A synchronous reference frame sliding mode based estimator for the speed and flux magnitude of the induction motor drive

M. Comanescu
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Abstract

The paper discusses the problem of speed and rotor flux magnitude estimation for the induction motor (IM) drive and presents a sliding mode observer (SMO) that is constructed based on the IM model in the synchronous reference frame. To implement the control scheme of the IM drive, generally, the speed and the flux magnitude are needed. In a control scheme with speed and flux regulation, they are used for d and q axis feedback. If the current control scheme uses a decoupling compensator, the flux and speed are needed to compute the decoupling voltages. The paper develops a SM observer for the flux magnitude based on the synchronous reference frame model of the IM. The method assumes that the d-q voltages and currents are available. The observer requires knowledge of the motor speed - instead, the SMO is fed with a speed estimate (assumed inaccurate). Using a specific gain design, the SMO is made insensitive to the input speed inaccuracy. Using the equivalent controls of the observer, the initial speed estimate is corrected to obtain two secondary speed estimates. A weighted average speed estimate that combines the secondary estimates is also shown. The theoretical findings are supported with simulations.
基于同步参考系滑模的异步电机转速和磁链大小估计器
讨论了异步电动机的转速和转子磁链大小估计问题,提出了在同步参考系下基于异步电动机模型构建的滑模观测器。为了实现IM驱动器的控制方案,通常需要速度和磁链大小。在速度和磁链调节的控制方案中,它们用于d轴和q轴反馈。如果电流控制方案使用解耦补偿器,则需要磁链和速度来计算解耦电压。本文在同步参考坐标系模型的基础上,开发了一种磁链大小观测器。该方法假定d-q电压和电流是可用的。观测器需要知道电机速度——相反,SMO被输入一个速度估计(假设不准确)。采用特定的增益设计,SMO对输入速度误差不敏感。利用观测器的等效控制,对初始速度估计进行校正,得到两个二次速度估计。还显示了结合二级估计的加权平均速度估计。这些理论发现得到了模拟的支持。
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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