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分块开关磁阻电机的研究现状及其新结构构想

, PP. 20-28

Keywords: 开关磁阻电机,分块定子,分块转子,结构,磁路

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Abstract:

分块开关磁阻电机通过分块的定子或转子结构,可获得较短的磁路以减小铁心损耗,圆柱形的转子可缩减风(油)阻,结构和电磁的隔离能增强电机可靠性及容错性。本文对现有的各型分块开关磁阻电机的结构和磁路进行了解析,在此基础上,提出了双极性励磁分块转子开关磁阻电机、环状绕组分块转子开关磁阻电机、C形分块定子开关磁阻电机、E形分块定子开关磁阻电机和混合气隙分块定子开关磁阻电机五种新型结构的分块开关磁阻电机,结合结构示意图和磁路图对其基本工作原理分别进行了阐述,并根据其结构特点和电磁特性分析了其优劣性及可能的应用场合,以期为分块开关磁阻电机的进一步研究与应用提供参考。

References

[1]  Powell D J, Jewell G W, Howe D, et al. Rotor topologies for a switched-reluctance machine for the & #x0201c; more-electric& #x0201d; aircraft engine [J]. IEE Proceedings on Electric Power Applications, 2003, 150(3): 311-318.
[2]  Powell D J, Jewell G W, Calverley S D, et al. Iron loss in a modular rotor switched reluctance machine for the & #x0201c; more-electric& #x0201d; aero-engine[J]. IEEE Transactions on Magnetics, 2005, 41(10): 3934-3936.
[3]  Shang Hsun M, Mi Ching T. A novel switched reluctance motor with C-core stators[J]. IEEE Transactions on Magnetics, 2005, 41(12): 4413-4420.
[4]  Edrington C S, Krishnamurthy M, Fahimi B. Bipolar switched reluctance machines: a novel solution for automotive applications[J]. IEEE Transactions on Vehicular Technology, 2005, 54(3): 795-808.
[5]  Yang H Y, Kim J G, Lim Y C, et al. Position detection and drive of a toroidal switched reluctance motor (TSRM) using search coils[J]. IEE Proceedings on Electric Power Applications, 2004, 151(4): 377-384.
[6]  Elbuluk M E, Kankam M D. Potential starter/ generator technologies for future aerospace appli- cation[J]. IEEE Aerospace and Electronic Systems Magazine, 1996, 11(10): 17-24.
[7]  Cloyd J S. Status of the United States air force& #x02019; s more electric aircraft initiative[J]. IEEE Aerospace and Electronics Systems Magazine, 1998, 13(4): 17-22.
[8]  Hamdy R, Fletcher, J E, Williams B W, et al. High-speed performance improvements of a two-phase switched reluctance machine utilizing rotor-conducting screens[J]. IEEE Transactions on Energy Conversion, 2002, 17(4): 500-506.
[9]  刘闯, 曹志亮, 孙建. 圆柱凸极复合型的转子结构:中国, ZL200610039202.2[P]. 2006.
[10]  James R, Hendershot H O. Polyphase switched reluctance motor: United States, 5111095[P]. 1992- 5-5.
[11]  Mecrow B C, Finch J W, Kharashi E A, et al. Switched reluctance motors with segmental rotors[J]. IEE Proceeding of Electric Power Application, 2002, 149(4): 245-254.
[12]  Oyama J, Higuchi T, Abe T, et al. The fundamental characteristics of novel switched reluctance motor with segment core embedded in aluminum rotor block[C]. Proceedings of the Eighth International Conference on Electrical Machines and Systems, Nanjing, China, 2005:515-519.
[13]  Oyama J, Higuchi T, Abe T, et al. Novel switched reluctance motor with segment core embedded in aluminum rotor block[J]. Transactions of the Institute of Electrical Engineers of Japan, 2006, 126(4): 385-390.
[14]  Vattikuti N, Rallabandi V, Fernandes B G. A novel high torque and low weight segmented switched reluctance motor[C]. IEEE Power Electronics Specialists Conference, Piscataway, NJ, USA, 2008: 1223-1228.
[15]  Cheewoo L, Krishnan R, Lobo N S. Novel two-phase switched reluctance machine using common-pole E-core structure: concept, analysis, and experimental verification[J]. IEEE Transactions on Industry Applications, 2007, 45(2): 703-711.
[16]  Lobo N S, Swint E, Krishnan R. M-phase N-segment flux-reversal-free stator switched reluctance machines[C]. IEEE Industry Applications Society Annual Meeting, Edmonton, Alta., Canada, 2008.
[17]  Holtzapple M T, Rabroker G A, Fahimi B, et al. High-torque switched reluctance motor: United States, 20060279155[P]. 2006-12-14.
[18]  Ji Young L, Byoung Kuk L, Tao S, et al. Dynamic analysis of toroidal winding switched reluctance motor driven by 6-switch converter[J]. IEEE Transactions on Magnetics, 2006, 42(2): 1275-1278.
[19]  Rahman K M, Fahimi B, Suresh G, et al. Advantages of switched reluctance motor applications to EV and HEV: design and control issues[J]. IEEE Transactions on Industry Applications, 2000, 36(1): 111-121.
[20]  Rahman K M, Schulz S E. Design of high-efficiency and high-torque-density switched reluctance motor for vehicle propulsion[J]. IEEE Transactions on Industry Applications, 2002, 38(6): 1500-1507.
[21]  Morel L, Fayard H, Vives F R, et al. Study of ultra high speed switched reluctance motor drive[C]. Preceedings of IEEE Industry Applicatios Conference, Rome, Italy, 2000: 87-92.
[22]  周强. 高速开关磁阻电机的关键技术研究和实 践[D]. 南京: 南京航空航天大学, 2009.
[23]  Michaelides A M, Pollock C. A new magnetic flux pattern to improve the efficiency of the switched reluctance motor[C]. Conference Record of the IEEE Industry Applications Society Annual Meeting, Houston, TX, USA, 1992: 226-233.
[24]  Mecrow B C, Kharashi E A, Finch J W, et al. Preliminary performance evaluation of switched reluctance motors with segmental rotors[J]. IEEE Transactions on Energy Conversion, 2004, 19(4): 679-686.
[25]  Mecrow B C, Finch J W, Kharashi E A, et al. The design of switched reluctance motors with segmental rotors[C]. 15th International Conference on Electrical Machines, Brugges, Belgium, 2002.
[26]  Mecrow B C. Fully pitched winding switched reluctance and stepping motor arrangements [J]. IEE Proceedings on Electric Power Applications, 1993, 140(1): 61-70.
[27]  Mecrow B C, Kharashi E A, Finch J W, et al. Segmental rotor switched reluctance motors with single-tooth windings[J]. IEE Proceedings on Electric Power Applications, 2003, 150(5): 591-599.
[28]  Hall R, Jack A G, Mecrow B C, et al. Design and initial testing of an outer rotating segmented rotor switched reluctance machine for an aero-engine shaft-line-embedded starter/generator[C]. International Electric Machines and Drives Conference, San Antonio, TX, USA , 2005: 1870-1877.

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