基于扰动观测器的环面永磁同步电机齿槽力抑制研究

Rongtao Zeng;Jinghong Zhao;Sinian Yan;Yinhao Mao
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引用次数: 0

摘要

针对一种新型环形永磁直线电机,从直线电机的齿槽力角度分析了电机恒加速运行时的推力波动。对于结构已经确定和加工的电机,不能改变电机的结构参数,也不能从电机本体的角度提高其性能。因此,本文试图从控制的角度考虑齿槽力对电机正常运行的影响。本文从电机的本体结构入手,首先提取了环形直线电机的齿槽力特性,并通过傅立叶分解得到其表达式,然后研究了考虑齿槽力和不考虑齿槽作用力控制的电机模型,可以看出,在考虑电机的齿槽力后,控制性能显著下降,并且在电机运行过程中加速度波动显著增加。在此基础上,引入扰动观测算法,通过提取扰动模型的特征值进行前馈补偿。结果表明,扰动观测器可以在很大程度上抑制电机齿槽力引起的推力波动,并且在电机加速运行过程中,可以将推力波动的峰峰值降低85%以上。
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Research on Cogging Force Suppression for Toroidal PMLSM Based on Disturbance Observer
For a new type of toroidal permanent magnet linear motor(TPMLSM), this paper analyzes the thrust fluctuation in the constant acceleration operation of the motor from the Angle of the cogging force of the linear motor. For the motor whose structure has been determined and processed, the structural parameters of the motor cannot be changed, and its performance cannot be improved from the perspective of the motor body. Therefore, this paper tries to consider the influence of the cogging force on the normal operation of the motor from the perspective of control. In this paper, starting from the body structure of motor, first on the annular linear motor of the cogging force characteristics were extracted, and its expression is obtained by Fourier decomposition, then investigated considering the cogging force and does not consider the cogging force control of motor model, it can be seen that the control performance deteriorates significantly after considering cogging force of the motor, and the acceleration fluctuation increases significantly during the operation of the motor. On this basis, disturbance observation algorithm is introduced, and feedforward compensation is carried out by extracting the characteristic values of the disturbance model. The results show that the disturbance observer can suppress the thrust fluctuation caused by the motor cogging force to a large extent, and it can reduce the peak-to-peak value of the thrust fluctuation by more than 85% during the motor acceleration operation.
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