Input-Output Feedback Linearization Control with On-Line Inductances Estimation of Synchronous Reluctance Motors

A. Accetta, M. Cirrincione, F. D’Ippolito, M. Pucci, A. Sferlazza
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引用次数: 3

Abstract

This paper proposes an adaptive input-output Feedback Linearization (FL) techniques for Synchronous Reluctance Motor (SynRM) drives, taking into consideration the iron losses. As a main original content, this work proposes a control law based on a new dynamic model of the SynRM including iron losses as well as the on-line estimation of the static inductances. The on-line estimation of the SynRM static inductances permits to inherently take into consideration the magnetic saturation phenomena occuring on both axes. The estimation law is obtained thanks to a Lyapunov-based analysis and thus the stability of the entire control system, including the estimation algorithm, is intrinsically guaranteed. The proposed adaptive FL control improves formerly developed non linear controllers, characterized either by disregarding the saturation phenomenon or by considering it on the basis of an apriori known model. The proposed control technique, has been tested experimentally on a suitably developed test set-up.
同步磁阻电机电感在线估计的输入输出反馈线性化控制
提出了一种考虑铁损耗的同步磁阻电机自适应输入输出反馈线性化(FL)技术。作为主要的原创内容,本文提出了一种基于新的SynRM动态模型的控制律,包括铁损和静态电感的在线估计。SynRM静态电感的在线估计允许固有地考虑发生在两个轴上的磁饱和现象。通过基于李雅普诺夫的分析得到了估计律,从而从本质上保证了整个控制系统包括估计算法的稳定性。提出的自适应FL控制改进了以前开发的非线性控制器,其特点是忽略饱和现象或基于先验已知模型考虑饱和现象。所提出的控制技术,已在一个适当开发的测试装置上进行了实验测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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