基于滑模自抗扰的混合励磁直线电机气隙控制

Air Gap Control of Hybrid Excitation Linear Motor Based on Sliding Mode Active Disturbance Rejection Control

  • 摘要: 针对无绳提升用混合励磁双边初级直线电机(HEDPLM)在长行程运行中的气隙调衡问题,考虑气隙调节磁场与负载角耦合效应、不确定性扰动等影响,建立气隙调衡系统的数学模型,并提出一种改进的滑模自抗扰气隙调衡控制器。首先,采用连续函数对Levant微分器进行改进,降低了给定信号的输出抖振。其次,设计一种新型滑模趋近律引入到反馈控制环节中,并根据李雅普诺夫理论证明了控制系统的稳定性。仿真验证了在上述工况下所设计的新型滑模控制器具有良好的鲁棒性,并且提高了系统响应速度。

     

    Abstract: Aiming at the air gap balancing problem of hybrid-excitation double primary linear motor (HEDPLM) for ropeless hoisting in long stroke operation, and considering the coupling effect of air gap adjustment magnetic field and load angle and uncertain disturbance, we establish a mathematical model of the air gap balancing system, and propose an improved sliding mode active disturbance rejection air gap balancing controller. Firstly, we improve the Levant differentiator by using the continuous function, which reduces the output chattering of the reference signal. Secondly, we design a new sliding mode reaching law, introduce it into the feedback control loop, and then prove the stability of the control system using the Lyapunov theory. The simulation results verify that the designed new sliding mode controller is robust and improves the system response speed under the above conditions.

     

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