated with a prototypical implemented modeling editor through use-cases and experimental groups.
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This thesis presents a modeling approach for the development of the interdisciplinary system structure of mechatronic production systems, which is based on SysML, a well-established language in systems engineering. Thus, a consistent, cross-disciplinary comprehension of the overall system in the development and a basis for a model-based analysis of change impacts are achieved. The approach was verified and evaluated with a prototypical implemented modeling editor through use-cases and experiment...
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