Analysis of Proximity Loss of Electrical Machines Using Mesh-Based Magnetic Equivalent Circuit

Yixiang Yuan, Mostafa Ahmadi Darmani,Yuli Bao,Xiaochen Zhang,David Gerada,He Zhang

IEEE Transactions on Transportation Electrification(2024)

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Abstract
In high power density machines, proximity loss presents an unavoidable obstacle due to its significant impact on thermal dissipation and insulation aging. To address the need for rapid and accurate proximity loss prediction, this study presents a novel methodology that employs a mesh-based magnetic equivalent circuit (MEC) for calculating proximity loss in electrical machines. Using an existing machine as an example, the proposed approach is applied to various scenarios, yielding results that demonstrate close agreement with both finite element analysis (FEA) and experimental results, validating its effectiveness. Notably, the technique exhibits high flexibility and can be extended to accommodate slots of various shapes. This innovative approach, which involves flux leakage calculation, represents a previously unexplored avenue and could potentially serve as a fundamental basis for expeditious AC loss calculations.
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Key words
PM machines,high-speed machines,copper losses,AC losses,eddy current,proximity effects,flux leakage,Magnetic Equivalent Circuit (MEC),mesh-based MEC
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