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Improved frequency-domain design method for the fractional order proportional–integral–derivative controller optimal design: a case study of permanent magnet synchronous motor speed control

机译:分数阶比例-积分-微分控制器最优设计的改进频域设计方法:以永磁同步电动机速度控制为例

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摘要

An improved frequency-domain method for the fractional order PIλDμcontroller design is proposed in this study. A proportional relation between the integral gain and derivative gain of the controller is built, while the derivative order is set to be equal to the integral order. Applying the improved method, the PIλDμcontroller parameters can be calculated analytically according to different design requirements. The proportional coefficient between the integral and derivative gains is studied and then the model of the optimal proportional coefficient for the commonly used permanent magnet synchronous motor speed control system is built. Based on the established model, the optimal PIλDμcontrollers are obtained analytically applying the proposed method. Motor speed control simulations and experiments are performed, comparing the performance of the controllers obtained using the proposed method and those obtained using the current frequency-domain method and other design methods. Simulation and experimental results show that the control system obtained using the proposed method achieves the specified stability, robustness to gain variations and the optimal dynamic performance.
机译:分数阶PI n λDμ控制器设计。建立积分增益和微分增益之间的比例关系,而微分阶数设置为等于积分阶数。应用改进的方法,PI n λ nD n μ控制器参数可以根据不同的设计要求进行解析计算。研究了积分增益与微分增益之间的比例系数,然后建立了常用的永磁同步电动机调速系统的最佳比例系数模型。基于已建立的模型,最佳PI n λ nD n μ控制器可以通过所提出的方法解析地获得。进行了电动机速度控制仿真和实验,比较了使用所提出的方法获得的控制器与使用当前频域方法和其他设计方法获得的控制器的性能。仿真和实验结果表明,使用该方法获得的控制系统具有规定的稳定性,鲁棒性以获得增益变化和最佳动态性能。

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