Emadi K,Ehsani M. Aircraft power systems: technology,state of the art,and future trends[J]. IEEE A&E Systems Magazine,2000,15(1): 28-32.
[2]
Abansal R,Bhatti T,Kothari D. Bibliography on the application of induction generators in nonconven- tional energy systems[J]. IEEE Transactions on Energy Conversion,2003,18(3): 433-439.
[3]
Alan I,Lipo T A. Starter/generator employing resonant-converter-fed induction machine part II: hardware prototype[J]. IEEE Transactions on A&E Systems,2000,36(4): 1319-1329.
[4]
Ojo O,Davidson I. PWM-VSI inverter-assisted stand- alone dual stator winding induction generator[J]. IEEE Transactions on Industry Applications,2000,36(6): 1604-1611.
[5]
Wang D,Ma W,Xiao F,et al. A novel stand-alone deal stator-winding induction generator with static excitation regulation[J]. IEEE Transactions on Energy Conversion,2005,20(4): 826-835.
[6]
王东,马伟明,李玉梅,等. 带有静止励磁调节器的双绕组感应发电机的研究[J]. 中国电机工程学报,2003,23(7): 145-150. Wang Dong,Ma Weiming,Li Yumei,et al. Research on dual statorwinding induction generator with static excitation regulator[J]. Proceedings of the CSEE,2003,23(7): 145-150.
[7]
Li Y,Hu Y,Huang W,et al. The capacity optimiza- tion for the static excitation controller of the dual- stator-winding induction generator operating in a wide speed range[J]. IEEE Transactions on Industrial Electronics,2009,56(2): 530-541.
[8]
Bu F,Huang W,Hu Y,et al. An excitation-capacitor- optimized dual stator-winding induction generator with the static excitation controller for wind power application[J]. IEEE Transactions on Energy Conver- sion,2011,26(1): 122-131.
[9]
程国华. 大型民用飞机电源系统的现状与发展[J]. 民用飞机设计与研究,2008,4(1): 1-5. Cheng Guohua. The current situation and development of large civil aircraft power system[J]. Civil Aircraft Design and Research,2008,4(1): 1-5.
[10]
Rosado S,Ma X F,Francis G,et al. Model-based digital generator control unit for a variable frequency synchronous generator with brushless exciter[J]. IEEE Transactions on Energy Conversion,2008,23(1): 42-52.
[11]
Elbuluk M,Kankan M. Potential starter/generator technologies for future aerospace applications[J]. IEEE A&E Systems Magazine,1997,12(5): 24-31.
[12]
Alan I,Lipo T A. Starter/generator employing resonant- converter-fed induction machine part I analysis[J]. IEEE Transactions on A&E Systems,2000,36(4): 1309-1318.
[13]
Leidhold R,Garcia G,Valla M. Induction generator controller based on the instantaneous reactive power theory[J]. IEEE Transactions on Energy Conversion,2002,17(3): 368-373.
[14]
胡育文,黄文新,张兰红. 异步电机起动/发电系统的研究[J]. 电工技术学报,2006,21(5): 7-13. Hu Yuwen,Huang Wenxin,Zhang Lanhong.Research on employing starter/generator system[J]. Transactions of China Electrotechnical Society,2006,21(5): 7-13.
[15]
杨青,马伟明,吴旭升,等. 3/3相双绕组发电机系统的运行稳定性[J]. 中国电机工程学报,2003,23(4): 86-90. Yang Qing,Ma Weiming,Wu Xusheng,et al. Stability of 3/3 dual stator-winding induction generator with simultaneous AC and rectified DC load[J]. Procee- dings of the CSEE,2003,23(4): 86-90.
[16]
刘陵顺,胡育文,黄文新. 变速运行的双绕组感应发电机电磁优化设计[J]. 中国电机工程学报,2006,26(3): 125-130. Liu Lingshun,Hu Yuwen,Huang Wenxin. Optimal design of dual stator-winding induction generator operating with variable speed[J]. Proceedings of the CSEE,2006,26(3): 125-130.
[17]
刘陵顺,胡育文,黄文新. 变速变负载运行的双绕组感应发电机励磁绕组无功容量优化的分析[J]. 电工技术学报,2006,21(3): 94-99. Liu Lingshun,Hu Yuwen,Huang Wenxin. Optimal analysis of reactive capacity of control Winding for dual stator-winding induction generator operating with variable speed[J]. Transactions of China Electrotechnical Society,2006,21(3): 94-99.
[18]
Bu F,Huang W,Hu Y,et al. A stand-alone dual stator-winding induction generator variable frequency AC power system[J]. IEEE Transactions on Power Electronics,2012,27(1): 10-13.
[19]
李勇. 基于电力电子技术的异步电机发电系统研究[D]. 南京: 南京航空航天大学,2009.
[20]
Holmes D Grahame,Lipo Tomas A. 电力电子变换器PWM技术原理与实践[M]. 周克亮译. 北京: 人民邮电出版社,2010.