采用高增益观测器和浸入式技术的输出反馈控制器

H. Chehimi, Salim Hadj Said, F. M'sahli
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引用次数: 0

摘要

本文研究了异步电动机输出反馈预测控制器的合成。理论研究表明,考虑输入约束条件解决控制律设计问题是可行的。此外,通过引入观测器来恢复系统不可用的状态变量。设计特色中有两个重要的标题值得强调。第一种方法是通过浸没技术识别电气参数。二是利用高增益观测器对机械转速、负载转矩和转子磁链进行在线准确估计。全局方案涉及无传感器输出反馈预测控制器的设计。最后以感应电机为例进行了仿真,验证了该控制设计方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Output feedback controller using the high gain observerand the immersion technique for an induction motor
This work deals with the synthesis of an output feedback predictive controller for an induction motor. The theoretical study showed the possibility of solving the control law design problem by taking into account input constraints. Furthermore, the unavailable state variables of the system are recovered by the incorporation of an observer. Two important titles in the design feature are worth to be emphasized. The first one consists in identification of electrical parameters by the immersion technique. The second consists in using the high gain observer (HGO) to perform on-line an accurate estimation of the mechanical speed, load torque and the rotor fluxes. The global scheme involves a design of a sensorless output feedback predictive controller. Simulation results for an induction motor are addressed to show the effectiveness of the control design method.
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