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Stator inductance matrix diagonalization algorithms for different multi-phase winding schemes of round-rotor electric machines part II. Examples and validations

机译:圆转子电机不同多相绕组方案的定子电感矩阵对角化算法第二部分。实例和验证

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The stator winding of multi-phase machines can be designed according to different schemes, which differ by either the number or the spatial arrangement of phases. For control and analysis purposes, it is often useful that the stator inductance matrix is reduced to a diagonal form. This allows for the multiphase machine to be split into independently-controllable systems and directly leads to stator harmonic impedance determination. Simple and compact diagonalization algorithms have been established in a companion paper covering all possible multiphase schemes of practical importance with a unified approach, under the hypothesis of uniform air-gap and negligible magnetic saturation. In this paper, the theory and algorithms proposed for inductance matrix diagonalizations are illustrated and validated by applying them on a on several multi-phase winding schemes implemented in a prototype machine with a reconfigurable stator winding.
机译:可以根据不同的方案来设计多相电机的定子绕组,方案的不同之处在于相数或相的空间布置。为了控制和分析目的,将定子电感矩阵简化为对角线形式通常很有用。这允许将多相电机分为独立可控的系统,并直接导致确定定子谐波阻抗。在一致的气隙和可忽略的磁饱和度的假设下,在随附的论文中建立了一种简单而紧凑的对角化算法,该算法涵盖了所有可能具有实际意义的多相方案,并采用统一的方法。在本文中,对电感矩阵对角化提出的理论和算法进行了说明和验证,方法是将其应用在具有可重配置定子绕组的原型机中实现的几种多相绕组方案上。

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