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A New Perspective on the Operating Principle of Direct Current Machine Based on Airgap Field Modulation Theory

机译:基于气隙场调制理论的直流电机工作原理的新观点

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In this paper, the operating principle and electromagnetic performances of the direct current machine (DCM) are reiterated from a new perspective, viz., the airgap field modulation perspective. The equivalent airgap model containing three cascaded elements is applied, based on the general airgap field modulation theory (GAFMT), to expound the operating principle and common features of the four most conventional topologies in a unified way. The general analysis of DCM can be achieved existing in the only difference of modulation behavior, that is modulator like that in induction machine (IM) and synchronous machine (SM), whose results are consistent with the classical theory on electrical machines. Theoretical expressions for electromagnetic parameters are developed and fairly compared between different topologies to verify the validity of the proposed analytical model. In addition, torque density comparison under different constraints are revealed and iron saturation has been treated as a constant discount on the airgap magnetomotive force (MMF) due to the synchronous modulation mechanism. The theoretical predictions are demonstrated by 2D finite element analysis (FEA) and achieve good agreement.
机译:本文从一个新的角度,即气隙场调制角度,重申了直流电机(DCM)的工作原理和电磁性能。基于通用气隙场调制理论(GAFMT),应用包含三个级联元素的等效气隙模型,以统一的方式阐述四种最常规拓扑的工作原理和共同特征。 DCM的一般分析可以在唯一的调制行为差异中实现,即像感应电机(IM)和同步电机(SM)那样的调制器,其结果与经典的电机理论相一致。开发了电磁参数的理论表达式,并在不同拓扑之间进行了合理比较,以验证所提出的分析模型的有效性。此外,揭示了在不同约束条件下的转矩密度比较,并且由于同步调制机制,铁饱和已被视为对气隙磁通势(MMF)的恒定折让。通过2D有限元分析(FEA)证明了理论预测,并取得了良好的一致性。

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