TMS320F2812基于DSP实现无速度传感器异步电机驱动的高性能磁链估计器

M. Kaliamoorthy, S. Himavathi, A. Muthuramalingam
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引用次数: 11

摘要

本文研究了基于可编程低通滤波器的无速度传感器异步电动机定子磁链估计。该算法用于解决理想积分器和LPF相关的直流漂移问题和定子电阻变化引起的误差。该算法采用极增益补偿器在宽转速范围内估计定子磁链。从而大大降低了漂移问题的严重程度,并在较宽的转速范围内准确地估计了定子磁链。通过面向转子磁链的无速度传感器矢量控制,验证了可编程LPF算法的有效性,并在TMS320F2812 DSP处理器上对仿真结果进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DSP based implementation of high performance flux estimators for speed sensorless induction motor drives using TMS320F2812
This paper deals with programmable LPF (low pass filter) based stator flux estimation for speed sensorless induction motor drives. This algorithm is proposed to solve the dc drift problem and errors due to stator resistance variation associated with the ideal integrator and a LPF. This algorithm has pole/gain compensator to estimate stator flux over wide speed range. Accordingly, the severity of drift problem is much reduced and the stator flux is exactly estimated in the wide speed range. The validity of the Programmable LPF algorithm is verified by rotor flux oriented speed sensorless vector control of a three phase induction motor through simulation and the simulated results are verified in an TMS320F2812 DSP processor.
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