AIP Advances (May 2017)

A single-phase axially-magnetized permanent-magnet oscillating machine for miniature aerospace power sources

  • Yi Sui,
  • Ping Zheng,
  • Luming Cheng,
  • Weinan Wang,
  • Jiaqi Liu

DOI
https://doi.org/10.1063/1.4977015
Journal volume & issue
Vol. 7, no. 5
pp. 056659 – 056659-6

Abstract

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A single-phase axially-magnetized permanent-magnet (PM) oscillating machine which can be integrated with a free-piston Stirling engine to generate electric power, is investigated for miniature aerospace power sources. Machine structure, operating principle and detent force characteristic are elaborately studied. With the sinusoidal speed characteristic of the mover considered, the proposed machine is designed by 2D finite-element analysis (FEA), and some main structural parameters such as air gap diameter, dimensions of PMs, pole pitches of both stator and mover, and the pole-pitch combinations, etc., are optimized to improve both the power density and force capability. Compared with the three-phase PM linear machines, the proposed single-phase machine features less PM use, simple control and low controller cost. The power density of the proposed machine is higher than that of the three-phase radially-magnetized PM linear machine, but lower than the three-phase axially-magnetized PM linear machine.