This paper presents, an adaptive finite impulse response (FIR) filter based controller used for the tracking of a ferric ball under the influence of magnetic force. The adaptive filter is designed online as approximate inverse system. To stabilize the open-loop unstable and highly nonlinear magnetic levitation system, PID controller is designed using polynomial approach. To improve the stability, an adaptive FIR filter is added along side the PID controller while the use of the proposed controller has improved tracking. Since adaptive FIR filters are inherently stable so the controller remains stable. Experimental results are included to highlight the excellent position tracking performance
This paper presents designing an adaptive state feedback controller (ASFC) for a magnetic levitation...
In this article,,issues of position tracking of a magnetic levitation system with unknown control-af...
Magnetic levitation is a new technology gaining popularity for use in many applications,the most not...
This paper presents, an adaptive finite impulse response (FIR) filter based controller used for the ...
This paper presents, an adaptive finite impulse response (FIR) filter based controller used for the ...
This paper proposes a nonlinear adaptive control method integrated with finite element approximation...
In this paper, an approach to model reference adaptive control based on pid Controller is proposed ...
In this paper, an approach to model reference adaptive control based on pid Controller is proposed ...
Abstract — This paper proposes an adaptive robust output feedback controller for position-tracking p...
This paper presents designing an adaptive state feedback controller (ASFC) for a magnetic levitation...
This paper presents designing an adaptive state feedback controller (ASFC) for a magnetic levitation...
Abstract--Magnetic levitation refers to suspending an object in air without any physical support, ju...
Magnetic levitation (Maglev) systems are usually strongly nonlinear, open-loop unstable and fast res...
The Magnetic Levitation System is one of the important benchmark laboratory models for the design an...
This paper focuses on stability control for the levitated positioning of the magnetic levitation veh...
This paper presents designing an adaptive state feedback controller (ASFC) for a magnetic levitation...
In this article,,issues of position tracking of a magnetic levitation system with unknown control-af...
Magnetic levitation is a new technology gaining popularity for use in many applications,the most not...
This paper presents, an adaptive finite impulse response (FIR) filter based controller used for the ...
This paper presents, an adaptive finite impulse response (FIR) filter based controller used for the ...
This paper proposes a nonlinear adaptive control method integrated with finite element approximation...
In this paper, an approach to model reference adaptive control based on pid Controller is proposed ...
In this paper, an approach to model reference adaptive control based on pid Controller is proposed ...
Abstract — This paper proposes an adaptive robust output feedback controller for position-tracking p...
This paper presents designing an adaptive state feedback controller (ASFC) for a magnetic levitation...
This paper presents designing an adaptive state feedback controller (ASFC) for a magnetic levitation...
Abstract--Magnetic levitation refers to suspending an object in air without any physical support, ju...
Magnetic levitation (Maglev) systems are usually strongly nonlinear, open-loop unstable and fast res...
The Magnetic Levitation System is one of the important benchmark laboratory models for the design an...
This paper focuses on stability control for the levitated positioning of the magnetic levitation veh...
This paper presents designing an adaptive state feedback controller (ASFC) for a magnetic levitation...
In this article,,issues of position tracking of a magnetic levitation system with unknown control-af...
Magnetic levitation is a new technology gaining popularity for use in many applications,the most not...