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Influence of on-load voltage distortion on torque-speed characteristic of interior permanent magnet machines

机译:有载电压畸变对内部永磁电机转矩-速度特性的影响

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The on-load voltage distortion in interior permanent magnet (IPM) machine refers to the terminal voltage distorted by armature reaction. In this paper, the mechanism of the on-load voltage distortion have been investigated with the aid of frozen permeability method based on both fractional and integer slot IPM machines. It reveals that the local magnetic saturation caused by armature reaction will distort the on-load back-EMFs and dq-axis inductances, which consequently leads to terminal voltage distortion. Due to the geometric feature of IPM rotors, the armature reaction fluxes become more difficult to circulate with the increase of current angle, which further enhances the fluctuation of dq-axis inductances and is found to be the main reason for the terminal voltage distortion in flux weakening operations. Then, the variations of both on-load back-EMFs and dq-axis inductances due to armature reaction are investigated. Consequently, the torque ripples under different current angles are analysed. Meanwhile, the flux weakening performances under fixed DC link voltages are also calculated, which shows the terminal voltage distortion may largely reduce the flux weakening operation region and cause the control of the drive system difficulty. Finally, a 42-slot/8-pole IPM machine is tested to validate the analyses, which also reveals that the phase currents would be distorted if ignoring the peak voltage caused by on-load voltage distortion.
机译:内部永磁体(IPM)电机的有载电压失真是指由于电枢反应而失真的端子电压。本文利用基于分数和整数槽IPM机的冻结磁导率方法研究了有载电压畸变的机理。它揭示了由电枢反应引起的局部磁饱和将使有载反电动势和dq轴电感失真,从而导致端子电压失真。由于IPM转子的几何特性,电枢反应磁通量随着电流角的增加而变得更难流通,这进一步加剧了dq轴电感的波动,并且被发现是磁通量中端电压失真的主要原因。削弱运营。然后,研究了由于电枢反应而引起的带负载反电动势和dq轴电感的变化。因此,分析了不同电流角下的转矩脉动。同时,还计算了固定直流母线电压下的磁通削弱性能,这表明端子电压畸变可能会大大减小磁通削弱操作区域并导致驱动系统控制困难。最后,测试了一台42槽/ 8极IPM电机以验证分析结果,该分析还表明,如果忽略由有载电压失真引起的峰值电压,则相电流将会失真。

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