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Torque ripple reduction for 6-stator/4-rotor-pole variable flux reluctance machines by using harmonic field current injection

机译:通过使用谐波场电流注入,6定定速/ 4转子极可变磁通磁通磁通磁通磁通磁通磁通磁通磁通磁通磁通磁通磁通磁通磁阻机

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The variable flux reluctance machines (VFRMs) are electrically field excited synchronous machines having both field and armature windings on the stator. In order to investigate the torque production of the 6/4 VFRM, an instantaneous torque equation is derived for the first time considering the inductance harmonics by using Fourier series. According to the equation, the undesirable torque ripples having multiples of third harmonic exist due to the inductance harmonics of the field and armature windings. Hence, the harmonic field current injection methods are proposed for the torque ripple reduction. The torque waveforms calculated by 2D-finite element analysis (FEA) are compared with the predicted results from the derived torque equation. Although the methods are proposed at which the magnetic saturation does not occur, the torque ripple can be also reduced in saturation region. Since the proposed method utilizes the machine parameters the influence of the parameter mismatch is investigated. It shows that the torque ripple reduction performance is not affected much unless the fundamental component of nominal inductance is underestimated. The experimental results verify that the proposed approach can effectively reduce the torque ripple in the VFRM.
机译:可变磁通磁阻机(VFRMS)是电场激励同步机,其在定子上具有磁场和电枢绕组。为了研究6/4VFRM的扭矩产生,首次通过使用傅立叶系列考虑电感谐波的瞬时扭矩方程。根据该等式,由于场和电枢绕组的电感谐波,存在具有三倍的不希望的扭矩涟漪。因此,提出了谐波场电流注入方法,用于减小扭矩脉动。将通过2D-有限元分析(FEA)计算的扭矩波形与来自衍生扭矩方程的预测结果进行比较。尽管提出了不发生磁饱和的方法,但是在饱和区域中也可以减少扭矩脉动。由于所提出的方法利用机器参数,研究了参数不匹配的影响。它表明,除非被低估了标称电感的基本组分,否则扭矩脉动降低性能不受影响。实验结果验证了所提出的方法可以有效地降低VFRM中的扭矩脉动。

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