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Improved sensorless control method combining SMO and MRAS for surface PMSM drives

机译:结合SMO和MRAS的表面PMSM驱动器的改进无传感器控制方法

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This paper proposes a sensorless speed control method combining sliding mode observer (SMO) and model reference adaptive system (MRAS) for the surface permanent magnet synchronous motor drives. This hybrid method can guarantee the convergence of both speed and position estimation simultaneously. In order to eliminate the torque fluctuations and mitigate the influence of harmonic components in the estimated back electromotive force (back-eMF) for SMO, a frequency variable stator current tracker (FVT) based on output regulation is proposed. It can estimate the back-EMF accurately. The improved control method provides high accuracy in estimating the rotor position and speed. Simulation results are provided to further validate the proposed rotor position and speed estimation schemes under different speed. It is worth of mentioning that the improved control method can still maintain high estimation accuracy of rotor speed and position at low speed.
机译:针对表面永磁同步电机驱动器,提出了一种结合滑模观测器(SMO)和模型参考自适应系统(MRAS)的无传感器速度控制方法。这种混合方法可以同时保证速度和位置估计的收敛性。为了消除转矩波动并减轻谐波分量对SMO的估计反电动势(back-eMF)的影响,提出了一种基于输出调节的变频定子电流跟踪器(FVT)。它可以准确地估计反电动势。改进的控制方法在估算转子位置和速度方面提供了高精度。仿真结果提供了进一步验证所提出的转子位置和速度估计方案在不同速度下的方案。值得一提的是,改进的控制方法仍然可以在低速时保持较高的转子速度和位置估计精度。

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