基于扩展电动势估计的异步电机无速度传感器控制分析

M. Rodic, K. Jezernik, G. Edelbaher
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引用次数: 1

摘要

提出了一种适用于电动汽车的感应电机无速度传感器控制方法,可实现低速和零速运行,优化转矩响应和效率。在计算电机扩展电动势的基础上,通过闭环转子磁链观测器的输出来确定感应电机转子磁链的大小和定向角。所提出的定子磁链定向控制方案对参数变化和外部干扰具有鲁棒性。观测器和控制器都利用了连续滑模和李亚普诺夫理论。因此,可以顺利过渡到磁场减弱区,并充分利用逆变器的电流和电压能力。所产生的转矩是控制的连续输出变量。通过实验验证了该方法的参考跟踪性能。并对运行进行了频率分析,提出了参数整定方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An analysis of induction motor speed sensorless control using the extended EMF estimation
Induction motor speed sensorless control, which can be used in electric vehicles, allowing operation at low and zero speed, optimizing torque response and efficiency, is presented in the paper. The magnitude and orientation angle of the rotor flux of the induction motor are determined by the output of the closed-loop rotor flux observer based on the calculation of the extended electromotive force of machine. The proposed stator flux oriented control scheme is robust to parameter variations and external disturbances. Both, observer and controller, utilize the continuous sliding mode and Lyapunov theory. A smooth transition into the field weakening region and the full utilization of the inverter current and voltage capability are thus made possible. The produced torque is a continuous output variable of control. The reference tracking performance is demonstrated by experiments. Also the frequency analysis of the operation together with the proposal of parameter setting method is given.
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