In this paper, a complex multiphysics system is modeled using two different energy-based graphical techniques: Bond Graph and Energetic Macroscopic Representation. These formalisms can be used together to analyze, model and control a system. The BG is used to support physical, lumped-parameter modeling and analysis processes, and then EMR is used to facilitate definition of a control structure through inversion-based methodology. This complementarity between both of these tools is set out through a helicopter flight control subsystem
The Bond Graph is the proper choice of physical system used for: (i) Modeling which can be applied t...
Causal Ordering Graph and Energetic Macroscopic Representation are graphical descriptions to model e...
Im Beitrag wird zunächst die konventionelle auf Signalflüssen basierte Modellbildung mit modernen le...
Rotorcraft are complex systems and are thus sources of recurring (i.e. for many new design projects)...
Presented at the AHS 69th Annual Forum, Phoenix, Arizona, May 21 –23, 2013. Copyright © 2013 by the...
Les hélicoptères sont le siège de comportements dynamiques difficiles à maîtriser et récurrents en p...
A helicopter flight axis control, which is a complex multi-physic system, is modelled using an energ...
De par le fonctionnement de son rotor, l'hélicoptère est le siège de vibrations mécaniques important...
A helicopter flight axis control, which is a complex multi-physic system, is modelled using an energ...
International audienceThis paper describes an energetic method using multibond graphs to model multi...
Three main modeling techniques have been proposed in the past years: Bond Graphs (BG), Power-Oriente...
Un aéronef à voilure tournante est un système physique dynamique complexe. Le développement de ce ty...
International audience— The Energetic Macroscopic Representation (EMR) has been developed in 2000 to...
One of the demanding steps in the design and development of Mechatronic systems is to develop the in...
Due to the operation of the rotor, the helicopter is subject to important vibration levels affecting...
The Bond Graph is the proper choice of physical system used for: (i) Modeling which can be applied t...
Causal Ordering Graph and Energetic Macroscopic Representation are graphical descriptions to model e...
Im Beitrag wird zunächst die konventionelle auf Signalflüssen basierte Modellbildung mit modernen le...
Rotorcraft are complex systems and are thus sources of recurring (i.e. for many new design projects)...
Presented at the AHS 69th Annual Forum, Phoenix, Arizona, May 21 –23, 2013. Copyright © 2013 by the...
Les hélicoptères sont le siège de comportements dynamiques difficiles à maîtriser et récurrents en p...
A helicopter flight axis control, which is a complex multi-physic system, is modelled using an energ...
De par le fonctionnement de son rotor, l'hélicoptère est le siège de vibrations mécaniques important...
A helicopter flight axis control, which is a complex multi-physic system, is modelled using an energ...
International audienceThis paper describes an energetic method using multibond graphs to model multi...
Three main modeling techniques have been proposed in the past years: Bond Graphs (BG), Power-Oriente...
Un aéronef à voilure tournante est un système physique dynamique complexe. Le développement de ce ty...
International audience— The Energetic Macroscopic Representation (EMR) has been developed in 2000 to...
One of the demanding steps in the design and development of Mechatronic systems is to develop the in...
Due to the operation of the rotor, the helicopter is subject to important vibration levels affecting...
The Bond Graph is the proper choice of physical system used for: (i) Modeling which can be applied t...
Causal Ordering Graph and Energetic Macroscopic Representation are graphical descriptions to model e...
Im Beitrag wird zunächst die konventionelle auf Signalflüssen basierte Modellbildung mit modernen le...