Design of WFSM Using Sizing Method Combining 2-D Equivalent Magnetic Circuit Considering Nonlinear Characteristics

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초록

This paper proposes a novel sizing method of wound field synchronous motor (WFSM) using a 2D equivalent magnetic circuit (EMC) considering nonlinear characteristics. The conventional sizing method is an analytical method predicting motor performance using a proportional formula based on size-related variables of the motor, which are shape ratio (SR), torque per rotor volume (TRV), and torque density (TD). However, accurate results cannot be obtained only from the proportional formula because the performance of the motor varies greatly depending on the magnetic saturation of the core. In particular, since the WFSM does not use a permanent magnet (PM) for the field, it is important to reflect the magnetic saturation of the field core. Therefore, in this paper, a novel sizing method of WFSM based on the 2D EMC, which is a numerical method used to fast and accurately calculate the performance of the motor considering the magnetic saturation of the core, is proposed. Using the proposed design method, it is possible to not only accurately predict the motor characteristics according to the size but also determine the motor size that satisfies the requirement performances. The validity of the proposed sizing process is verified through simulations and experiments. © 2025 Elsevier B.V., All rights reserved.

키워드

2-dimensional equivalent magnetic circuit (2D EMC)shape ratio (SR)sizing methodtorque density (TD)torque per rotor volume (TRV)wound field synchronous motor (WFSM)
제목
Design of WFSM Using Sizing Method Combining 2-D Equivalent Magnetic Circuit Considering Nonlinear Characteristics
저자
Cha, Kyoung-SooPark, Soo-HwanJung, Young-Hoon
DOI
10.1109/TMAG.2025.3624623
발행일
2026-07
유형
Article
저널명
IEEE Transactions on Magnetics
62
7