参数不确定磁悬架主动隔振系统的自整定 PID 反馈控制方法

Qianqian Wu, Zhihui Liu, Fengyan An, Bilong Liu
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摘要

针对具有非线性、时变和模型参数不确定性等特点的磁悬浮主动隔振系统,提出了一种基于自适应机制的自整定 PID(比例-积分-微分)控制方法。控制器在线识别被控对象参数并实时求解控制器参数。为测试所提方法的有效性,设计并构建了一个六自由度(DOF)磁悬浮主动隔振系统。得出了具有不确定模型参数的六自由度隔振系统动态模型,用于控制。进行了实验,并与传统 PID 控制和级联 PID 控制算法的控制效果进行了比较。实验结果表明,与国内外现有研究相比,所提出的自整定 PID 控制器在解决模型参数不确定问题上具有更突出的实用性和有效性,同时也证明了该控制方法对宽带干扰具有良好的隔振效果。
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Self-tuning PID feedback control method for magnetic suspension active vibration isolation system with parameters uncertainty
A self-tuning PID (Proportion-Integral-Derivative) control method based on the adaptive mechanism was proposed for the magnetic suspension active vibration isolation system with the characteristics of nonlinear, time-varying, and model parameter uncertainty. The controller identified the controlled object parameters online and solved the controller parameters in real time. To test the effectiveness of the proposed method, a six degree-of-freedom (DOF) magnetic suspension active vibration isolation system was designed and built. The six DOF dynamic model of the vibration isolation system with uncertain model parameters was derived for control. Experiments were carried out and compared with the control effects of the tradition PID control and cascade PID control algorithm. The experimental results show that the proposed self-tuning PID controller has more outstanding practicality and effectiveness in solving the model parameter uncertainty problem compared with the existing studies at home and abroad, and it also proves that the control method has a good isolation effect on the wide band disturbances.
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