Synchronous Motor Sensorless Drives based on Rotating Signal Injection and Direct Ellipse Estimation

L. Ortombina, M. Berto, L. Alberti
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引用次数: 2

Abstract

The paper deals with a position sensorless control for synchronous motor drive with a reduced number of tunable parameters. The current response due to the high-frequency rotating signal injection describes an elliptical trajectory centered on the fundamental current vector and its major axis tilt is related to the rotor position. The proposed method fits the motor current response on the implicit ellipse equation by means of the least square (LS) algorithm. The proposed LS algorithm processes the measured currents, without the need to filter them as occurs in conventional injection methods. No motor parameters are required to tune the proposed position estimator. The method was validated throughout several experimental tests performed on a permanent magnet synchronous motor electric drive.
基于旋转信号注入和直接椭圆估计的同步电机无传感器驱动
本文研究了一种减少可调参数数量的同步电机无位置传感器控制方法。高频旋转信号注入引起的电流响应描述了一条以基本电流矢量为中心的椭圆轨迹,其长轴倾角与转子位置有关。该方法采用最小二乘法将电机电流响应拟合到隐式椭圆方程上。所提出的LS算法处理测量电流,而不需要像传统的注入方法那样对它们进行过滤。不需要电机参数来调整所提出的位置估计器。该方法在永磁同步电机电驱动上进行了多次实验验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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审稿时长
24 weeks
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