This paper presents a study of controlling magnetic levitation object using conventional sliding mode control (CSMC) and sliding mode control (SMC) with gain-scheduled. SMC with gain-scheduled aims to improve the robustness of the control system from disturbance. The CSMC simulation results show that output can follow the set point if there is no interference, but if the disturbance happens then there is overshoot and undershoot of 0.034 mm and 0.07 mm for disturbance 10 ∗ sin (ð‘¡) and 20 ∗ sin (ð‘¡). Then SMC with gain-scheduled shows excellent performance because the output can follow the reference even if it got disturbance of 10 ∗ sin (ð‘¡) and 20 ∗ sin (ð‘¡)
© 2016 IEEE. Magnetic levitation (Maglev) systems make significant contribution to industrial applic...
This paper presents designing an adaptive state feedback controller (ASFC) for a magnetic levitation...
In this work, we suggest a technique of controller design that applied to systems based on nonlinea...
This paper presents a study of controlling magnetic levitation object using conventional sliding mod...
This paper presents a study of controlling magnetic levitation object using conventional sliding mod...
Magnetic levitation or maglev systems have been widely applied in various fields that are beneficial...
This paper presents global sliding mode control and conventional sliding mode control for stabilizat...
This paper presents global sliding mode control and conventional sliding mode control for stabilizat...
This paper focuses on stability control for the levitated positioning of the magnetic levitation veh...
This paper presents an approach to control a magnetic levitation system with uncertainty in the dyna...
Author name used in this publication: Norbert C. CheungRefereed conference paper2008-2009 > Academic...
Magnetic levitation train with high speed, comfort, low energy consumption and low emission is a goo...
Abstract: In this paper, a position regulation control strat-egy is developed for a magnetic levita...
The paper presents a gain-scheduling control design procedure for classical Proportional-Integral-De...
The effectiveness and applicability of magnetic levitation systems need precise feedback control des...
© 2016 IEEE. Magnetic levitation (Maglev) systems make significant contribution to industrial applic...
This paper presents designing an adaptive state feedback controller (ASFC) for a magnetic levitation...
In this work, we suggest a technique of controller design that applied to systems based on nonlinea...
This paper presents a study of controlling magnetic levitation object using conventional sliding mod...
This paper presents a study of controlling magnetic levitation object using conventional sliding mod...
Magnetic levitation or maglev systems have been widely applied in various fields that are beneficial...
This paper presents global sliding mode control and conventional sliding mode control for stabilizat...
This paper presents global sliding mode control and conventional sliding mode control for stabilizat...
This paper focuses on stability control for the levitated positioning of the magnetic levitation veh...
This paper presents an approach to control a magnetic levitation system with uncertainty in the dyna...
Author name used in this publication: Norbert C. CheungRefereed conference paper2008-2009 > Academic...
Magnetic levitation train with high speed, comfort, low energy consumption and low emission is a goo...
Abstract: In this paper, a position regulation control strat-egy is developed for a magnetic levita...
The paper presents a gain-scheduling control design procedure for classical Proportional-Integral-De...
The effectiveness and applicability of magnetic levitation systems need precise feedback control des...
© 2016 IEEE. Magnetic levitation (Maglev) systems make significant contribution to industrial applic...
This paper presents designing an adaptive state feedback controller (ASFC) for a magnetic levitation...
In this work, we suggest a technique of controller design that applied to systems based on nonlinea...