Improvement on asynchronous motor system identification based on interactive MRAS

Antong Deng, Jinhui Zou, Z. Shao, Guoyong Huang, Lei Shi, Weiquan Deng
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Abstract

Aiming at the inaccurate estimated rotate speed resulting from the parametric variation of the asynchronous motor, this paper designs an estimation method of the Model Reference Adaptive System (MRAS) that can identify the stator resistance and rotate speed simultaneously, and replaces PI link with sliding-mode control based on the approaching rate aiming at the complex PI gain coefficient adjustment existing in the common MRAS estimation method. This method can estimate the stator resistance and rotate speed value of the asynchronous motor during the operation only by detecting the stator side voltage and current, so as to make the whole system gain strong robustness on the change of the stator resistance, and improve the control accuracy of the whole system. The simulation experiment through the vector control on the asynchronous motor verifies the accuracy of the mentioned methods.
基于交互式MRAS的异步电机系统辨识改进
针对异步电动机参数变化导致转速估计不准确的问题,设计了一种同时识别定子电阻和转速的模型参考自适应系统(MRAS)估计方法,针对常用MRAS估计方法中存在的复杂PI增益系数调整问题,采用基于逼近率的滑模控制取代PI环节。该方法仅通过检测定子侧电压和电流即可估计出异步电动机在运行过程中的定子电阻和转速值,从而使整个系统对定子电阻的变化具有较强的鲁棒性,提高了整个系统的控制精度。通过对异步电动机进行矢量控制的仿真实验,验证了上述方法的准确性。
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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