Design of a discrete tracking controller for a magnetic levitation system: A nonlinear rational model approach

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Abstract

This work proposes a discrete-time nonlinear rational approximate model for the unstable magnetic levitation system. Based on this model and as an application of the input-output linearization technique, a discrete-time tracking control design will be derived using the corresponding classical state space representation of the model. A simulation example illustrates the efficiency of the proposed methodology.

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Gómez-Salas, F., Wang, Y., & Zhu, Q. (2015). Design of a discrete tracking controller for a magnetic levitation system: A nonlinear rational model approach. Mathematical Problems in Engineering, 2015. https://doi.org/10.1155/2015/360783

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