Abstract:The dual-stator permanent magnet synchrounous generator (PMSG) was analyzed by FEM, and the prototype was manufactured and tested to verify its design by response surface method (RSM) presented in the part I of this paper and the perfect performance. The 5.0kW prototyped dual-stator PMSG features a 50 percent power-to-volume ratio higher than that of the normal single-stator inner-rotor PMSG when ignoring their heat dissipating difference, and has a higher rated efficiency of about 90 percent, and a rated voltage regulation of about 6%.
[1] Cai Feng, Cui Shumei, Cheng Shukang. Performance analysis of double-stator starter generator for the hybrid electric vehicle[J]. IEEE Transactions on Magnnetics, 2005, 41(1): 484-487. [2] Niu Shuangxia, Chau K T, et al. Design and control of a new double-stator cup-rotor permanent-magnet machine for wind power generation[J]. IEEE Transactions on Magnnetics, 2007, 43(6): 2501-2503. [3] Zhang Dong, Chau K T, et al. Design and analysis of a double-stator cup-rotor PM integrated-stator- generator[C]. 41st IAS Annual Meeting of IEEE, 2006, 1: 20-26. [4] 倪光正, 杨仕友, 钱秀英, 等. 工程电磁场数值分析[M]. 北京: 机械工业出版社, 2004. [5] Kyu Yun Hwang, Sang Bong Rhee, et al. Rotor pole design in spoke-type brushless DC motor by response surface method[J]. IEEE Transactions on Magnnetics, 2007, 43(4): 1833-1836. [6] 文泽军, 刘德顺, 等. 基于响应面模型的永磁直流微电机堵转力矩稳健设计[J]. 机械设计与制造, 2007(3): 16-18.