Integral Backstepping Control of Induction Machine

A. Benheniche, F. Berrezzek
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Abstract

The goal of this work is to propose a latest design of a rotor speed and rotor flux modulus control approach for an induction machine using a Backstepping corrector with an integral action. The advantage of the Backstepping Strategy is the ability to manage a nonlinear system. The Lyapunov theory has been used to ensure the system stability. To improve the controller robustness proprieties the integral action is used, despite the system uncertainties and the existence of external disturbances. The unavailable rotor flux is recovered by estimation of the rotor flux of the machine based on the integration of the stator voltage expressions. The simulation results illustrate the effectiveness of the proposed control scheme under load disturbances, rotor resistance variation and low and high speed.
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感应电机的积分反步控制
本文的目标是提出一种最新设计的转子转速和转子磁链模量控制方法,该方法采用积分作用的反步校正器。退步策略的优点是能够管理一个非线性系统。采用李雅普诺夫理论来保证系统的稳定性。为了提高控制器的鲁棒性,在系统存在不确定性和外部干扰的情况下,采用积分作用。在定子电压表达式积分的基础上,通过估计电机的转子磁链来恢复不可用的转子磁链。仿真结果表明,所提控制方案在负载扰动、转子电阻变化、低速和高速下的有效性。
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