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Harmonic Plane Decomposition: An Extension of the Vector-Space Decomposition - Part II

机译:谐波平面分解:向量空间分解的扩展-第二部分

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In this paper the harmonic plane decomposition from part I is completed. Multiphase electrical machines with independently controlled stator coils benefit from a fixed amount of current controllers and unified models. In part I, the foundation for such models was laid. This paper shows that the choice of the base case has to fulfill certain criteria to properly represent vector-space quantities. More specifically, phase-pole configurations with an even number of pole pairs need adapted base cases with reduced rank as compared to the odd base case. Continuous modeling and control requires retention of the dimensionality of Clarke matrices. A different number of stator and rotor slots can lead to aliasing in the transformation, when keeping the dimension consistent. Therefore, a specific Clarke transformation for rotor quantities based on the developed theory is elaborated. Finally, it is demonstrated how the harmonic plane decomposition can be used to model each harmonic plane of an arbitrary phase-pole configuration with conventional machine equivalent circuits, e.g. the T-equivalent or inverse-Γ models.
机译:本文完成了第一部分的谐波平面分解。具有固定控制的定子线圈的多相电机受益于固定数量的电流控制器和统一模型。在第一部分中,为此类模型奠定了基础。本文表明,基本情况的选择必须满足某些条件才能正确表示向量空间量。更具体地,与奇数基本情况相比,偶数个极对的相极配置需要具有降低的等级的适应性基本情况。连续的建模和控制要求保留Clarke矩阵的维数。当保持尺寸一致时,不同数量的定子和转子槽可导致转换中出现混叠。因此,阐述了基于发达理论的转子量的特定Clarke变换。最后,说明了谐波平面分解如何用于建模常规电机等效电路中任意相极配置的每个谐波平面。 T等效模型或Γ逆模型。

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