EIPPM - The Executable Integrative Product-Production Model
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Oliver Riedel | Stephan Rudolph | Karl Kübler | Dominik Schopper | S. Rudolph | O. Riedel | Karl Kübler | Dominik Schopper
[1] Stephan Rudolph,et al. Modeling graph-based satellite design languages , 2016 .
[2] Bernhard Rumpe,et al. Modeling Variants of Automotive Systems using Views , 2014, ArXiv.
[3] Stephan Rudolph,et al. Rule-based spacecraft design space exploration and sensitivity analysis , 2016 .
[4] Michael Weyrich,et al. Modellgetriebene Entwicklung serviceorientierter Anlagensteuerungen , 2017, Autom..
[5] G. Stoeppler,et al. Hardware-in-the-loop simulation of machine tools and manufacturing systems , 2005 .
[6] Alexander Verl,et al. Real-time co-simulation for the virtual commissioning of production systems , 2019, Procedia CIRP.
[7] Martin Eigner,et al. Modellbasierter Entwicklungsprozess cybertronischer Systeme , 2017 .
[8] Tetsuo Tomiyama,et al. Towards automation of control software: A review of challenges in mechatronic design , 2010 .
[9] Albert Albers,et al. iPeM – Integrated Product Engineering Model in Context of Product Generation Engineering☆ , 2016 .
[10] Sascha Röck. Hardware in the loop simulation of production systems dynamics , 2011, Prod. Eng..
[11] Jonathan Schmidt,et al. Executable State Machines Derived from Structured Textual Requirements - Connecting Requirements and Formal System Design , 2019, MODELSWARD.
[12] Herbert Negele,et al. Coping with changes : Causes, findings, and strategies , 2000 .
[13] Verena Voß. Wiederverwendbare Simulationsmodelle für die domänen- und disziplinübergreifende Produktentwicklung , 2012 .
[14] Albert Albers,et al. Baukastenentwicklung durch MBSE am Beispiel einer modularen Fertigungsanlage im Kontext der Industrie 4.0 , 2016 .
[15] Valeriy Vyatkin,et al. Automatic Generation of a Simulation-Based Digital Twin of an Industrial Process Plant , 2018, IECON 2018 - 44th Annual Conference of the IEEE Industrial Electronics Society.
[16] S. Rudolph,et al. Towards an Automated Product-Production System Design - Combining Simulation-based Engineering and Graph-based Design Languages , 2020, Procedia Manufacturing.
[17] Alexander Fay,et al. Automated generation of simulation models for control code tests , 2013 .
[18] Albert Albers,et al. Defining, Formulating and Modeling Product Functions in the Early Phase in the Model of PGE — Product Generation Engineering , 2020, 2020 IEEE International Symposium on Systems Engineering (ISSE).
[19] Alexander Verl,et al. Automatic Variant Configuration and Generation of Simulation Models for Comparison of Plant and Machinery Variants , 2015 .
[20] Gisela Lanza,et al. Integrating product function design, production technology optimization and process equipment planning on the example of hybrid additive manufacturing , 2019, Procedia CIRP.
[21] Stephan Rudolph,et al. Geometry and simulation modeling in design languages , 2016 .
[22] Roman Dumitrescu,et al. POTENTIAL OF USING MODEL-BASED SYSTEMS ENGINEERING TO IMPROVE THE DEVELOPMENT PROCESS OF ENGINEERING-TO-ORDER PRODUCTS IN THE FIELD OF MACHINERY AND PLANT ENGINEERING , 2015 .
[23] Olivier Barais,et al. Modeling languages in Industry 4.0: an extended systematic mapping study , 2019, Software and Systems Modeling.
[24] O. Riedel,et al. Comparative Analysis of Factory Simulation Description Models for Comprehensive Description of Model Design , 2020, 2020 IEEE Eurasia Conference on IOT, Communication and Engineering (ECICE).
[25] Albert Albers,et al. Model-Based Systems Engineering methods to support the reuse of knowledge within the development of validation environments , 2020, 2020 IEEE International Systems Conference (SysCon).
[26] Manas Bajaj,et al. Graph‐Based Digital Blueprint for Model Based Engineering of Complex Systems , 2017 .
[27] Oliver Riedel,et al. Model-Based Systems Engineering for Machine Tools and Production Systems (Model-Based Production Engineering) , 2018 .
[28] Thomas Kühne,et al. Matters of (Meta-) Modeling , 2006, Software & Systems Modeling.
[29] Alessandra Caggiano,et al. Digital Factory Approach for Flexible and Efficient Manufacturing Systems in the Aerospace Industry , 2015 .
[30] Gunther Reinhart,et al. Economic application of virtual commissioning to mechatronic production systems , 2007, Prod. Eng..
[31] Stephan Rudolph,et al. Dependency Analysis in Complex System Design using the FireSat example , 2012 .
[32] Stephan Rudolph,et al. Using Graph-based Design Languages to Enhance the Creation of Virtual Commissioning Models☆ , 2017 .
[33] M. Taisch,et al. A Systematic Literature Review on Data and Information Required for Circular Manufacturing Strategies Adoption , 2021, Sustainability.
[34] Hoda A. ElMaraghy,et al. Flexible and reconfigurable manufacturing systems paradigms , 2005 .
[35] Alexander Jacob,et al. Planning, Evaluation and Optimization of Product Design and Manufacturing Technology Chains for New Product and Production Technologies on the Example of Additive Manufacturing , 2018 .
[36] Pascal Stoffels,et al. Integrated Product and Production Engineering Approach – A Tool-Based Method for a Holistic Sustainable Design, Process and Material Selection , 2018 .
[37] Stefan Biffl,et al. Generation of Simulation Models in MATLAB-Simulink Based on AutomationML Plant Description , 2017 .
[38] Annika Kufner. Automatisierte Erstellung von Maschinenmodellen für die Hardware-in-the-Loop-Simulation von Montagemaschinen , 2012 .
[39] Colin Atkinson,et al. Model-Driven Development: A Metamodeling Foundation , 2003, IEEE Softw..
[40] Alexander Verl,et al. Simulation-assisted run-to-run control for battery manufacturing in a cloud environment , 2017, 2017 24th International Conference on Mechatronics and Machine Vision in Practice (M2VIP).