基于模型参考自适应系统和增强滑模观测器的五相永磁同步电机动态性能分析

Mahmoud A. Mossa, Hamdi Echeikh, A. Ma’arif
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引用次数: 1

摘要

本文旨在利用两种不同的观测器:滑模(SMO)和模型参考自适应系统(MRAS)来评估五相永磁同步电机驱动器的动态性能。首先详细介绍了驱动器矢量控制的设计,以直观地显示速度和电流控制器增益的合理选择,然后给出了两个观测器的构造。最后给出了两种观测器的稳定性检查和分析,并给出了评估结果,以直观地显示每种无传感器技术的特点,并找出其优缺点。结果表明,在不同工况下,与MRAS相比,设计的SMO具有更好的性能和更强的鲁棒性。考虑到定子电阻值和定子电感值的不匹配,得到的结果证实了这一事实。在MRAS下,转速估计值和转子位置估计值存在较大偏差,并伴有高速和转矩振荡。
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Dynamic Performance Analysis of a Five-Phase PMSM Drive Using Model Reference Adaptive System and Enhanced Sliding Mode Observer
This paper aims to evaluate the dynamic performance of a five-phase PMSM drive using two different observers: sliding mode (SMO) and model reference adaptive system (MRAS). The design of the vector control for the drive is firstly introduced in details to visualize the proper selection of speed and current controllers’ gains, then the construction of the two observers are presented. The stability check for the two observers are also presented and analyzed, and finally the evaluation results are presented to visualize the features of each sensorless technique and identify the advantages and shortages as well. The obtained results reveal that the de-signed SMO exhibits better performance and enhanced robustness compared with the MRAS under different operating conditions. This fact is approved through the obtained results considering a mismatch in the values of stator resistance and stator inductance as well. Large deviation in the values of estimated speed and rotor position are observed under MRAS, and this is also accompanied with high speed and torque oscillations.
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