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Current Control Methods for an Asymmetrical Six-Phase Induction Motor Drive

机译:不对称六相感应电动机驱动器的电流控制方法

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摘要

Using the vector space decomposition approach, the currents in a multiphase machine with distributed winding can be decoupled into the flux and torque producing α-β components, and the loss-producing x-y and zero-sequence components. While the control of α-β currents is crucial for flux and torque regulation, control of x-y currents is important for machine/converter asymmetry and dead-time effect compensation. In this paper, an attempt is made to provide a physically meaningful insight into current control of a six-phase machine, by showing that the fictitious x-y currents can be physically interpreted as the circulating currents between the two three-phase windings. Using this interpretation, the characteristics of x-y currents due to the machine/converter asymmetry can be analyzed. The use of different types of x-y current controllers for asymmetry compensation and suppression of dead-time-induced harmonics is then discussed. Experimental results are provided throughout the paper, to underpin the theoretical considerations, using tests on a prototype asymmetrical six-phase induction machine. © 1986-2012 IEEE.
机译:使用矢量空间分解方法,具有分布绕组的多相电机中的电流可以解耦为产生磁通和转矩的α-β分量,以及产生损耗的x-y和零序分量。尽管α-β电流的控制对于磁通和转矩调节至关重要,但x-y电流的控制对于电机/转换器不对称和死区时间补偿很重要。在本文中,通过显示虚拟的x-y电流可以物理地解释为两个三相绕组之间的循环电流,试图对六相电机的电流控制提供物理上有意义的理解。使用这种解释,可以分析由于电机/转换器不对称引起的x-y电流的特性。然后讨论了使用不同类型的x-y电流控制器进行不对称补偿和抑制死区引起的谐波。通过在原型不对称六相感应电机上进行测试,在整个论文中提供了实验结果,以支持理论考虑。 ©1986-2012 IEEE。

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