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A General Design Method for Electric Machines Using Magnetic Circuit Model Considering the Flux Saturation Problem

机译:考虑磁通饱和问题的磁路模型的电机一般设计方法

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This paper proposes an analytical approach that is generalized for the design of various types of electric machines based on a physical magnetic circuit model. Conventional approaches have been used to predict the behavior of electric machines but have limitations in accurate flux saturation analysis and hence machine dimensioning at the initial design stage. In particular, magnetic saturation is generally ignored or compensated by correction factors in simplified models since it is difficult to determine the flux in each stator tooth for machines with any slot-pole combinations. In this paper, the flux produced by stator winding currents can be calculated accurately and rapidly for each stator tooth using the developed model, taking saturation into account. This aids machine dimensioning without the need for a computationally expensive finite element analysis (FEA). A 48-slot machine operated in induction and doubly-fed modes is used to demonstrate the proposed model. FEA is employed for verification.
机译:本文提出了一种基于物理磁路模型的各种类型的电机设计的分析方法。常规方法已被用于预测电机的行为,但是在初始设计阶段的精确焊剂饱和度分析中具有限制。特别地,通常通过简化模型中的校正因子忽略或补偿磁饱和度,因为难以确定具有任何槽杆组合的机器的每个定子齿中的通量。在本文中,可以使用开发模型准确且快速地计算由定子绕组电流产生的通量,以概念考虑饱和度。这辅助机器尺寸,无需计算昂贵的有限元分析(FEA)。在感应和双馈模式下操作的48插槽机用于展示所提出的模型。 FEA用于验证。

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