基于直接矢量控制的PI模糊逻辑控制器对异步电机驱动不进行磁链测量的高性能模糊自整定比例因子

K. Kouzi, L. Mokrani, M. Nait
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引用次数: 14

摘要

研究了基于直接矢量控制的异步电动机模糊逻辑控制器模糊自整定比例因子的转子磁链滑模观测器。转子磁链滑模估计器利用电机电方程对两相静止参照系中的转子磁链分量进行检测。通过电流观测器来保证磁链估计的精度。实际电流与观测电流之间的误差收敛到零,保证了磁通估计的准确性。为了在转子电阻/自感、惯性等关键参数发生剧烈变化的情况下也能实现鲁棒的速度动态响应,提出了一种模糊逻辑控制器(FLC)调速比例因子模糊整定程序的简单设计。此外,为了提高磁场定向对参数变化的鲁棒性,引入滑模控制器对转子磁链进行调节。该方案适用于需要鲁棒速度控制和磁场定向的应用,即使存在一些关键参数偏差。通过仿真结果验证了所提方案的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High performances of fuzzy self-tuning scaling factor of PI fuzzy logic controller based on direct vector control for induction motor drive without flux measurements
This study investigates a rotor flux sliding-mode observer for a fuzzy self-tuning scaling factor of fuzzy logic controller based on direct vector control for induction motor (IM). The rotor flux sliding-mode estimator detects the rotor flux components in the two-phase stationary reference frame using the motor electrical equations. The flux estimation accuracy is guaranteed through the current observer .i.e. the error between the actual current and observed current converges to zero which ensures the accuracy of the flux estimation. In order to achieve a robust speed dynamic response even under severe variation of some key parameters such as rotor resistance/self-inductance, and inertia, a simple design of the scaling factor fuzzy tuning procedure of a fuzzy logic controller (FLC) for speed regulation is proposed. Moreover in order to improve the field-orientation robustness with respect to parameter variation, sliding-mode controller was incorporated for rotor flux regulation. The proposed scheme is recommended for applications requiring robust speed control and field-orientation even in presence of some key parameters deviation. The performance of the suggested scheme has been tested via some simulation results.
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