Adaptive partial feedback linearization of induction motors

R. Marino, S. Peresada, P. Valigi
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引用次数: 107

Abstract

A nonlinear adaptive state feedback input-output linearizing control is designed for a fifth-order model of an induction motor which includes both electrical and mechanical dynamics under the assumptions of linear magnetic circuits. The control algorithm contains a nonlinear identification scheme which asymptotically tracks the true values of the load torque and rotor resistance, which are assumed to be constant but unknown. Once those parameters are identified, the two control goals of regulating rotor speed and rotor flux amplitude are decoupled. Full state measurements are required. Preliminary simulations show that a good performance is maintained when flux signals are provided to the adaptive control algorithm.<>
感应电机的自适应部分反馈线性化
针对线性磁路假设下的五阶感应电机模型,设计了一种非线性自适应状态反馈输入输出线性化控制。该控制算法包含一种非线性辨识方法,该方法可以渐近跟踪负载转矩和转子电阻的真实值,假设它们是恒定但未知的。一旦确定了这些参数,就可以解耦调节转子转速和转子磁链幅值两个控制目标。需要进行全状态测量。初步仿真结果表明,在提供磁链信号的情况下,自适应控制算法仍能保持良好的性能
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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