李俊峰.中国风电发展报告2012[M].北京:中国环境出版社,2012:1-10. Li Junfeng.China wind power outlook 2012[M].Beijing:China Environmental Science Press,2012:1-10(in Chinese).
[2]
Bookman T.Wind energy’s promise, offshore[J].IEEE Technology and Society Magazine,2005,(24):9-15.
[3]
邢作霞,郑琼林,姚兴佳.近海风力发电技术的现状及展望[J].电机控制与应用,2005,32(9):55-60. Xing Zuoxia,Zheng Qionglin,Yao Xingjia.Some prospectives of offshore wind power technology[J].Electric Machines & Control Application,2005,32(9):55-60(in Chinese).
[4]
王志新,王承民,艾芊,等.近海风电场关键技术[J].华东电力,2007,35(2):37-41. Wang Zhixin,Wang Chengmin,Ai Qian,et al.Key technology for offshore wind farms[J].East China Electric Power,2007,35(2):37-41(in Chinese).
[5]
仲颖,郑源,刘美琴,等.我国东南沿海海上风电场建设的探究[J].可再生能源,2010,28(3):140-144. Zhong Ying,Zheng Yuan,Liu Meiqin,et al.Study on the construction of the offshore wind farm ASSY in the southeast coast of China[J].Renewable Energy Resources,2010,28(3):140-144(in Chinese).
[6]
雷亚洲.与风电并网相关的研究课题[J].电力系统自动化,2003,27(8):84-89. Lei Yazhou.Studies on wind farm integration into power system[J].Automation of Electric Power Systems,2003,27(8):84-89(in Chinese).
[7]
Choisnard J,Bernier M,and Lafrance G.RADARSAT-1 SAR scenes for wind power mapping in coastal area:Gulf of St-Lawrence case[C]//proceedings of IEEE International Geoscience and Remote Sensing Symposium,Melbourne.Australia:Geoscience & Remote Sensing Society,2003:2700-2702.
[8]
王志新,李响,艾芊,等.海上风电柔性直流输电及变流器技术研究[J].电力学报,2007,22(4):413-417. Wang Zhixin,Li Xiang,Ai Qian,et al.Research on offshore wind energy flexible direct current transmission and converter technology[J].Journal of Electric Power,2007,22(4):413-417(in Chinese).
[9]
Clement A,McCullen P,Falcao A,et al.Wave energy in Europe:current status and perspectives[J].Renewable & Sustainable Energy Reviews,2002,6(5):405-431.
[10]
Previsic M.Wave Power Technologies[C]//IEEE Power Engineering Society General Meeting.San Francisco,CA:Power Engineering Society,2005:2011-2016.
[11]
Muetze A,Vining J.Ocean wave energy conversion-a survey[C]//Conference Record of the 2006 IEEE Industry Applications Conference.Tampa,Florida,U.S.A:Industry Applications Society,2006,3:1410-1417.
[12]
De Sousa P M,Gardner F,Damen M,et al.Modelling and test results of the Archimedes wave swing[J].Proceedings of the Institution of Mechanical Engineers,Part A:Journal of Power and Energy,2006,220(8):855-868.
[13]
吴必军,邓赞高,游亚戈.基于波浪能的蓄能稳压独立发电系统仿真[J].电力系统自动化,2007,31(5):50-56. Wu Bijun,Deng Zangao,You Yage.Simulation of pressure-maintaining storage isolated generating system based on wave energy[J].Automation of Electric Power Systems,2007,31(5):50-56(in Chinese).
[14]
游亚戈,李伟,刘伟民,等.海洋能发电技术的发展现状与前景[J].电力系统自动化,2010,34(14):1-12. You Yage,Li Wei,Liu Weimin,et al.Development status and perspective of marine energy conversion systems[J].Automation of Electric Power Systems,2010,34(14):1-12(in Chinese).
[15]
Valerio D,Beirao P,Da Costa J.Feedback linearization control applied to the Archimedes Wave Swing[C]//15th Mediterranean Conference on Control and Automation.Athens,Greece:Mediterranean Control Association,2007:935-940.
[16]
Li Y,Barbara J,Sander M.Modeling tidal turbine farm with vertical axis tidal current turbine[C]//Proceedings of the 2007 IEEE International Conference on Systems,Man and Cybernetics.Montréal,Quebec,Canada:IEEE Systems,Man,and Cybernetics Society,2007:697-702.
[17]
Fraenkel.Tidal current energy technologies[J].The International Journal of Avian Science,2006,148(S1):145-151.
[18]
Bahaj A,Batten W,McCann G.Experimental verifications of numerical predictions for the hydrodynamic performance of horizontal axis marine current turbines[J].Renewable Energy,2007,32(15):2479-2490.
[19]
Salman S,Gibb J,Macdonald I.Integration of tidal power based-electrical plant into a grid[C]//43rd International Universities Power Engineering Conference.Italy:University of Padova,2008:1-4.
[20]
马舜,李伟,刘宏伟,等.25 kV独立运行式水平轴潮流能发电系统[J].电力系统自动化,2010,34(14):18-22. Ma Shun,Li Wei,Liu Hongwei,et al.A 25 kW stand-alone horizontal axis tidal current turbine[J].Automation of Electric Power Systems,2010,34(14):18-22(in Chinese).
[21]
王刚,历文超,王树杰,等.潮流能发电机组控制系统开发[J].电力系统自动化,2010,34(14):23-26. Wang Gang,Li Wenchao,Wang Shujie,et al.Development of tidal current generator sets control system[J].Automation of Electric Power Systems,2010,34(14):23-26(in Chinese).
[22]
黄维平,刘建军,赵战华.海上风电基础结构研究现状及发展趋势[J].海洋工程,2009,27(2):130-134. Huang Weiping,Liu Jianjun,Zhao Zhanhua.The state of the art of study on offshore wind turbine structures and its development[J].The Ocean Engineering,2009,27(2):130-134(in Chinese).
[23]
Mohammad L,and Yasuyuki S.Hybrid Offshore-wind and Tidal Turbine(HOTT)Energy Conversion I(6-Pulse GTO Rectifier and Inverter)[C]//IEEE International Conference on Sustainable Energy Technologies.Singapore:Industry Applications Society,2008:650-655.
[24]
Yao D,Alireza K.Hybrid offshore wind and tidal turbine energy harvesting system with independently controlled rectifiers[C]//35th Annual Conference of IEEE Industrial Electronics.Vienna,Austria:IEEE Industrial Electronics Society,2009:4577-4583.
[25]
Rahman M,Oka S,Shirai Y.Hybrid power generation system using offshore-wind turbine and tidal turbine for power fluctuation compensation (HOT-PC)[J].IEEE Transactions on Sustainable Energy,2010,1(2):92-98.
[26]
De A,Falcao O,Justino P,OWC wave energy devices with air flow control[J].Ocean Engineering,1999,26(12):1275-1295.
[27]
Henderson R.Design,simulation,and testing of a novel hydraulic power take-off system for the Pelamis wave energy converter[J].Renewable energy,2006,31(1):271-283.
[28]
Plinnder H,Damen M,Gardner F.Linear PM generator system for wave energy conversion in AWS[J].IEEE Trans. on Energy Conversion,2004,19(3):583-589.
[29]
Shek J,Macpherson D,Mueller M,et al.Reaction force control of a linear electrical generator for direct drive wave energy conversion[J].IET Renewable Power Generation,2007,1(1):17-24.
[30]
Feng W,Xiaoping Z,Ping J,et al.Modeling and control of AWS based wave energy conversion system integrated into power grid[J].IEEE Trans. on Power Systems,2008,23(3):1196-1204.
[31]
Feng W,Xiaoping Z,Ping J,et al.Optimal control for AWS-based wave energy conversion system[J].IEEE Trans. on Power Systems,2009,24(4):1747-1755.
[32]
Feng W,Xiaoping Z,Godfrey K,et al.Small signal analysis and optimal control of wind turbine with doubly fed induction generator[J].IET Generation,Transmission & Distribution,2007,1(5):751-760.
[33]
Feng W,Xiaoping Z,Ping J,et al.Decentralized nonlinear control of wind turbine with doubly fed induction generator[J].IEEE Transacitons on Power Systems,2008,23(2):613-621.
[34]
Wu L,Wang ZX.Wind generator stabilization with doubly fed asynchronous machine[J].WSEAS Transactions on Power Systems,2006,1(2):12-16.
[35]
迟永宁,王伟胜,戴慧珠.改善基于双馈感应发电机的并网风电场暂态电压稳定性研究[J].中国电机工程学报,2007,27(25):25-31. Chi Yongning,Wang Weisheng,Dai Huizhu.Study on transient voltage stability enhancement of grid-connected wind farm with doubly fed induction generator installations[J].Proceedings of the CSEE,2007,27(25):25-31(in Chinese).
[36]
Polinder H,Van P,De Vilder G,et al.Comparison of direct-drive and geared generator concepts for wind turbine[J].IEEE Transactions on Energy Conversion,2006,21(3):725-733.
[37]
Akhmatov V,Nielsen A,Pedersen J,et al.Variable-speed wind turbine with multi-pole synchronous permanent magnet generators,part I:modelling in dynamic simulation tools[J].Wind Engineering,2003,27(6):531-548.
[38]
Tan K,Islam S.Optimum control strategies in energy conversion of PMSG wind turbine system without mechanical sensor[J].IEEE Trans. on Energy Conversion,2004,19(2):392-399.
[39]
Chen Y,Pillay P,Khan A.PM wind generator topologies[J].IEEE Trans. on Industry Applications,2005,41(6):1619-1626.
[40]
吴峰,张小平,鞠平,电池储能在直接驱动式波浪能发电场并网运行中的应用(英文)[J].电力系统自动化,2010,34(14):31-36. Wu Feng,Zhang Xiaoping,Ju Ping.Application of battery energy storage in the direct-drive wave energy conversion farm integrated into power grid[J].Automation of Electric Power Systems,2010,34(14):31-36 (in English).