We consider a special class of port-Hamiltonian systems for which we propose a design methodology for constructing globally exponentially stable full-order observers using a passivity based approach. The essential idea is to make the augmented system consisting of the plant and the observer dynamics to become strictly passive with respect to an invariant manifold defined on the extended state-space, on which the state estimation error is zero. We first introduce the concept of passivity of a system with respect to a manifold by defining a new input and output on the extended state-space and then perform a partial state feedback passivation which leads to the construction of the observer. We then illustrate this observer design procedure on ...
This work addresses the automated generation of physical-based models and model-based observers. We ...
International audienceIn this note, we address the problem of stabilization of port-Hamiltonian syst...
International audienceThis paper considers the design of state observers for Lur'e systems with mult...
We consider a special class of port-Hamiltonian systems and propose a design methodology for constru...
We consider a special class of port-Hamiltonian systems for which we propose a design methodology fo...
In this paper, we present a simple method to design a full-order observer for a class of nonlinear p...
International audienceThe design of an observer-based state feedback controller forport-Hamiltonian ...
A nonlinear observer design approach is proposed that exploits and combines port-Hamiltonian systems...
International audienceThe design of an observer-based state feedback (OBSF) controller with guarante...
The main contribution of this paper is a procedure for the passivity-based control of high-order por...
In this work, we propose passivity-based control techniques, where the resulting controllers include...
In this paper, we examine the shifted passivity property of port-Hamiltonian systems. Shifted passiv...
In this article, stabilization of port-Hamiltonian (pH) systems is studied in the context of shifted...
11 pages, 1 figureInternational audienceIn this paper, we examine the shifted passivity property of ...
This work addresses the automated generation of physical-based models and model-based observers. We ...
International audienceIn this note, we address the problem of stabilization of port-Hamiltonian syst...
International audienceThis paper considers the design of state observers for Lur'e systems with mult...
We consider a special class of port-Hamiltonian systems and propose a design methodology for constru...
We consider a special class of port-Hamiltonian systems for which we propose a design methodology fo...
In this paper, we present a simple method to design a full-order observer for a class of nonlinear p...
International audienceThe design of an observer-based state feedback controller forport-Hamiltonian ...
A nonlinear observer design approach is proposed that exploits and combines port-Hamiltonian systems...
International audienceThe design of an observer-based state feedback (OBSF) controller with guarante...
The main contribution of this paper is a procedure for the passivity-based control of high-order por...
In this work, we propose passivity-based control techniques, where the resulting controllers include...
In this paper, we examine the shifted passivity property of port-Hamiltonian systems. Shifted passiv...
In this article, stabilization of port-Hamiltonian (pH) systems is studied in the context of shifted...
11 pages, 1 figureInternational audienceIn this paper, we examine the shifted passivity property of ...
This work addresses the automated generation of physical-based models and model-based observers. We ...
International audienceIn this note, we address the problem of stabilization of port-Hamiltonian syst...
International audienceThis paper considers the design of state observers for Lur'e systems with mult...