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高温超导船舶推进电机的仿真设计 被引量:1

Simulation and design of high temperature superconducting ship propulsion motor
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摘要 高温超导技术不断发展,高温超导电机被逐渐应用于船舶的推进系统中,具有广阔的应用前景。与传统的船舶超导推进电机相比,不采用电刷、中空轴、集电环等装置,具有结构简单、可靠性高和制造成本低等优势。本文研究高温超导船舶推进电机的工作原理及电磁特性,在此基础上,提出高温超导船舶推进电机的仿真模型。 With the continuous development of high temperature superconducting technology, high temperature superconducting motor is gradually applied in the propulsion system of ships, and has broad application prospects. Compared with traditional ship superconducting propulsion motor, no brush, hollow shaft and electric current collector are used, which has the advantages of simple structure, high reliability and low manufacturing cost. This paper studied the working principle and electromagnetic characteristics of high temperature superconducting ship propulsion motor, and presented the simulation model of high temperature superconducting ship propulsion motor.
作者 樊明龙
出处 《舰船科学技术》 北大核心 2017年第2X期16-18,共3页 Ship Science and Technology
基金 中央财政支持的职业教育实训基地"自动化综合控制实训基地"建设项目(苏教财[2012]177号)
关键词 高温超导 电机 电感特性 high temperature superconductor electric machinery inductance characteristic
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  • 1Yoshida K, Matsumoto H. Propulsion and guidance simulation of HTS bulk linear synchronous motor taking into account E-J characteristic[J]. Physiea C: Superconductivity, 2003(392-396): 690-695.
  • 2StumbergerG, AydemirMT, ZarkoD, etal. Designofalinearbulk superconductor magnet synchronous motor for electromagnetic aireraft launch systems[J]. IEEE Trans. onApplied Superconductivity, 2004, 14(1): 54-62.
  • 3Yoshida K, Matsumoto H. Design and simulation of HTS bulk linear synchronous motor[J]. Physica C:Superconductivity, 2002(378-381 )." 833-837.
  • 4Guo Youguang, Jin Jianxun, Zhu Jianguo, et al. Design and analysis of a prototype linear motor driving system for hts maglev transportation[J]. IEEETrans. on Applied Supcrconductivity, 2007, 17(2): 2087-2090.
  • 5SugimotoH, TsudaT, MorishitaT, etal. Development ofanaxial flux type pm synchronous motor with the liquid nitrogen cooled HTS Armature windings[J]. IEEE Trans. on Applied Superconductivity,2007, 17(2): 1637-1640.
  • 6Song M K, Lee S J, Yoon Y S, et al. The characteristic analysis of the flux damper located in HTS synchronous motor through 3-dimensional magnetic field analysis using F.E.M.[J]. Physica C: Superconductivity, 2000, 341-348: 2601-2602.
  • 7Sugimoto H, Tsuda T, Morishita T, et al. Design of an axial flux inductor type synchronous motor with the liquid nitrogen cooled field and armature HTS windings[J] . IEEE Trans. on Applied Superconductivity, 2007, 17(2): 660-663.
  • 8Xu J P, Iino S, Ishiyama A. Design and characteristics analysis of superconducting tubular linear induction motors[J]. IEEE Trans. on Applied Superconductivity, 1997, 7(2): 1571-1574.
  • 9Kim W S, Jung S Y, Choi H Y, et al. Development of a superconducting linear synchronous motor[J]. IEEE Trans. on Applied Superconductivity, 2002, 12(1): 842-845.
  • 10Zheng Luhai, Jin Jianxun. Investigation of HTS bulk magnet linear synchronous motors[C]//Intemational Conference on Applied Superconductivity and Electromagnetic Devices, Chengdu: University of Electronic Science and Technology of China, 1999: 17-21.

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