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Modeling Basic Aspects of Cyber-Physical Systems, Part II (Extended Abstract)

Yingfu Zeng, Chad G. Rose, Paul Brauner, Walid Taha, Jawad Masood, Roland Philippsen, Marcia K. O’Malley, Robert Cartwright

Year
2014
Citations
2

Abstract

We continue to consider the question of what language features are needed to effectively model cyber-physical systems (CPS). In previous work, we proposed using a core language as a way to study this question, and showed how several basic aspects of CPS can be modeled clearly in a language with a small set of constructs. This paper reports on the result of our analysis of two, more complex, case studies from the domain of rigid body dynamics. The first one, a quad copter, illustrates that previously proposed core language can support larger, more interesting systems than previously shown. The second one, a serial robot, provides a concrete example of why we should add language support for static partial derivatives, namely that it would significantly improve the way models of rigid body dynamics can be expressed.

Keywords

Computer scienceCore (optical fiber)Cyber-physical systemSet (abstract data type)Domain (mathematical analysis)RobotWork (physics)Modeling languageHuman–computer interactionTheoretical computer science

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