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A nonlinear observer for rotor flux estimation considering magnetic saturation effects in induction motor drives

机译:考虑感应电机驱动中磁饱和效应的转子磁链估计的非线性观测器

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This paper proposes a non-linear observer for Induction Machine (IM) drives which takes into consideration the saturation effects. The non-linear observer is based on an original formulation of the dynamic model of the IM taking into consideration the magnetic saturation of the iron core. A Lyapunov based convergence analysis is proposed in order to suitably compute the observer gain guaranteeing the stability of the observer. The proposed non-linear observer has been tested in numerical simulation and experimentally on a suitably developed test set-up. Its behaviour has been compared to that obtained with a classic Full-Order Luenberger Observer (FOLO) in variable flux working conditions, in terms of accuracy of the amplitude and phase of both the rotor flux linkage and the stator currents space vectors. Results have shown the capability of the proposed non-linear observer to correctly estimate the rotor flux linkage amplitude and phase under flux varying conditions including strong variation of the saturation of the iron path with accuracy in the flux estimation much higher than that obtained with the classic FOLO.
机译:本文提出了一种用于感应电机(IM)驱动器的非线性观测器,该观测器考虑了饱和效应。非线性观测器基于IM动态模型的原始公式,并考虑了铁芯的磁饱和。提出了基于李雅普诺夫的收敛性分析,以适当地计算观察者增益,从而保证观察者的稳定性。拟议的非线性观测器已在数值模拟中进行了测试,并在适当开发的测试装置上进行了实验。在转子磁通链和定子电流空间矢量的幅度和相位的精度方面,已将其行为与在可变磁通工作条件下使用经典的全阶Luenberger观测器(FOLO)获得的行为进行了比较。结果表明,提出的非线性观测器能够在磁通量变化的条件下正确估算转子磁链的幅值和相位,包括铁路饱和度的强烈变化,磁通量估算的精度比经典方法高得多。佛罗

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