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Current harmonic suppression in the flux-weakening control based on resonant-2DOF PID controllers for permanent magnet synchronous linear motor

机译:基于谐振2DOF PID控制器的永磁同步直线电机弱磁控制中的电流谐波抑制

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In this paper, the current harmonic suppression problem of permanent magnet synchronous linear motor (PMSLM) in the flux-weakening control is studied by using the proposed resonant two degree of freedom (2DOF) current PID controllers. First, the principle of the flux-weakening is analyzed based on the mathematical model and the current voltage constraints of PMSLM in the rotating reference coordinate system. Then a current leading angle flux-weakening control method is designed, which provides a wide velocity operation of PMSLM over based velocity. Subsequently, the resonant-2DOF PID controllers are adopted to effectively suppress the current harmonics induced by the non-ideal factors in the flux-weakening control. At last, the simulation studies and experiments are performed for PMSLM based on the control platform in comparison with the traditional PID controller. The contrast results indicate that the proposed method suppresses the current harmonics effectively, and achieves optimal tracking ability and optimal antidisturbance performance simultaneously.
机译:本文通过使用提出的谐振二自由度(2DOF)电流PID控制器,研究了弱磁控制中的永磁同步线性电动机(PMSLM)的电流谐波抑制问题。首先,基于数学模型和旋转参考坐标系中PMSLM的当前电压约束条件,分析了弱磁通的原理。然后设计了一种当前的超前角磁通弱化控制方法,该方法提供了基于速度的PMSLM的宽速度操作。随后,采用谐振2DOF PID控制器有效地抑制了弱磁通控制中非理想因素引起的电流谐波。最后,与传统的PID控制器相比,基于控制平台对PMSLM进行了仿真研究和实验。对比结果表明,该方法有效地抑制了电流谐波,同时达到了最佳的跟踪能力和最佳的抗干扰性能。

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