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Direct Control of Bearingless Permanent Magnet Slice Motor Based on Stator Flux Observer

机译:基于定子磁通观测器的无轴承永磁体切片电机的直接控制

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The theory and method of direct torque control are applied to the torque and suspension force control of the bearingless permanent magnet slice motor (BPMSM) in this paper. Meanwhile, aiming at the defects of low precision and result lag of flux linkage observation, a novel stator flux observer combining the phase-locked loop (PLL) and prediction control module is introduced. Firstly, the operating principle of the BPMSM is analyzed, and the mathematical models are set up. Secondly, the PLL flux linkage observer is designed, then the prediction control models and direct control algorithm are given. Thirdly, the direct control system of the BPMSM is constructed by Matlab/Simulink. Finally, the feasibility and correctness of the flux linkage observer and control algorithm are verified through simulation and experiment. The research results show that the disturbance recovery time is shortened by 35 ms and the vibration amplitude and regulation time of the rotor are significantly reduced by around 39% and 40%, respectively.
机译:直接扭矩控制的理论和方法应用于本文无轴承永磁体切片电动机(BPMSM)的扭矩和悬架力控制。同时,旨在介绍磁通连杆观察的低精度和结果滞后的缺陷,引入了组合锁相环(PLL)和预测控制模块的新型定子磁通观测器。首先,分析了BPMSM的操作原理,并建立了数学模型。其次,设计了PLL通量联动观察者,然后给出了预测控制模型和直接控制算法。第三,BPMSM的直接控制系统由Matlab / Simulink构建。最后,通过仿真和实验验证了磁通连接观测器和控制算法的可行性和正确性。研究结果表明,扰动恢复时间缩短了35毫秒,转子的振动幅度和调节时间显着降低约39%和40%。

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