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首页> 外文期刊>IEEE Transactions on Industrial Electronics >A Robust Observer and Nonorthogonal PLL-Based Sensorless Control for Fault-Tolerant Permanent Magnet Motor With Guaranteed Postfault Performance
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A Robust Observer and Nonorthogonal PLL-Based Sensorless Control for Fault-Tolerant Permanent Magnet Motor With Guaranteed Postfault Performance

机译:基于鲁棒的观察者和非正交PLL基于容错永磁电动机的无传感器控制,具有保证的后遗用性能

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摘要

This article proposes a robust observer and nonorthogonal phase-locked loop (PLL)-based sensorless control for the fault-tolerant permanent magnet synchronous motor (FTPMSM) in medium- and high-speed ranges to improve the position estimation reliability of the system, which can be applied for the sensorless control of the FTPMSM system in both normal and fault conditions. Due to the unsymmetric state of the FTPMSM under fault condition, a new sensorless control scheme based on the back electromotive force (EMF) of nonfault two-phase windings is proposed, in which the reference frame transformation is not necessary. The robust observer is proposed to accurately estimate the back EMF of the nonfault two-phase windings, which can guarantee the uniform boundedness and uniform ultimate boundedness of the system regardless of various uncertainties, including external disturbance, parameter variation, and phase winding fault. The nonorthogonal PLL is proposed to calculate the rotor position and speed of the FTPMSM by using the estimated two-phase back EMFs. The simulation and experimental results show that the FTPMSM system with the proposed sensorless control has excellent speed control performance, accurate rotor position/speed estimation, and great system robustness in the presence of various uncertainties, which is able to guarantee the system performance both in normal condition and in fault condition.
机译:本文提出了一种坚固的观察者和非正交锁相环(PLL),用于中等和高速范围内的容错永磁同步电动机(FTPMSM)的基于无传感器控制,以提高系统的位置估计可靠性,可以应用于FTPMSM系统的无传感器控制,在正常和故障条件下。由于FTPMSM在故障条件下的未对称状态,提出了一种基于非凹陷两相绕组的背部电动势(EMF)的新的无传感器控制方案,其中不需要参考帧变换。建议强大的观察者准确地估计非凹陷两相绕组的后部EMF,这可以保证系统的均匀有边界和均匀的最终界限,无论各种不确定性,包括外部干扰,参数变化和相位绕组故障。建议使用估计的两相回电EMF来计算非正交PLL以计算FTPMSM的转子位置和速度。模拟和实验结果表明,具有所提出的无传感器控制的FTPMSM系统具有优异的速度控制性能,准确的转子位置/速度估计,以及在各种不确定性的情况下存在的巨大系统鲁棒性,能够在正常中保证系统性能条件和故障条件。

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