Robust Integral State Feedback Using Coefficient Diagram in Magnetic Levitation System | IEEE Journals & Magazine | IEEE Xplore

Robust Integral State Feedback Using Coefficient Diagram in Magnetic Levitation System


Schema and Result of Robust Integral State Feedback Using Coefficient Diagram Method (CDM) in Magnetic Levitation (Maglev) System.

Abstract:

Magnetic Levitation System or Maglev system is a modern and future technology that has many advantages and applications. Its characteristic is highly nonlinear, fast dyna...Show More

Abstract:

Magnetic Levitation System or Maglev system is a modern and future technology that has many advantages and applications. Its characteristic is highly nonlinear, fast dynamics, and unstable, so it is challenging to make a suitable controller. The model of the Maglev system is in nonlinear state-space representation, and then feedback linearization is implemented to obtain the linear model system. Then, the integral state feedback control that tuned by the coefficient diagram method is implemented. The robustness of the controller is determined using the coefficient diagram method. The result of the standard coefficient diagram parameter will be compared with the robustness parameter. The open-loop test simulation showed that the maglev system has a nonlinear characteristic. Among all of the uncertainties, the uncertainty of resistance provides the highest nonlinearity, even by the small value of uncertainty. The examination of the mass, inductance, and resistance uncertainties showed that the robustness parameter is able to handle them and to provide a robust controller.
Schema and Result of Robust Integral State Feedback Using Coefficient Diagram Method (CDM) in Magnetic Levitation (Maglev) System.
Published in: IEEE Access ( Volume: 8)
Page(s): 57003 - 57011
Date of Publication: 18 March 2020
Electronic ISSN: 2169-3536

Funding Agency:


References

References is not available for this document.