Control by Interconnection and Energy Shaping Methods of Port Hamiltonian Models - Application to the Shallow Water Equations

Abstract : In this paper a control algorithm for the reduced port-Controlled Hamiltonian model (PCH) of the shallow water equations (PDEs) is developed. This control is developed using the Interconnection and Damping Assignment Passivity Based Control (IDA-PBC) method on the reduced PCH model without the natural dissipation. It allows to assign desired structure and energy function to the closed loop system. The same control law is then derived using an energy shaping method based on Casimir's invariants, associated with a particular conservative interconnection between the boundary variables. This gives a physical interpretation for the designed controller. Finally, a stability analysis of the dissipative system in closed loop with the designed control is done using LaSalle's invariance principle. Simulation results and an experimental validation of the control algorithm on an a micro-canal platform are presented showing the effectiveness of the control law.
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Article dans une revue
European Journal of Control, Lavoisier, 2010, 16 (5), pp.545-563
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Contributeur : Eduardo Mendes <>
Soumis le : mardi 29 mars 2011 - 16:00:38
Dernière modification le : jeudi 7 février 2019 - 17:25:28

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  • HAL Id : hal-00580898, version 1

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Boussad Hamroun, Alexandru Dimofte, Laurent Lefèvre, Eduardo Mendes. Control by Interconnection and Energy Shaping Methods of Port Hamiltonian Models - Application to the Shallow Water Equations. European Journal of Control, Lavoisier, 2010, 16 (5), pp.545-563. 〈hal-00580898〉

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