This work demonstrates the design and development of a magnetic levitation (MagLev) system that is able to control both the position and orientation of the levitated object. For the position control, a pole placement method was exploited to estimate parameters of the proportional integral derivative (PID) controller. In addition, the MagLev was constructed using a pair of electromagnets, two infrared (IR) receiver-emitter pairs and a servo motor to allow the orientation of the object to be controlled. The proposed controller was programmed in a LabVIEW environment, which was then compiled and deployed into an embedded NI myRIO board. Experimental results demonstrated that the proposed method was able to achieve a zero steady-state orientati...
We have formulated and implemented a control system for levitation and motion control of a disk magn...
Magnetic Levitation system becomes a hot topic of study due to the minimum friction and low energy c...
A permanent magnet is levitated following the electromagnetic suspension principle using the attract...
In the present work, a magnetic levitation system (maglev) with one degree of freedom (vertical) is ...
This research investigates the control of a low cost vertical-axis maglev system for mechatronics an...
This paper investigates the control of a low cost vertical-axis maglev system for mechatronics and c...
This paper investigates the control of a low cost vertical-axis maglev system for mechatronics and c...
The magnetic levitation consists of balancing the forces of attraction and repulsion of a ferromagne...
This paper proposes Two-Degree of Freedom (2-DOF) Lead-plus-PI a classical linear control system for...
This thesis describes the analysis, design procedure, and real-time control of a magnetic levitatio...
This thesis describes the design procedure, analysis, and control of a single actuator magnetic levi...
ABSTRACT Magnetic actuation has opened a new horizon in biological/biomedical applications. A novel ...
Magnetic levitation (Maglev) system is a stimulating nonlinear mechatronic system in which an electr...
Magnetic levitation is a technique to suspend an object without any mechanical support. The main obj...
International audienceThis paper describes several noncontact methods of orienting objects in 3D spa...
We have formulated and implemented a control system for levitation and motion control of a disk magn...
Magnetic Levitation system becomes a hot topic of study due to the minimum friction and low energy c...
A permanent magnet is levitated following the electromagnetic suspension principle using the attract...
In the present work, a magnetic levitation system (maglev) with one degree of freedom (vertical) is ...
This research investigates the control of a low cost vertical-axis maglev system for mechatronics an...
This paper investigates the control of a low cost vertical-axis maglev system for mechatronics and c...
This paper investigates the control of a low cost vertical-axis maglev system for mechatronics and c...
The magnetic levitation consists of balancing the forces of attraction and repulsion of a ferromagne...
This paper proposes Two-Degree of Freedom (2-DOF) Lead-plus-PI a classical linear control system for...
This thesis describes the analysis, design procedure, and real-time control of a magnetic levitatio...
This thesis describes the design procedure, analysis, and control of a single actuator magnetic levi...
ABSTRACT Magnetic actuation has opened a new horizon in biological/biomedical applications. A novel ...
Magnetic levitation (Maglev) system is a stimulating nonlinear mechatronic system in which an electr...
Magnetic levitation is a technique to suspend an object without any mechanical support. The main obj...
International audienceThis paper describes several noncontact methods of orienting objects in 3D spa...
We have formulated and implemented a control system for levitation and motion control of a disk magn...
Magnetic Levitation system becomes a hot topic of study due to the minimum friction and low energy c...
A permanent magnet is levitated following the electromagnetic suspension principle using the attract...