High-Power Dense Electric Propulsion Motor

被引:25
|
作者
Karmaker, Haran [1 ]
Sarandria, Dean [1 ]
Ho, Man Tak [1 ]
Feng, James [1 ]
Kulkarni, Devdatta [1 ]
Rupertus, Gabriel [1 ]
机构
[1] TECO Westinghouse, Res & Dev, Round Rock, TX 78681 USA
关键词
High-power dense motor; high-temperature superconducting (HTS) motor; permanent-magnet (PM) motor; propulsion motor; squirrel cage induction motor (SCIM);
D O I
10.1109/TIA.2014.2352257
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This paper describes the results of design and analysis studies performed by the authors for the comparison of predicted performance of an electric propulsion motor using conventional and emerging technologies. Specifically, a modern squirrel-cage-induction-motor design is compared to both a permanent-magnet motor with high energy magnets and a high-temperature superconducting (HTS) motor using a second generation (2G) superconductor. The selected baseline design is a ship propulsion motor in operation rated at 5000 hp and 1800 r/min. The results of the calculated performance and comparative studies among the various technologies show great potential for increasing the power density using the 2G HTS technology. Using the currently available 2G superconductor current capabilities, the achieved power density of the propulsion motor is twice that of the induction motor. Further investigations are being carried out to improve the superconductor performance for future designs for an ongoing project sponsored by the United States Department of Energy to reduce the cost of the superconductor for future commercial applications of the HTS technology.
引用
收藏
页码:1341 / 1347
页数:7
相关论文
共 50 条
  • [21] INVESTIGATION OF THERMAL STATE IN HIGH-POWER DISK ELECTRIC MOTOR.
    Yakovenko, V.A.
    Prokopov, V.E.
    Feigel'man, I.I.
    Chernyavskaya, M.V.
    Zautner, F.L.
    Soviet Electrical Engineering (English Translation of Elektrotekhnika), 1977, 48 (03): : 110 - 113
  • [22] Development of High-Power and High-Efficiency Motor for a Newly Developed Electric Vehicle
    Oki, Shunji
    Ishikawa, Shigeaki
    Ikemi, Takeshi
    SAE INTERNATIONAL JOURNAL OF ALTERNATIVE POWERTRAINS, 2012, 1 (01) : 104 - 111
  • [23] Design of a High Power density Halbach BLDC Motor for Electric Vehicle Propulsion.
    Bommadevara, V. R.
    2018 IEEE INTERNATIONAL MAGNETIC CONFERENCE (INTERMAG), 2018,
  • [24] Feasibility Assessment of Rapid Earth-Mars Transfers Using High-Power Electric Propulsion
    Berend, Nicolas
    Moreno, Elisa Cliquet
    Ruault, Jean-Marc
    Epenoy, Richard
    JOURNAL OF SPACECRAFT AND ROCKETS, 2014, 51 (03) : 946 - 957
  • [25] A high power electric propulsion test facility
    Andrenucci, M
    Biagioni, L
    Marcuccio, S
    THIRD INTERNATIONAL CONFERENCE ON SPACECRAFT PROPULSION, 2000, 465 : 799 - 805
  • [26] Choosing high-power laser in laser propulsion technology
    Hu, Shao-Liu
    Jiang, Chao
    Li, Bo
    Long, Hua
    Wang, You-Qing
    Cheng, Zu-Hai
    Qiangjiguang Yu Lizishu/High Power Laser and Particle Beams, 2004, 16 (07): : 853 - 856
  • [27] High power electric propulsion system for NEP: Propulsion and trajectory options
    Koppel, CR
    Duchemin, O
    Valentian, D
    SPACE TECHNOLOGY AND APPLICATIONS INTERNATIONAL FORUM - STAIF 2006, 2006, 813 : 484 - +
  • [28] EVALUATION OF A HIGH-POWER DENSITY ZINC CHROMIC ACID PRIMARY BATTERY SYSTEM FOR UNDERWATER ELECTRIC PROPULSION
    BERCHIELLI, AS
    CHIREAU, RF
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1976, 123 (08) : C243 - C243
  • [29] HIGH-POWER MODULES FOR ELECTRIC VEHICLES
    NEIDIG, A
    BROWN BOVERI REVIEW, 1987, 74 (12): : 701 - 705
  • [30] Nanofluids as Coolants to Improve the Thermal Management System of a High-Power Aircraft Electric Motor
    Di Lorenzo, Giuseppe
    Romano, Diego Giuseppe
    Carozza, Antonio
    Pagano, Antonio
    ELECTRONICS, 2025, 14 (05):