基于自适应模糊控制器的永磁同步电机变速传动系统建模与仿真

M. -. Benchouia, Salah Eddine Zouzou, A. Goléa, A. Ghamri
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引用次数: 21

摘要

许多工业应用需要新的控制技术,以获得快速响应和改善动态性能。其中使用的一种技术是模糊逻辑控制,它具有鲁棒性和对参数变化不敏感的特点。本文将该技术应用于间接电力电子转换驱动系统的设计。自适应模糊控制器(AFC)应用于所有的调节回路,从永磁同步电机(PMSM)的调速到线路变换器引入的谐波最小,包括功率因数和直流链路电压的控制。利用仿真结果研究了控制器在不同工作模式和参数变化情况下的鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling and simulation of variable speed drive system with adaptive fuzzy controller application to PMSM
Many industrial applications require new control techniques in order to obtain fast response and to improve the dynamic performances. One of the techniques used, is the fuzzy logic control which is characterized by robustness and insensitivity to the parameters variation. In this paper, the technique is applied for the design of a drive system fed from indirect power electronics conversion. The adaptive fuzzy controller (AFC) is applied in all regulation loops, starting from speed regulation of permanent magnet synchronous machine (PMSM) until the minimization of harmonics introduced by the line converter, including the control of power factor and DC-link voltage. We study the robustness of the controller using simulation results for different operating modes and parameters variation.
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