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Complementarity framework formulation from bond graphs to model a class of nonlinear systems and hybrid systems with fixed causality
Noé Villa_Villaseñor
J JESUS RICO MELGOZA
En Embargo
01-04-2019
Atribución-NoComercial-CompartirIgual
http://journals.sagepub.com/doi/10.1177/0037549717751288
10.1177/0037549717751288
0037-5497
Online ISSN: 1741-3133
Linear complementarity
Bond graphs
Nonlinear elements
Piecewise linear
A systematic method for constructing models in the complementarity framework from a bond graph is proposed. Bond graphs with and without storage elements in derivative causality are considered. The proposed method allows the study of switching systems represented by a bond graph model of fixed causality. The proposed methodology allows the complementarity framework to be exploited in different engineering areas by using bond graphs. The idea of representing a unidirectional switch with a model that is essentially the same as a diode is presented. By employing a similar representation for diodes and switches, the modeling and simulation of power switching converters are simplified and become more intuitive. Two application examples are shown. A non-inverting buck-boost converter and a zeta converter with an element in derivative causality are simulated.
This research received no specific grant from any funding agency in the public, commercial, or not-for-profit sectors.
Sage
Society for Modeling and Simulation International (SCS)
2018
Artículo
Simulation: Transactions of The Society for Modeling and Simulation International
Inglés
Público en general
Complementarity framework formulation from bond graphs to model a class of nonlinear systems and hybrid systems with fixed causality. Noé Villa-Villaseñor, J Jesús Rico-Melgoza, SIMULATION. First Published January 26, 2018 https://doi.org/10.1177/0037549717751288
SIMULACIÓN
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