Compensation of static end effects in linear induction motor drives by frequency-adaptive synchronous controllers

A. Accetta, M. Pucci, A. Lidozzi, L. Solero, F. Crescimbini
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引用次数: 3

Abstract

Both the static and the dynamic end effects of the linear induction motor (LIM) cause an increase of the difficulty in controlling with good performance the main electro-mechanical characteristics of the machine, in particular the thrust and the linear speed. These effects are related to asymmetries in the inductor structure with respect to the rotating counterpart, in both the longitudinal and in the transversal direction. This paper propose a technique for the compensation of the LIM static end effects by a synchronous controller in conjunction with a neural adaptive filter, exploited to extract the inverse sequence current component from the inductor current signature. This permits to compensate the static-end effects and thus to cover the static asymmetries of the LIM with respect to the rotating induction motor (RIM).
用频率自适应同步控制器补偿直线感应电动机的静态末端效应
直线感应电动机的静态端效应和动态端效应都增加了控制电机主要机电特性,特别是推力和线速度的难度。这些影响与电感结构相对于旋转对应物的不对称性有关,在纵向和横向方向上都是如此。本文提出了一种利用同步控制器与神经自适应滤波器相结合的方法来补偿LIM静态末端效应,并利用该方法从电感电流特征中提取逆序电流分量。这允许补偿静态端效应,从而覆盖相对于旋转感应电机(RIM)的静态不对称性。
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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