scholarly journals Design embedded control system based controller of the quasi time optimization approach for a magnetic levitation system

Author(s):  
C X Nguyen ◽  
T D Pham ◽  
A D Lukynov ◽  
P C Tran ◽  
Q D Truong
2014 ◽  
Vol 2014 ◽  
pp. 1-7
Author(s):  
Kumeresan A. Danapalasingam

A robust fuzzy logic controller is proposed for stabilization and disturbance rejection in nonlinear control systems of a particular type. The dynamic feedback controller is designed as a combination of a control law that compensates for nonlinear terms in a control system and a dynamic fuzzy logic controller that addresses unknown model uncertainties and an unmeasured disturbance. Since it is challenging to derive a highly accurate mathematical model, the proposed controller requires only nominal functions of a control system. In this paper, a mathematical derivation is carried out to prove that the controller is able to achieve asymptotic stability by processing state measurements. Robustness here refers to the ability of the controller to asymptotically steer the state vector towards the origin in the presence of model uncertainties and a disturbance input. Simulation results of the robust fuzzy logic controller application in a magnetic levitation system demonstrate the feasibility of the control design.


Nukleonika ◽  
2014 ◽  
Vol 59 (2) ◽  
pp. 73-79
Author(s):  
Mohammad Divandari ◽  
Mehdi Hashemi-Tilehnoee ◽  
Masoud Khaleghi ◽  
Mohammadreza Hosseinkhah

Abstract In this paper, an electromagnetic levitation system was used with a synchronous motor to navigate the control rod of a small-type research reactor. The result from this prototype magnetic levitation system was in agreement with simulation results. The control system was programmed in MATLAB through open-loop system, closed-loop with state feedback and closed-loop with state feedback integral tracking. The final control system showed the highest performance with a low positioning error. Our results showed that the developed control system has the potential to be used as a reliable actuator in nuclear reactors to satisfy higher performance and safety.


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