Magnetic levitation (Maglev) systems are usually strongly nonlinear, open-loop unstable and fast responding. In order to control the position of the steel ball in a Maglev system, a data-driven modeling approach and control strategy is presented in this paper. A state-dependent AutoRegressive with eXogenous input (SD-ARX) model is built to represent the dynamic behavior between the current of electromagnetic coil and the position of the ball. State-dependent functional coefficients of the SD-ARX model are approximated by Gaussian radial basis function (RBF) neural networks. The model parameters are identified offline by applying the structured nonlinear parameter optimization method (SNPOM). Based on the model, a predictive controller is de...
The maglev trains are strongly nonlinear and open-loop unstable systems with external disturbances a...
This paper discusses the control of a magnetic levitation (MagLev) system over networks. In order to...
This paper discusses the control of a magnetic levitation (MagLev) system over networks. In order to...
In order to fully describe the dynamic behavior of the magnetic levitation ball system which has non...
In this article,,issues of position tracking of a magnetic levitation system with unknown control-af...
In this work, we suggest a technique of controller design that applied to systems based on nonlinea...
Magnetic levitation (maglev) systems are nowadays employed in applications ranging from non-contact ...
In this work, we suggest a technique of controller design that applied to systems based on nonlinear...
Magnetic levitation train with high speed, comfort, low energy consumption and low emission is a goo...
This paper presents a possible way to control the a very fast nonlinear systems. The system of the m...
This thesis describes the analysis, design procedure, and real-time control of a magnetic levitatio...
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 ...
In this study, an approach is presented to nonlinear control of a magnetic levitation system using a...
This paper discusses the control of a magnetic levitation (MagLev) system over networks. In order to...
The maglev trains are strongly nonlinear and open-loop unstable systems with external disturbances a...
This paper discusses the control of a magnetic levitation (MagLev) system over networks. In order to...
This paper discusses the control of a magnetic levitation (MagLev) system over networks. In order to...
In order to fully describe the dynamic behavior of the magnetic levitation ball system which has non...
In this article,,issues of position tracking of a magnetic levitation system with unknown control-af...
In this work, we suggest a technique of controller design that applied to systems based on nonlinea...
Magnetic levitation (maglev) systems are nowadays employed in applications ranging from non-contact ...
In this work, we suggest a technique of controller design that applied to systems based on nonlinear...
Magnetic levitation train with high speed, comfort, low energy consumption and low emission is a goo...
This paper presents a possible way to control the a very fast nonlinear systems. The system of the m...
This thesis describes the analysis, design procedure, and real-time control of a magnetic levitatio...
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 ...
In this study, an approach is presented to nonlinear control of a magnetic levitation system using a...
This paper discusses the control of a magnetic levitation (MagLev) system over networks. In order to...
The maglev trains are strongly nonlinear and open-loop unstable systems with external disturbances a...
This paper discusses the control of a magnetic levitation (MagLev) system over networks. In order to...
This paper discusses the control of a magnetic levitation (MagLev) system over networks. In order to...