触觉界面中作动器参数估计:两种辨识方法的比较

F. Khatounian, Sandrine Moreau, Eric Monmasson, A. Janot, F. Louveau
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引用次数: 20

摘要

在先进的电机控制系统中,为了实现良好的性能,准确了解电机参数是必不可少的。其中一些参数,如定子电阻,有时由建造者给出,但它们根据运行条件而变化。本文以永磁同步电机为例,提出并比较了两种用于触觉接口的作动器参数辨识方法。利用这些方法,可以确定永磁同步电动机在不同工作状态下的电气参数。采用基于非线性规划算法的输出误差辨识方法和基于最小二乘技术和逆模型的辨识方法,对动态四参数模型进行了物理参数估计
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Parameters Estimation of the Actuator used in Haptic Interfaces: Comparison of two Identification Methods
In advanced motor control systems, an accurate knowledge of motor parameters is essential in order to achieve good performances. Some of these parameters, such as stator resistances, are sometimes given by constructors, but they vary according to the operating conditions. This paper presents and compares two parameter identification methods of an actuator used in haptic interfaces which, in this case, is a permanent magnet synchronous machine (PMSM). Using these methods, the electrical parameters of the PMSM can be determined during different operating conditions. Physical parameters estimation of a dynamic 4-parameter model is performed on the one hand, using an output error identification method based on a non linear programming algorithm and on the other hand, using an identification method based on least-squares techniques and inverse models
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