By Tobias Meyer, Claudia Priesterjahn (auth.), Jürgen Gausemeier, Franz Josef Rammig, Wilhelm Schäfer, Walter Sextro (eds.)
Intelligent technical structures, which mix mechanical, electric and software program engineering with equipment from keep watch over engineering and complicated arithmetic, pass some distance past the cutting-edge in mechatronics and open up interesting views. between those platforms are so-called self-optimizing structures, that are in a position to adapt their habit autonomously and flexibly to altering working stipulations. The Collaborative learn middle 614 "Self-optimizing ideas and buildings in mechanical engineering" pursued the long term objective to allow others to improve in charge self-optimizing platforms. Assuring their dependability poses new demanding situations. besides the fact that, self-optimization additionally bargains the prospect to conform the system's habit to enhance dependability in the course of operation.
The goal of this ebook is to supply equipment and strategies to grasp the demanding situations and to use the probabilities given by way of self-optimization. The reader should be capable of strengthen self-optimizing platforms that satisfy and surpass today’s dependability necessities easily.
This ebook is directed to researchers and practitioners alike. It offers a short creation to the holistic improvement strategy for self-optimizing mechatronic platforms and the stairs required to guarantee a in charge product layout beginning with the very early conceptual layout part. a suggestion to pick appropriate tools for every step and the tools themselves are incorporated. each one process is separately brought, many examples and whole references are given.
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Additional resources for Dependability of Self-Optimizing Mechatronic Systems
Application Scenarios: These scenarios concretize the behavior of the system in a particular state and situation. Application Scenarios characterize a problem which needs to be solved in certain cases and also briefly outline the possible solution . Requirements: This partial model presents an organized collection of requirements that need to be fulfilled during product development. Every requirement is described textually and, if possible, concretized by attributes and their characteristics .
Dorociak and J. Gausemeier Early Probabilistic Reliability Analysis of an Advanced Mechatronic System Based on Its Principle Solution Rafal Dorociak and Juergen Gausemeier The Early Probabilistic Reliability Analysis of an Advanced Mechatronic System based on its Principle Solution is a method of improving the attributes reliability, safety and availability in the early development phase of Conceptual Design. The method can be used to ensure the dependability of the Principle Solution. Thus, it is necessary to use the specification technique CONSENS for the domain-spanning description of the system.
Selbstoptimierende Systeme des Maschinenbaus. In: HNI-Verlagsschriftenreihe, vol. 234. Heinz Nixdorf Institute, University of Paderborn, Paderborn (2009) 7. , Schäfer, W. ): Design Methodology for Intelligent Technical Systems. Lecture Notes in Mechanical Engineering. 1007/978-3-642-45435-6_2 8. : Mechatronische Systeme – Grundlagen. 1007/978-3-540-32512-3 9. : Interactive Visualization of Development Processes. In: Proceedings of the 1st International Conference on Modelling and Management of Engineering Processes (2010) 10.
Dependability of Self-Optimizing Mechatronic Systems by Tobias Meyer, Claudia Priesterjahn (auth.), Jürgen Gausemeier, Franz Josef Rammig, Wilhelm Schäfer, Walter Sextro (eds.)