Self-tuning control of both current sensor offset and electrical parameter variations for PM motor

Y. Uenaka, M. Sazawa, K. Ohishi
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引用次数: 3

Abstract

It is very important to identify the electrical parameters accurately for the servo system of PM motor, that keep the fine torque response and the fine speed response. Generally, the electrical parameters of PM motor are identified by using the motor voltage and motor current. However, current sensor often has the offset value. In this case, the servo system of PM motor has the torque ripple and can not be identified accurately the motor parameters. In order to overcome these problems, this paper proposes a new self-tuning control of both current sensor offset and electrical parameter variation for PM motor. In this paper, the experimental results and the numerical simulation resluts confirm that the proposed method well estimates each current sensor offset of U phase and V phase, the motor resistance Ra, the motor inductance La and the motor magnetic flux Φfa individually and accurately, and carries out the fine self-tuning for the current controller of PM motor servo system.
永磁电机电流传感器偏置和电参数变化的自整定控制
准确辨识永磁电机伺服系统的电气参数,对保持良好的转矩响应和速度响应具有重要意义。一般来说,永磁电机的电气参数是通过电机电压和电机电流来确定的。然而,电流传感器往往有偏移值。在这种情况下,永磁电机伺服系统存在转矩脉动,无法准确识别电机参数。为了克服这些问题,本文提出了一种新的永磁电机电流传感器偏置和电参数变化自整定控制方法。本文的实验结果和数值仿真结果证实,该方法能较好地分别准确地估计出U相和V相各电流传感器偏移量、电机电阻Ra、电机电感La和电机磁通Φfa,并对永磁电机伺服系统的电流控制器进行精细自整定。
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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