电感和反电动势谐波对五相永磁电机转矩/转速特性的影响

F. Scuiller, É. Semail
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引用次数: 8

摘要

本文对五相表面贴装永磁电机的转矩/转速特性进行了研究。考虑到几个假设(线性磁建模,只有反电动势和电流频谱中的一阶和三阶谐波项),制定了一个优化问题,旨在最大化给定最大电压和RMS电流的转矩:因此计算了代表实际五相机器的两个虚拟机(两个dq轴子空间)之间的最佳转矩共享对于任何机械速度。对于只考虑反电动势和电流一次谐波的逆变器直流电压,通过改变两个虚拟机反电动势的比值和改变两个虚拟机电感的比值来解决问题。通过引入特定的速度点来检验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inductances and Back-emf Harmonics Influence on the Torque/Speed Characteristic of Five-Phase SPM Machine
In this paper, the study of torque/speed characteristic for five-phase Surface-mounted Permanent Magnet (SPM) machine is carried out. With considering several hypothesis (linear magnetic modelling, only first and third harmonic terms in the back-emf and current spectrums), an optimization problem that aims to maximize the torque for given maximum voltage and RMS current is formulated: the optimal torque sharing among the two virtual machines (the two dq-axis subspaces) that represent the real five-phase machine is thus calculated for any mechanical speed. For an inverter and a DC voltage sized with only considering the first harmonic of back-emf and current, the problem is solved with changing the ratio between the two virtual machine back-emfs and changing the ratio between the two virtual machine inductances. The results are examined by introducing particular speed points.
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