时变负载转矩不确定性下磁饱和感应电机的自适应控制

A. Ebrahim, G. Murphy
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引用次数: 2

摘要

基于转速和定子电流的测量,设计了一种新的磁饱和异步电动机速度控制全局自适应控制器。所设计的部分状态反馈控制器是无奇点的,保证了在时变负载转矩下电机速度的光滑参考轨迹的渐近跟踪。该控制算法对未知时变负载转矩和转子磁链产生估计,渐近跟踪并收敛到它们的真值。转子磁通模数渐近跟踪一个期望的参考信号,该信号允许电机在其规格内运行。与磁场定向控制方案一样,控制算法为定子电流的磁化磁通分量和速度分量生成参考。该控制策略产生了解耦的转子转速和磁链幅值跟踪控制目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive Control of an Induction Motor with Magnetic Saturation Under Time-Varying Load Torque Uncertainty
A new global adaptive controller is designed for speed control induction motor with magnetic saturation, based on measurements of speed and stator currents. The designed partial state feedback controller is singularity free, and guarantees asymptotic tracking of smooth reference trajectories for the speed of the motor under time varying load torque. The new control algorithm generates estimates for unknown time varying load torque and rotor flux which asymptotically tracks and converges to their true values. The rotor flux modulus asymptotically tracks a desired reference signal which allows the motor to operate within its specifications. As in the field-oriented control scheme, the control algorithm generates references for the magnetizing flux component and for the speed component of the stator current. The control strategy yields decoupled rotor speed and rotor flux amplitude tracking control goals.
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