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A Generalized Magnetic Circuit Modeling Approach for Design of Surface Permanent-Magnet Machines

机译:用于表面永磁电机设计的通用磁路建模方法

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摘要

This paper proposes a generalized equivalent magnetic circuit model for the design of permanent-magnet (PM) electric machines. Conventional approaches have been applied to PM machine design but may be insufficiently accurate or generalized without taking pole–slot counts into consideration. This would result in reduction of dimensioning accuracy at the initial design stage. Also, magnetic saturation is often ignored or compensated by correction factors in simplified models since it is difficult to determine the flux in individual stator teeth. In this paper, the flux produced by stator winding currents and PMs can be calculated accurately and rapidly using the developed model, taking saturation into account. A new modeling technique for PM poles is proposed so that the magnetic circuit is applicable to any pole–slot combinations. This aids machine dimensioning without the need for computationally expensive finite-element analysis (FEA). A 540-kW PM machine is first designed using the proposed method and then verified with FEA. Another 350-W machine is subsequently designed, manufactured, and validated by both FEA and experiments. The comparisons demonstrate the effectiveness of the proposed model.
机译:本文提出了一种用于永磁电机设计的广义等效磁路模型。常规方法已应用于永磁电机设计,但可能没有足够的准确性或泛化性而未考虑极槽数。这将导致在初始设计阶段降低尺寸标注精度。另外,在简化的模型中,由于很难确定各个定子齿中的磁通量,因此经常会忽略磁饱和或通过校正因子来补偿其磁饱和。在本文中,考虑到饱和度,可以使用开发的模型准确,快速地计算出定子绕组电流和PM产生的磁通。提出了一种用于永磁极的新建模技术,以使磁路可应用于任何极槽组合。这有助于机器尺寸确定,而无需进行计算上昂贵的有限元分析(FEA)。首先使用提出的方法设计一台540千瓦的PM电机,然后通过FEA进行验证。随后通过FEA和实验对另一台350 W机器进行了设计,制造和验证。比较结果表明了该模型的有效性。

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