Title :
VHDL-AMS Electromagnetic Automatic Modeling for System Simulation and Design
Author :
Rezgui, Abdelmounaam ; Gerbaud, Laurent ; Delinchant, Benoit
Author_Institution :
Grenoble Electr. Eng. Lab., St. Martin d´Hères, France
Abstract :
To improve interoperability between system-level modeling and simulation, this paper proposes an approach to export models from dedicated magnetic tools into a standardized format, such as Very-high-speed integrated circuits Hardware Description Language-Analog and Mixed Signal (VHDL-AMS), as a powerful modeling language. The goal is to let designers use a unique modeling approach and single simulation tool to simulate the behavior of a complete electromagnetic system and to make the translation of existing models to VHDL-AMS easy. Thus they can reduce the investment. This paper addresses this methodology as a computer-aided generation of the VHDL-AMS code from macro and micro electromagnetic devices for system simulation. The translation uses model-driven engineering methods for the transformation of one model to another and the code generation from models. Implementation and methodology are illustrated on a dynamic E-shaped actuator as a macro-system case study and a diamagnetic levitation device as micro-system one.
Keywords :
electromagnetic actuators; hardware description languages; magnetic levitation; very high speed integrated circuits; VHDL-AMS code; VHDL-AMS modeling language; computer-aided generation; diamagnetic levitation device; dynamic E-shaped actuator; electromagnetic automatic modeling; electromagnetic system; hardware description language-analog and mixed signal modeling language; macroelectromagnetic devices; magnetic tools; microelectromagnetic devices; model-driven engineering methods; system-level modeling; system-level simulation; very-high-speed integrated circuits; Biological system modeling; Computational modeling; Integrated circuit modeling; Magnetic levitation; Magnetic separation; Mathematical model; Numerical models; Computer-aided modeling; VHDL-AMS; electromagnetic devices; model transformation; system-level simulation;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2013.2281495