This letter discusses an extension of the famous PD regulator implementing point to point motions with prescribed exponential rates of convergence. This is achieved by deriving a novel global exponential stability result, dealing with mechanical systems evolving on uni-dimensional invariant manifolds of the configuration space. The construction of closed loop controllers enforcing the existence of such manifolds is then discussed. Explicit upper and lower bounds of convergence are provided, and connected to the gains of the closed loop controller. Simulations are carried out, assessing the effectiveness of the controller and the tightness of the exponential bounds
In this paper the problem of simulation of constrained mechanical systems is addressed. In modeling ...
"An observer-less output-feedback global continuous control scheme for the finite-time or (local) ex...
International audienceWe address the problem of state feedback atti- tude control of a rigid body in...
This letter discusses an extension of the famous PD regulator implementing point to point motions wi...
This letter discusses an extension of the famous PD regulator implementing point to point motions wi...
This letter discusses an extension of the famous PD regulator implementing point to point motions wi...
This paper introduces a method for constructing exponentially convergent control laws for n-dimensio...
Abstract — This paper presents a novel method for achieving exponential convergence of a Control Lya...
This article addresses the robust exponential stabilization problem of underactuated mechanical syst...
In this paper the authors make a contribution to the analysis of nonholonomic systems with exponenti...
Motivated by the need for formal guarantees on the stability and safety of controllers for challengi...
International audienceIn this paper, we address the global exponential stability problem of perturbe...
"This work proposes an output-feedback global continuous controller for the finite-time or (local) e...
We identify a class of mechanical systems for which a globally exponentially stable reduced order ob...
International audienceA solution to the problem of global exponential tracking of mechanical systems...
In this paper the problem of simulation of constrained mechanical systems is addressed. In modeling ...
"An observer-less output-feedback global continuous control scheme for the finite-time or (local) ex...
International audienceWe address the problem of state feedback atti- tude control of a rigid body in...
This letter discusses an extension of the famous PD regulator implementing point to point motions wi...
This letter discusses an extension of the famous PD regulator implementing point to point motions wi...
This letter discusses an extension of the famous PD regulator implementing point to point motions wi...
This paper introduces a method for constructing exponentially convergent control laws for n-dimensio...
Abstract — This paper presents a novel method for achieving exponential convergence of a Control Lya...
This article addresses the robust exponential stabilization problem of underactuated mechanical syst...
In this paper the authors make a contribution to the analysis of nonholonomic systems with exponenti...
Motivated by the need for formal guarantees on the stability and safety of controllers for challengi...
International audienceIn this paper, we address the global exponential stability problem of perturbe...
"This work proposes an output-feedback global continuous controller for the finite-time or (local) e...
We identify a class of mechanical systems for which a globally exponentially stable reduced order ob...
International audienceA solution to the problem of global exponential tracking of mechanical systems...
In this paper the problem of simulation of constrained mechanical systems is addressed. In modeling ...
"An observer-less output-feedback global continuous control scheme for the finite-time or (local) ex...
International audienceWe address the problem of state feedback atti- tude control of a rigid body in...