Abstract:Magnetic gear is a kind of ideal transmission thanks to the advantages of simple structure, no friction, no pollution, less maintenance, and automatic overload protection. The domestic and foreign literatures about magnetic gear are viewed. The development courses of magnetic gear are reviewed in chronological order. The characteristics of gradual progress of magnetic gear are summarized. The operation performance and applicable fields of magnetic gear with different structures are analyzed by horizontal comparison. The key technologies of magnetic gear are expounded. The application prospects of magnetic gear are discussed. The research focus and grown tendency about magnetic gear are pointed.
付兴贺, 王标, 林明耀. 磁力齿轮发展综述[J]. 电工技术学报, 2016, 31(18): 1-12.
Fu Xinghe, Wang Biao, Lin Mingyao. Overview and Recent Developments of Magnetic Gears. Transactions of China Electrotechnical Society, 2016, 31(18): 1-12.
[1] 杜世勤, 章跃进, 江建中. 新型永磁复合电机研究[J]. 微特电机, 2010, 38(4): 1-3. Du Shiqin, Zhang Yuejin, Jiang Jianzhong. Research on a novel combined permanent magnet electrical machine[J]. Small & Special Electrical Machines, 2010, 38(4): 1-3. [2] 王双全. 永磁磁性齿轮的研究现状及发展前景[J]. 科技创新导报, 2012(18): 12. Wang Shuangquan. The research status and deve- lopment prospects of permanent magnetic gear[J]. Science and Technology Consulting Herald, 2012(18): 12. [3] 王虎生, 侯云鹏, 程树康. 无接触永磁齿轮传动机构发展综述[J]. 微电机, 2008, 41(2): 71-73. Wang Husheng, Hou Yunpeng, Cheng Shukang. Development and prospect of non-contact permanent magnetic gear transmission[J]. Micromotors, 2008, 41(2): 71-73. [4] 彭科容, 邢敬娓, 李勇, 等. 一种基于磁导调制原理的新型磁力齿轮的原理与试验研究[J]. 微特电机, 2011, 39(1): 29-31. Peng Kerong, Xing Jingwei, Li Yong, et al. Study on principle and test for a novel structure permanent magnetic[J]. Small & Special Electrical Machines, 2011, 39(1): 29-31. [5] 李勇, 辛义剑, 邢敬娓. 大力矩永磁变速器铁心损耗的理论分析与仿真计算[J]. 理论研究, 2011, 39(1): 1-3. Li Yong, Xin Yijian, Xing Jingwei. Theoretical analysis and simulation of iron loss for large torque permanent magnetic variable transmission[J]. Theoretical Research, 2011, 39(1): 1-3. [6] 李直腾, 杨超君, 郑武, 等. 磁力齿轮传动的发展状况与展望[J]. 微电机, 2011, 44(2): 71-73. Li Zhiteng, Yang Chaojun, Zheng Wu, et al. Development and application of magnetic gear transmission[J]. Micromotors, 2011, 44(2): 71-73. [7] 宁文飞, 包广清, 王金荣. 磁齿轮拓扑分析及其应用综述[J]. 机械传动, 2012, 36(2): 91-96. Ning Wenfei, Bao Guangqing, Wang Jinrong. A review of the topological analysis and application of magnetic gear[J]. Journal of Mechanical Trans- mission, 2012, 36(2): 91-96. [8] 杜世勤. 磁场调制式磁力齿轮及其有限元计算[J]. 上海电机学院学报, 2011, 14(3): 173-177. Du Shiqin. Field modulated magnetic gear and calculation using finite element method[J]. Journal of Shanghai Dianji University, 2011, 14(3): 173-177. [9] 菅志军. 永磁磁力耦合器矩角特性和涡流损耗的研究[J]. 微电机, 2013, 46(8): 34-37. Jian Zhijun. Research on torque-angle characteristic and eddy loss of permanent magnetic coupling[J]. Micromotors, 2013, 46(8): 34-37. [10] Montague R G, Bingham C, Atallah K. Magnetic gear pole-slip prevention using explicit model predictive control[J]. IEEE Transactions on Mechatronics, 2013, 18(5): 1535-1543. [11] 田杰, 邓辉华, 赵韩, 等. 稀土磁力齿轮传动系统动态仿真研究[J]. 中国机械, 2007, 17(22): 2315- 2318. Tian Jie, Deng Huihua, Zhao Han, et al. Dynamic simulation study on the permanent thulium magnetism gear driving system[J]. China Mechanical Engineering, 2007, 17(22): 2315-2318. [12] 杨超君, 李志宝, 芦玉根, 等. 高性能同轴式磁力齿轮结构设计与实验研究[J]. 中国机械工程, 2012, 23(9): 1083-1088. Yang Chaojun, Li Zhibao, Lu Yugen, et al. Design and experiment of a high—performance coaxial magnetic gear[J]. China Mechanical Engineering, 2012, 23(9): 1083-1088. [13] Chau K T, Zhang D, Jiang J Z, et al. Design of a magnetic-geared outer-rotor permanent-magnet brushless motor for electric vehicles[J]. IEEE Transactions on Magnetics, 2007, 43(6): 2504-2506. [14] Jian L, Chau K T, Jiang J Z. An integrated magnetic- geared permanent-magnet in-wheel motor drive for electric vehicles[C]//Vehicle Power and Propulsion Conference, Harbin, 2008: 1-6. [15] Niu S, Chau K T, Jiang J Z. A permanent-magnet double-stator integrated-starter-generator for hybrid electric vehicles[C]//Vehicle Power and Propulsion Conference, Harbin, 2008: 1-6. [16] Fan Y, Chau K T, Niu S. Development of a new brushless doubly fed doubly salient machine for wind power generation[J]. IEEE Transactions on Mag- netics, 2006, 42(10): 3455-3457. [17] Jian L, Chau K T, Jiang J Z. A magnetic-geared outer-rotor permanent-magnet brushless machine for wind power generation[J]. IEEE Transactions on Industry Applications, 2009, 45(3): 954-962. [18] Li J, Chau K T, Jiang J Z, et al. A new efficient permanent-magnet vernier machine for wind power generation[J]. IEEE Transactions on Magnetics, 2010, 46(6): 1475-1478. [19] 刘细平, 易靓, 刁艳美, 等. 磁齿轮传动永磁同步风力发电机分析[J]. 微特电机, 2013, 41(7): 34-37. Liu Xiping, Yi Liang, Diao Yanmei, et al. Analysis of a magnetic-geared transmission permanent-magnet synchronous wind generator[J]. Small & Special Electrical Machines, 2013, 41(7): 34-37. [20] Jian L, Xu G, Gong Y, et al. Electromagnetic design and analysis of a novel magnetic-gear-integrated wind power generator using time-stepping finite element method[J]. Progress in Electromagnetics Research, 2011, 113(1): 351-367. [21] Shah L, Cruden A, Williams B W. A magnetic gear box for application with a contra-rotating tidal turbine[C]//International Conference on Power Electronics and Drive Systems, Bangkok, 2007: 989- 993. [22] 孔繁镍, 李啸骢, 吴杰康, 等. 具有多性能指标的水轮机调速器非线性设计[J]. 电工技术学报, 2014, 29(4): 229-236. Kong Fannie, Li Xiaocong, Wu Jiekang, et al. Multi-index nonlinear controller design for hydro turbine speed governor[J]. Transactions of China Electrotechnical Society, 2014, 29(4): 229-236. [23] Frank N W, Toliyat H A. Gearing ratios of a magnetic gear for marine applications[C]//Electric Ship Technologies Symposium, Baltimore, MD, 2009: 477-481. [24] 林佳. 磁场调制型磁性齿轮的研究[D]. 哈尔滨: 哈尔滨工业大学, 2012. [25] 杜世勤, 江建中, 章跃进, 等. 一种磁性齿轮传动装置[J]. 电工技术学报, 2010, 25(9): 41-46. Du Shiqin, Jiang Jianzhong, Zhang Yuejin, et al. A magnetic gearing[J]. Transactions of China Electro- technical Society, 2010, 25(9): 41-46. [26] 赵程. 轴向盘式结构大力矩永磁变速器研究[D]. 哈尔滨: 哈尔滨工业大学, 2012. [27] Tsurumoto K, Kikuchi S. A new magnetic gear using permanent magnet[J]. IEEE Transactions on Mag- netics, 1987, 23(5): 3622-3624. [28] Ikuta K, Makita S, Arimoto S. Non-contact magnetic gear for micro transmission mechanism[C]//IEEE Proceedings on Micro Electro Mechanical Systems, Nara, 1991: 125-130. [29] 赵韩, 陶骏. 磁场积分法在稀土永磁齿轮传动机构场分析中的应用[J]. 机械工程学报, 2000, 36(8): 29-32. Zhao Han, Tao Jun. Application of magnetic field integral method in field analysis of rare earth permanent magnetic gear transmission mechanism[J]. Chinese Journal of Mechanical Engineering, 2000, 36(8): 29-32. [30] 张建涛. 永磁齿轮特性仿真及其在人工心脏中的应用研究[D]. 北京: 中国科学院研究生院, 2005. [31] 夏东. 永磁齿轮的阻尼系统及其在人工心脏无接触驱动装置中的应用[J]. 电工技术学报, 2013, 28(2): 91-96. Xia Dong. Permanent magnet gear damping system and its application in the non-contact driving device for artificial heart[J]. Transactions of China Electro- technical Society, 2013, 28(2): 91-96. [32] Atallah K, Howe D. A novel high-performance magnetic gear[J]. IEEE Transactions on Magnetics, 2001, 37(4): 2844-2846. [33] Atallah K, Wang J, Howe D. A high-performance linear magnetic gear[J]. Journal of Applied Physics, 2005, 97(10): 10N516. [34] Rasmussen P O, Andersen T O, Jorgensen F T, et al. Development of a high-performance magnetic gear[J]. IEEE Transactions on Industry Applications, 2005, 41(3): 764-770. [35] Mezani S, Atallah K, Howe D. A high-performance axial-field magnetic gear[J]. Journal of Applied Physics, 2006, 99(8): 08R303. [36] Jian L, Chau K T. A coaxial magnetic gear with halbach permanent-magnet arrays[J]. IEEE Trans- actions on Energy Conversion, 2010, 25(2): 319- 328. [37] 李祥林, 程明, 邹国棠, 等. 聚磁式场调制永磁风力发电机工作原理与静态特性[J]. 电工技术学报, 2014, 29(11): 1-9. Li Xianglin, Cheng Ming, Zou Guotang, K T, et al. Principle and analysis of a new flux-concentrating field modulated permanent-magnet wind power generator[J]. Transactions of China Electrotechnical Society, 2014, 29(11): 1-9. [38] 包广清, 刘新华, 毛开富. 基于磁场调制式磁齿轮传动的永磁同步风力发电系统[J]. 农业机械学报, 2011, 42(5): 116-120. Bao Guangqing, Liu Xinhua, Mao Kaifu. Characte- ristics of field modulated magnetic gear in wind turbine system[J]. Transactions of the Chinese Society of Agricultural Machinery, 2011, 42(5): 116-120. [39] 王双全. 磁阻-永磁磁性齿轮的研究[D]. 沈阳: 东北大学, 2010. [40] 满永奎, 赵玉双, 马彧妍, 等. 具有外转子型磁阻式磁力齿轮: 中国, CN10229610A[P]. 2011.12.28. [41] Chen M, Chau K, Li W, et al. Design and analysis of a new magnetic gear with multiple gear ratios[J]. IEEE Transactions on Applied Superconductivity, 2014, 24(24): 1-4. [42] 刘新华. 新型磁场调制式磁性齿轮的设计研究[D]. 上海: 上海大学, 2008. [43] Fukuoka M, Nakamura K, Ichinokura O. Loss analysis and performance improvement of trial SPM type magnetic gear[C]//15th IEEE European Con- ference on Power Electronics and Applications (EPE), Lille, 2013: 1-8. [44] Yong L, Jingwei X, Kerong P, et al. Principle and simulation analysis of a novel structure magnetic gear[C]//International Conference on Electrical Machines and Systems, Wuhan, 2008: 3845-3849. [45] Bomela W, Bird J Z, Acharya V M. The performance of a transverse flux magnetic gear[J]. IEEE Transa- ctions on Magnetics, 2014, 50(50): 1-4. [46] Li X, Chau K T, Cheng M, et al. An improved coaxial magnetic gear using flux focusing[C]//2011 Inter- national Conference on Electrical Machines and Systems (ICEMS), Beijing, 2011: 1-4. [47] 程明, 李祥林, 邹国棠, 等. 外转子聚磁式磁齿轮:中国, CN 102312986 A[P]. 2011. 08. 18. [48] Uppalapati K K, Bird J Z, Jia D, et al. Performance of a magnetic gear using ferrite magnets for low speed ocean power generation[C]//Energy Conversion Congress and Exposition (ECCE), Raleigh, NC, 2012: 3348-3355. [49] 朱雪松, 郝伟娜, 高竹发. Halbach阵列型摆线永磁齿轮传动转矩的有限元分析[J]. 轻工机械, 2013, 31(2): 24-28. Zhu Xuesong, Hao Weina, Gao Zhufa. Finite-element analysis of transmission torque of cycloid permanent magnetic gear based on halbach array[J]. Light Industry Machinery, 2013, 31(2): 24-28. [50] Jorgensen F T, Andersen T O, Rasmussen P O. The cycloid permanent magnetic gear[J]. IEEE Transa- ctions on Industry Applications, 2008, 44(6): 1659- 1665. [51] Davey K, McDonald L, Hutson T. Axial flux cycloidal magnetic gears[J]. IEEE Transactions on Magnetics, 2014, 50(4): 1-7. [52] Rens J, Atallah K, Calverley S D, et al. A novel magnetic harmonic gear[J]. IEEE Transactions on Industry Applications, 2010, 46(1): 206-212. [53] Jian L, Xu G, Mi C C, et al. Analytical method for magnetic field calculation in a low-speed permanent- magnet harmonic machine[J]. IEEE Transactions on Energy Conversion, 2011, 26(3): 862-870. [54] Kikuchi S, Tsurumoto K. Design and characteristics of a new magnetic worm gear using permanent magnet[J]. IEEE Transactions on Magnetics, 1993, 29(6): 2923-2925. [55] 王利利. 磁场调制型永磁齿轮与低速电机的研究[D]. 杭州: 浙江大学, 2012. [56] 付兴贺, 李红艳, 林明耀. 一种直线运动和旋转运动转换器: 中国, CN 103475185 A[P]. 2013. 12. 25. [57] Huang C C, Tsai M C, Dorrell D G, et al. Deve- lopment of a magnetic planetary gearbox[J]. IEEE Transactions on Magnetics, 2008, 44(3): 403-412. [58] Nakamura K, Fukuoka M, Ichinokura O. Performance improvement of magnetic gear and efficiency comparison with conventional mechanical gear[J]. Journal of Applied Physics, 2014, 115(17): 17A314. [59] Fukuoka M, Nakamura K, Ichinokura O. Dynamic analysis of planetary-type magnetic gear based on reluctance network analysis[J]. IEEE Transactions on Magnetics, 2011, 47(10): 2414-2417. [60] 林鹤云, 阳辉, 黄允凯, 等. 记忆电机的研究综述及最新进展[J]. 中国电机工程学报, 2013, 33(33): 57-67. Lin Heyun, Yang Hui, Huang Yunkai, et al. Overview and recent developments of memory machines[J]. Proceedings of the CSEE, 2013, 33(33): 57-67. [61] 杨超君, 李直腾, 李志宝, 等. 高性能磁力齿轮传动扭矩与效率的数值计算[J]. 中国电机工程学报, 2011, 31(32): 107-114. Yang Chaojun, Li Zhiteng, Li Zhibao, et al. Numerical calculation of driven torque and efficiency of a high-performance magnetic gear[J]. Proceedings of the CSEE, 2011, 31(32): 107-114. [62] 刘继超, 曹家勇, 刘洋. 永磁齿轮传动特性影响因素分析[J]. 机械传动, 2012, 36(4): 9-13. Liu Jichao, Cao Jiayong, Liu Yang. Analysis on the transmission characteristics of permanent magnetic gears[J]. Journal of Mechanical Transmission, 2012, 36(4): 9-13. [63] 葛研军, 辛强, 聂重阳. 磁场调制式永磁齿轮结构参数与转矩关系[J]. 机械传动, 2012, 36(4): 5-8, 13. Ge Yanjun, Xin Qiang, Nie Chongyang. Research on the relationship of the field modulated permanent magnetic gear structural parameters and its torque[J]. Journal of Mechanical Transmission, 2012, 36(4): 5-8, 13. [64] Chen M, Chau K T, Li W, et al. Cost-effectiveness comparison of coaxial magnetic gears with different magnet materials[J]. IEEE Transactions on Magnetics, 2014, 50(2): 821-824. [65] 曹坚, 张国贤. 少齿差永磁齿轮系的研究与设计[J].机械设计与制造, 2010(9): 28-30. Cao Jian, Zhang Guoxian. Research and design of permanent magnetic gear with few teeth difference[J]. Machinery Design & Manufacture, 2010(9): 28-30. [66] 李宾, 崔立春, 秦昌永. 异步永磁耦合器轴偏心传动特性[J]. 山东理工大学学报: 自然科学版, 2013, 27(1): 71-74. Li Bin, Cui Lichun, Qin Changyong. Driving characteristics of permanent magnet synchronous coupler on eccentric shaft[J]. Journal of Shandong University of Technology: Natural Science Edition, 2013, 27(1): 71-74. [67] 王云冲. 轴向磁通磁场调制式永磁电机的研究[D].杭州: 浙江大学, 2013. [68] 罗文, 金孟加, 沈建新. 磁场调制型多功率端口电机及其建模分析[J]. 微特电机, 2014, 42(5): 45-47. Luo Wen, Jin Mengjia, Shen Jianxin. Modeling and analysis of a field-modulated multi-power-terminal machine[J]. Small & Special Electrical Machines, 2014, 42(5): 45-47. [69] Atallah K, Calverley S D, Howe D. Design, analysis and realisation of a high performance magnetic gear[J]. IEEE Proceedings on Electric Power App- lications, 2004, 151(2): 135-143.