微型混合动力汽车用七相爪极起动交流发电机的辨识

A. Bruyere, T. Henneron, É. Semail, F. Locment, A. Bouscayrol, J. Dubus, J. Mipo
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引用次数: 10

摘要

本文研究了一种新型大功率起动-交流发电机系统的辨识问题,采用有限元建模和实验矢量控制相结合的方法。该驱动器由一个同步的7相爪极电机和一个低压/大电流电压源逆变器(VSI)组成。这种结构需要特定的方法来规划其电气和机械行为,并确定控制所需的参数。首先,对机床进行了有限元建模。它用于预先确定电动势和扭矩。实验结果与数值结果吻合较好。在第二部分中,驱动器的电阻和电感参数由原始实验方法确定,该方法考虑了驱动器的每个组件:电池,VSI和机器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Identification of a 7-phase claw-pole starter-alternator for a micro-hybrid automotive application
This paper deals with the identification of a new high power starter-alternator system, using both: a finite element method (FEM) modeling and an experimental vector control. The drive is composed of a synchronous 7-phase claw-pole machine supplied with a low voltage / high current voltage source inverter (VSI). This structure needs specific approaches to plan its electrical and mechanical behaviors and to identify the parameters needed for control purpose. At first, a finite element method (FEM) modeling of the machine is presented. It is used for the predetermination of the electromotive forces and of the torque. Experimental results are in good accordance with numerical results. In a second part, resistive and inductive parameters of the drive are determined by an original experimental approach that takes into account each component of the drive: the battery, the VSI and the machine.
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