基于反电磁场的永磁同步电机速度估计滑模观测器性能比较

S. K. Kommuri, J. Rath, K. Veluvolu, M. Defoort, S. Tatinati
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引用次数: 3

摘要

针对永磁同步电机无传感器速度估计问题,提出了一种二阶高速滑模观测器,并将其性能与高阶滑模观测器进行了比较。其中,用变量边界层用sigmoid函数代替sgn函数。在永磁同步电机模型中,将反电动势(EMFs)作为未知输入,提出了一种超同步电机观测器来估计反电动势(EMFs)。利用估计的反向电磁场,可以对永磁同步电机的转速进行精确的代数计算。与HOSM观测器相比,滑模观测器中常见的抖振现象通过用s型函数代替sgn函数得到了很好的抑制。仿真结果表明,与先前的HOSM观测器相比,所提出的SHSM速度估计方法具有良好的精度和抖振现象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance comparison of sliding mode observers for back EMFs based speed estimation in PMSM
This paper proposes a second-order high-speed sliding mode (SHSM) observer and compares the performance with the recent higher-order sliding mode (HOSM) observer for the problem of sensorless speed estimation in the permanent magnet synchronous motor (PMSM). In which, a sigmoid function is substituted for the signum function with a variable boundary layer. A SHSM observer is proposed to provide the estimation of back electro motive forces (EMFs) that are treated as unknown inputs in the PMSM model. An accurate speed estimate of PMSM can be algebraically computed with the estimated back EMFs. The chattering phenomenon, that is commonly found in the sliding mode observers is well-reduced by replacing signum function with the sigmoid function, in comparison to the HOSM observer. Simulation results show the effectiveness of the proposed SHSM speed estimation method in comparison to the earlier HOSM observer in terms of good accuracy and chattering phenomenon.
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