1673-159X

CN 51-1686/N

基于SPWM的改进滑模永磁同步电机自适应无感控制

Research on Adaptive sensorless strategy of improved sliding mode permanent magnet synchronous motor based on SPWM\

  • 摘要: 针对传统滑模控制器和滑模观测器对永磁同步电机抖振高、响应速率低和相位延迟等问题,提出基于SPWM的改进滑模自适应无感控制策略。首先,将三次谐波加入少用且工程中易实现的SPWM电压调制法,以提高直流侧电压利用率;接着,设计新渐变趋近率改进速度滑模控制器;最后,设计新自适应Super-Twisting滑模观测器观测电机转子角度和转速。通过仿真实验将所提方法与传统速度PI&传统滑模观测和传统速度滑模&传统滑模观测策略对比,所提方法速度抖振量降低60.71%和16.98%,响应时间分别缩短0.025 s和0.004 s,其无感策略也良好解决传统低通滤波器相位延迟问题。

     

    Abstract: Since high chattering and phase delay of traditional control strategy cannot be solved with the sliding mode controller and sliding mode observer, a sensorless control strategy is proposed to improve SPWM sliding mode. First, the third harmonic is added to the SPWM voltage modulation method, which is rarely used and easy to implement in engineering, so as to improve the DC voltage utilization of the inverter. Second, choose new gradient approach rate, rather than improved speed sliding form controller. And then, design an adaptive Super-Twisting sliding mode observer which observes the rotor angle and speed. Finally, compare the proposed strategy with the traditional velocity PI & sliding mode observer and the traditional velocity sliding mode & sliding mode observer strategies through simulation. And compared to the two traditional strategies, the proposed strategy brings decreases on response time (by 0.025 s and 0.004 s), chattering (by 60.71% and 16.98%),the observer solves the phase delay problem well and reduces the speed chattering and angle estimation error .

     

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