改进的无传感器控制感应电机驱动定子磁链和定子电阻估计器

A. S., R. Kaarthik, P. Rajeevan, A. Dasgupta
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引用次数: 1

摘要

感应电机驱动广泛应用于调速应用。使用速度传感器(编码器)进行速度控制会给驱动器操作带来困难,并降低可靠性,特别是在恶劣环境中,并使系统的维护和更换成本更高。这增加了对无速度传感器的感应电机驱动方案的需求,其中通过各种估计方案和算法估计速度。一种这样的速度估计方法是通过估计机器的定子磁链。但该方法的主要缺点是依赖于定子电阻进行磁链估计;感应电动机的定子电阻随负载和温度等运行条件而变化。提出了一种改进的定子磁链在线估计技术。本文所讨论的定子磁链估计器是基于闭环偏置补偿算法,利用从电机端测得的变量在线估计定子电阻。在Matlab-Simulink平台上进行了大量仿真,验证了所提出的无速度传感器矢量控制异步电机驱动定子磁链估计和定子电阻估计方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improved stator flux and stator resistance estimators for sensor-less control induction motor drives
Induction motor drives are widely used in adjustable speed applications. The use of speed sensors (encoders) for speed control introduces difficulties in drives operation and degrades the reliability especially in hostile environments, and makes the system more expensive to maintain and replace. This increases the demand for speed sensor-less induction motor drive schemes where the speed is estimated through various estimation schemes and algorithms. One such method of speed estimation is through the estimation of stator flux of the machine. But the major drawback of this method is its dependence on stator resistance for flux estimation; the stator resistance of an induction motor varies with operating conditions such as loading and temperature. An improved stator flux estimation technique with online stator resistance estimation is proposed in this paper. Stator flux estimator discussed in the paper is based on closed loop offset compensation algorithm and the stator resistance is estimated online using the variables measured from the motor terminals. The proposed schemes for stator flux estimation and stator resistance estimation for speed sensor-less vector controlled induction motor drive are validated through extensive simulation on a Matlab-Simulink platform.
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