|
|
A Multiple Rotor Poles Doubly Salient Electromagnetic Generator for Direct Driven Wind Turbine |
Zhu Deming1, 2, Zhou Nan1, Zhang Zhuoran1, Chen Zhihui1, Yan Yangguang1 |
1. Nanjing University of Aeronautics and Astronautics Nanjing 210016 China 2. China Electronics Technology Group Corporation Nanjing 210013 China |
|
|
Abstract The objective of this paper is to investigate the feasibility of the doubly salient electromagnetic generators (DSEGs) with multiple rotor poles for direct driven wind turbine and compare the performance between the new direct driven DSEG and the conventional (6k)/(4k)-pole DSEG. Stator pole and rotor pole combinations of the new generator are presented and the ratios of the stator pole width to the stator pole distance are deduced. 2-D finite element simulation models for DSEG were also developed and verified by a prototype generator. The simulation results show the rationality of new structures and indicate that the new DSEGs have many attractive advantages over the conventional (6k)/(4k)-pole DSEG, such as high power density, high efficiency and low cogging torque.
|
Received: 18 June 2008
Published: 18 February 2014
|
|
|
|
|
[1] Vizireanu D, Brisset S, Brochet P.Design and optimization of a 9-phase axial-flux PM synchronous generator with concentrated winding for direct-drive wind turbine[C].IEEE Industry Applications Conference, 2006, 1(1):1912-1918. [2] Spooner E, Gordon P, Bumby J R, et al.Lightweight ironless-stator PM generators for direct-drive wind turbines[C].IEE Electric Power Applications, 2005, 152(1):17-26. [3] Wang F X, Ren J, Zheng W, et al.A multi-ploe low speed doubly fed brushless generator for direct driven VSCF wind power system[C].IEEE International Conference on Power System Technology, 2006 1(1):8-12. [4] Grauers A, Kasinathan P, and Hamdi E S.Force density limits in low-speed permanent magnet machine due saturation[J].IEEE Transaction on Energy Conversion, 2005, 20(1):37-44. [5] Bywaters G, John V, Lynch J, et al.Northern power systems WindPACT drive train alternative design study report, NREL, Golden, Colorado, report number NREL/SR-500-35524, 2004.Available:http://www.nrel.gov/docs/fyO3osti/33196.pdf. [6] Mueller M A.Design and performance of a 20kW, 100rpm, switched reluctance generator for a direct drive wind energy converter[C].IEEE Electric Machines and Drives, 2005:15-18. [7] Torrey D A, Hassanin M.The design of low-speed variable-reluctance generators[C].IEEE Industry Applications Conference, 1995, 1(1):8-12. [8] Cheng M, Fan Y, Chau K T.Design and analysis of a novel stator-doubly-fed doubly salient motor for electric vehicles[J].Journal of Applied Physics, 2005, 97(10):10Q508-1-3. [9] 张建忠, 程明.新型直接驱动外转子双凸极永磁风力发电机[J].电工技术学报, 2007, 12(12):15-21. Zhang Jianzhong, Cheng Ming.A novel outer rotor permanent magnet generator with doubly salient structure for directly coupled wind turbines[J]. Transactions of China Electrotechnical Society, 2007, 12(12):15-21. [10] Fan Y, Chau K T, Cheng M.A new three-phase doubly salient permanent magnet machine for wind power generation[J].IEEE Transaction on Industry Applications, 2006, 42(1):53-60. [11] Fan Y, Chau K T, Niu S X.Development of a new brushless doubly fed doubly salient machine for wind power generation[J].IEEE Transation on Magnetics, 2006, 42(10):3455-3457. |
|
|
|