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The Active Fractional Order Control for Maglev Suspension System

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  • Peichang Yu
  • Jie Li
  • Jinhui Li

Abstract

Maglev suspension system is the core part of maglev train. In the practical application, the load uncertainties, inherent nonlinearity, and misalignment between sensors and actuators are the main issues that should be solved carefully. In order to design a suitable controller, the attention is paid to the fractional order controller. Firstly, the mathematical model of a single electromagnetic suspension unit is derived. Then, considering the limitation of the traditional PD controller adaptation, the fractional order controller is developed to obtain more excellent suspension specifications and robust performance. In reality, the nonlinearity affects the structure and the precision of the model after linearization, which will degrade the dynamic performance. So, a fractional order controller is addressed to eliminate the disturbance by adjusting the parameters which are added by the fractional order controller. Furthermore, the controller based on LQR is employed to compare with the fractional order controller. Finally, the performance of them is discussed by simulation. The results illustrated the validity of the fractional order controller.

Suggested Citation

  • Peichang Yu & Jie Li & Jinhui Li, 2015. "The Active Fractional Order Control for Maglev Suspension System," Mathematical Problems in Engineering, Hindawi, vol. 2015, pages 1-8, April.
  • Handle: RePEc:hin:jnlmpe:129129
    DOI: 10.1155/2015/129129
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