改进滑模观测器的永磁同步电机矢量控制

Vector Control for Permanent Magnet Synchronous Motor Based on Improved Sliding Mode Observer

  • 摘要: 为了解决传统滑模观测器在永磁同步电机转子位置和转速估算时存在的抖振问题,提出了一种改进滑模观测器的永磁同步电机矢量控制方法.通过改进传统滑模观测器,设计了全阶滑模观测器,省去了传统滑模观测器在转子角度和转速估算前需要增加的低通滤波器.为了解决抖振问题,在改进滑模观测器中使用sigmoid函数作为切换函数,有效减小了抖振.引入模糊控制,根据转速和反电动势的关系,将转速和转速的变化率作为控制量,滑模增益作为输出量,从而柔化了控制信号实现了减小抖振的目的.转子角度和转速估算采用了改进型锁相环提高了锁相环的精度.仿真结果验证了改进观测器的有效性,对比传统滑模观测器将抖振减小了54.75%.

     

    Abstract: To eliminate the chattering problem of the traditional sliding mode observer in the rotor position and speed estimation of a permanent magnet synchronous motor, we propose a vector control method for permanent magnet synchronous motors on the basis of an improved sliding mode observer. By improving the traditional sliding mode observer, we design a full-order sliding mode observer that eliminates the need for a low-pass filter that traditional sliding mode observers need to increase before rotor angle and speed estimation. To eliminate the chattering problem, we use the sigmoid function as a switching function in the improved sliding mode observer, which reduces chatter effectively. According to the relationship between the speed and the counter electromotive force, we introduce the fuzzy control, take the speed and the rate of change of the speed as the control variables, and take the sliding mode gain as the output. Thus, the control signal is softened and the chattering is reduced. Rotor angle and rotation speed use an improved phase-locked loop. Simulation results verify the effectiveness of the improved observer, which reduces flutter by 54.75% compared with the traditional sliding observer.

     

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