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Adaptive control of electromagnetic suspension system by Hopf bifurcation - MaRDI portal

Adaptive control of electromagnetic suspension system by Hopf bifurcation (Q474287)

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scientific article; zbMATH DE number 6372727
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English
Adaptive control of electromagnetic suspension system by Hopf bifurcation
scientific article; zbMATH DE number 6372727

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    Adaptive control of electromagnetic suspension system by Hopf bifurcation (English)
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    24 November 2014
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    Summary: EMS-type maglev system is essentially nonlinear and unstable. It is complicated to design a stable controller for maglev system which is under large-scale disturbance and parameter variance. Theory analysis expresses that this phenomenon corresponds to a HOPF bifurcation in mathematical model. An adaptive control law which adjusts the PID control parameters is given in this paper according to HOPF bifurcation theory. Through identification of the levitated mass, the controller adjusts the feedback coefficient to make the system far from the Hopf bifurcation point and maintain the stability of the maglev system. Simulation result indicates that adjusting proportion gain parameter using this method can extend the state stability range of maglev system and avoid the self-excited vibration efficiently.
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