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Study of Direct Coupling in Stator Dual Windings of a Brushless Doubly Fed Machine

机译:无刷双馈电机定子双绕组直接耦合的研究

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摘要

A brushless doubly fed machine (BDFM) usually contains two sets of independent three-phase symmetrical stator windings. Judgment of the direct electromagnetic coupling phenomenon between the two sets of stator windings is one of the most important prerequisites when safeguarding the excellent operation and control performances of the BDFM. However, because of the diversity among the stator winding structures, the generation mechanism and the existing criterion of direct coupling between the two sets of stator windings have not been fully revealed yet. This paper analyzes the mutually induced electromotive force (EMF) in the coils per pole per phase of a single stator winding that is induced by the rotating magnetic field of the other stator winding. Detailed studies of the effects of the winding structures on the mutually induced EMF and the circulating current are performed and the results are verified by finite element analysis and experimental studies of an existing BDFM prototype. The results show that the direct coupling between the two sets of stator windings is related to the combination of poles number, the number of parallel branches, the winding type, and the winding connection.
机译:无刷双馈电机(BDFM)通常包含两组独立的三相对称定子绕组。在确保BDFM出色的运行和控制性能时,判断两组定子绕组之间的直接电磁耦合现象是最重要的先决条件之一。然而,由于定子绕组结构之间的差异,尚未充分揭示两组定子绕组之间的直接耦合的产生机理和现有标准。本文分析了一个定子绕组中每个相每极每相的线圈中的互感电动势(EMF),该互感电动势是由另一个定子绕组的旋转磁场引起的。进行了绕组结构对互感电动势和环流影响的详细研究,并通过有限元分析和现有BDFM原型的实验研究验证了结果。结果表明,两组定子绕组之间的直接耦合与极数,并联分支数,绕组类型和绕组连接的组合有关。

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