Electromagnetic and thermal analysis and design of a novel-structured surface-mounted permanent magnet motor with high-power-density

  • Lee, J.-G.
  • Yeo, H.-K.
  • Jung, H.-K.
  • Kim, T.-K.
  • Ro, J.-S.
Citations

WEB OF SCIENCE

27
Citations

SCOPUS

30

초록

A segmented-core (SC) structure has been widely used for high-power-density (HP) motors. However, the SC motor is associated with a number of problems due to the complexity of both the structure and the manufacturing process. To address these issues, a novel structure of a HP motor is proposed, referred to as the ring-coupled segmented-stator (RSS) model here. The proposed RSS can increase the reliability, the stability, and the manufacturability of motor. Furthermore, useful thermal analysis and design flow which take into account the RSS and asymmetric overhang structure of the motor are proposed in this research. The proposed lumped parameter thermal network (LPTN) for the thermal analysis shows a good agreement with experimental data within 9.8% difference. The proposed analysis and design method can be used for the diverse kinds of motor requiring the HP. The usefulness of the proposed RSS motor, the analysis method, and the design method are verified through the experiment in this research. © The Institution of Engineering and Technology 2019.

키워드

permanent magnet motorslumped parameter networksthermal analysisstatorssegmented-core structurehigh-power-density motorsSC motormanufacturing processHP motorring-coupled segmented-stator modeldesign flowasymmetric overhang structurelumped parameter thermal networkdesign methodRSS motorthermal analysiselectromagnetic analysisstructured surface-mounted permanent magnet motormotor manufacturabilityLPTNElectric motorsPermanent magnetsThermoanalysisHigh power densityLumped parameterManufacturabilityManufacturing processNovel structuresOverhang structureSegmented statorsStructured surfacesDesign
제목
Electromagnetic and thermal analysis and design of a novel-structured surface-mounted permanent magnet motor with high-power-density
저자
Lee, J.-G.Yeo, H.-K.Jung, H.-K.Kim, T.-K.Ro, J.-S.
DOI
10.1049/iet-epa.2018.5322
발행일
2019-04
유형
Article
저널명
IET Electric Power Applications
13
4
페이지
472 ~ 478

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