Modeling of split-phase machines in Park's coordinates. Part I: Theoretical foundations

A. Tessarolo, M. Bortolozzi, A. Contin
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引用次数: 12

Abstract

A split-phase machine is a special electric machine whose stator winding is split into multiple (N) three-phase sets. The possibility to supply it through N independent inverters makes it attractive especially when high power and reliability are required. So far, the dq0 refeence frame representation, originally introduced for three-phase machines, has been applied in detail to split-phase configurations in the N=2 case only. In this paper, the extension to an arbitrary number of stator sets is investigated from an analytical viewpoint. In particular, the paper shows that when N exceeds two, the d-axis and q-axis stator voltage equations are no more decoupled, in general, as it happens for N=1 and N=2. Such d-q cross-coupling is explained in terms of mutual leakage inductances, regardless of possible rotor saliencies and magnetic saturation. The implications of these results in terms of equivalent circuit representation will be presented in a companion paper (Part II).
分相机在Park坐标系中的建模。第一部分:理论基础
分相电机是一种特殊的电机,它的定子绕组被分成多组(N)三相。通过N个独立逆变器供电的可能性使其具有吸引力,特别是在需要高功率和可靠性时。到目前为止,最初为三相电机引入的dq0参考帧表示已详细应用于N=2情况下的分相配置。本文从解析的角度研究了定子集的扩展问题。特别是,本文表明,当N超过2时,d轴和q轴定子电压方程不再解耦,一般情况下,与N=1和N=2时不同。这种d-q交叉耦合是根据互漏电感来解释的,而不考虑可能的转子显著性和磁饱和。这些结果在等效电路表示方面的含义将在配套论文(第二部分)中提出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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