Concurrent Model Driven Automation Engineering

Authors

  • Michael Schlereth Siemens AG
  • Marius Lauder TU Darmstadt
  • Sebastian Rose TU Darmstadt
  • Andy SchÜrr TU Darmstadt

DOI:

https://doi.org/10.17560/atp.v52i11.2097

Abstract

To increase efficiency and quality in automation engineering, Concurrent Model Driven Automation Engineering (CMDAE) provides both a methodology and a CASE (Computer Aided Software Engineering) framework for the a-posteriori integration of existing engineering tools of machine builders. This paper shows how CMDAE bidirectionally integrates engineering models on different levels of abstraction to enable modularization and reuse. The models of a generic power drive system are transformed to a specific drive system implementation for customer-specific solutions.

Published

2013-08-04