This study proposes the transformation of nonlinear Magnetic Levitation System into linear one, via state and feedback transformations using explicit algorithm. This algorithm allows computing explicitly the linearizing state coordinates and feedback for any nonlinear control system, which is feedback linearizable, without solving the Partial Differential Equations. The algorithm is performed using a maximum of N-1 steps where N being the dimension of the system
This paper presents designing an adaptive state feedback controller (ASFC) for a magnetic levitation...
This paper proposes a nonlinear adaptive control method integrated with finite element approximation...
International audienceThis paper deals with the stabilization of a magnetically-levitating shaft usi...
We study the problem of controlling the position of a platen levitated using linear motors in three-...
Magnetic Levitation (MagLev) System is a modern technology that uses an electromagnetic force to lev...
Linearized model of the system is often used in control design. It is generally believed that we can...
We describe the automatic synthesis of a global nonlinear controller for stabilizing a magnetic le...
In this article a control analysis in state variables is presented, applied to the nonlinear Magneti...
This paper presents a non-linear control of a magnetic levitation system without current feedback ba...
One of the most challenging aspects in the nonlinear control of a magnetic levitation (Maglev) syste...
In this paper is presented the SISO laboratory model of Magnetic levitation in terms of mathematic d...
This paper explains the design of Servo State Feedback Controller and Feedback Linearization for Mag...
Investigation on the application of flatness-based feedback linearization to the magnetic levitation...
Abstract: This paper shows that the highly nonlinear, unstable and fast system of magnetic levitatio...
Nonlinear system control belongs to advanced control problems important for real plants control desi...
This paper presents designing an adaptive state feedback controller (ASFC) for a magnetic levitation...
This paper proposes a nonlinear adaptive control method integrated with finite element approximation...
International audienceThis paper deals with the stabilization of a magnetically-levitating shaft usi...
We study the problem of controlling the position of a platen levitated using linear motors in three-...
Magnetic Levitation (MagLev) System is a modern technology that uses an electromagnetic force to lev...
Linearized model of the system is often used in control design. It is generally believed that we can...
We describe the automatic synthesis of a global nonlinear controller for stabilizing a magnetic le...
In this article a control analysis in state variables is presented, applied to the nonlinear Magneti...
This paper presents a non-linear control of a magnetic levitation system without current feedback ba...
One of the most challenging aspects in the nonlinear control of a magnetic levitation (Maglev) syste...
In this paper is presented the SISO laboratory model of Magnetic levitation in terms of mathematic d...
This paper explains the design of Servo State Feedback Controller and Feedback Linearization for Mag...
Investigation on the application of flatness-based feedback linearization to the magnetic levitation...
Abstract: This paper shows that the highly nonlinear, unstable and fast system of magnetic levitatio...
Nonlinear system control belongs to advanced control problems important for real plants control desi...
This paper presents designing an adaptive state feedback controller (ASFC) for a magnetic levitation...
This paper proposes a nonlinear adaptive control method integrated with finite element approximation...
International audienceThis paper deals with the stabilization of a magnetically-levitating shaft usi...