感应电机驱动反步实时控制的实验研究

Meryem Benakcha, A. Benakcha, S. Zouzou, A. Ammar
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引用次数: 2

摘要

感应电机与静态变换器相结合,构成了一种变速驱动器,其工业用途日益重要。为了获得良好的动态性能,有必要发展鲁棒控制律。本文的目的是对一种应用于三相感应电机的反步矢量控制策略进行实验验证。这种方法包括用一种使用回溯技术的算法取代传统的比例/积分(PI)控制器。PI控制器在其增益合成中存在对机器参数依赖性强的缺点。该系统的开发基于李亚普诺夫稳定性理论。结果表明,由于系统完全遵循速度参考,保证了两个磁链的解耦,因此具有良好的动态性能。在dSPACE 1104采集卡和MATLAB / Simulink环境下进行了控制的设计和实时实验实现。所使用的机器为三相1.1 kW感应电机。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental study of a real-time control by backstepping technique of an induction motor drive
Induction machine, associated with a static converter, constitutes a variable speed drive whose industrial uses are increasingly important. To achieve good dynamic performances, it is therefore necessary to develop robust control laws. The aim of this paper is the experimental validation of a Backstepping vector control strategy applied to the three-phase induction machine (IM). This approach consists in replacing the conventional controller proportional/integral (PI) by an algorithm using the Backstepping technique. The PI controller has the drawbacks of a strong dependence on the machine parameters in their gains synthesis. The system development is based on Lyapunov's stability theory. The results show good dynamic performances, because the system perfectly follows the speed reference, ensuring the decoupling of the two fluxes. The design of the control and its experimental implementation in real time are carried out on a dSPACE 1104 acquisition card and in a MATLAB / Simulink environment. The machine used is a three-phase 1.1 kW induction machine.
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