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风电机组的机械液压混合传动技术 被引量:10

Hydro-mechanical hybrid power transmission technology in wind turbines
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摘要 针对传统风电机组具有齿轮箱故障率高、变流器技术复杂及谐波干扰等问题,提出基于机械液压混合传动的风力发电机组.通过理论分析系统的传动特性,建立该风力发电机组的动态模型,给出基于该传动方式的变速恒频(VSCF)控制方法.以1.5MW并网风电机组为例,利用AMESim与MATLAB/simulink软件对机组运行工况进行联合仿真分析.仿真结果验证了理论分析的正确性,表明提出的机械液压混合传动式风力发电系统具有变速恒频控制方法简单、载荷冲击小、功率稳定性好、传动效率较高、电网友好性好等特点. A novel wind turbine with hydro-mechanical hybrid transmission was proposed to solve the problems in traditional wind turbines, such as high failure rate in gearboxes, technological sophisticated inverters, harmonic interference. The variable speed constant frequency (VSCF) control algorithm was presented through the theoretical analysis on the transmission characteristics of the system and the establishment of a dynamic model of the wind turbine. A cosimulation of AMESim and MATLAB/ simulink was conducted on a 1.5 MW grid wind turbine. The simulation results validated the feasibility of the transmission system. The novel wind power generation system is characterized by simple VSCF control algorithm, low load impact, power stability, high transmission efficiency and grid-friendliness.
出处 《浙江大学学报(工学版)》 EI CAS CSCD 北大核心 2014年第10期1767-1774,共8页 Journal of Zhejiang University:Engineering Science
基金 国家自然科学基金资助项目(51275448) 国家自然科学基金创新研究群体科学基金资助项目(51221004)
关键词 风力发电机组 机械液压混合传动 变速恒频(VSCF) 传动特性 wind turbine hydro-mechanical hybrid transmission variable speed constant frequency (VSCF) transmission characteristics
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参考文献8

  • 1RAGHEB A, RAGHEB M. Wind turbine gearbox tech- nologies [C]// Proeeeflings of the 1st International Nu- elear and Renewable Energy Conference. [S. 1. ] : IEEE, 2010 : 1 - 8.
  • 2KUSIAK A, LI W. The prediction and diagnosis of wind turbine faults[J]. Renewable Energy, 2011, 36(1) : 16 - 23.
  • 3BYWATERS G, JOHN V, LYNCH J, et al. Northern power systems WindPACT drive train alternative design study report[R]. Colorado: NREL, 2004.
  • 4李伟,涂乐,林勇刚.风力发电中液压技术的应用研究[J].液压与气动,2013,37(3):1-9. 被引量:17
  • 5WANG F, TRIETCH B, STELSON K A. Mid-sized wind turbine with hydro-mechanical transmission dem- onstrates improved energy production [C] //Proceedings of the 8th International Conference on Fluid Power Transmission and Control. Beijing: World Publishing Corporation, 2013:167 - 171.
  • 6韩继光,白立群,周欣.差动轮系的传动比与自锁问题的研究[J].机械设计,2002,19(11):18-21. 被引量:4
  • 7张大海,李伟,林勇刚,刘宏伟,应有.基于AMESim的海流能发电装置液压传动系统的建模与仿真[J].太阳能学报,2010,31(2):222-227. 被引量:12
  • 8(德)阿克曼.风力发电系统[M].谢桦,王健强,姜久春,译.北京:中国水利水电出版社,2010.

二级参考文献23

  • 1杨尔庄.液压技术在风力发电中的应用概况[J].液压气动与密封,2006,26(2):1-5. 被引量:12
  • 2Payne G S,Kiprakis A E,Ehsan M,et al.Efficiency and dynamic peffonnance of Digital Displacement TM hydraulic transmission in tidal current energy converters[J].Power and Energy,2006,221:12.
  • 3Bahai A S,Molland A F,Chaplin J R,et al.Power and thrust measurements of marine current turbines under various hyclrodynamic flow conditions in a cavitation tunnel and a towing tank[J].Benewable Energy,2007,32(3):407-426.
  • 4Myers L,Bahai A S.Simulated electrical power potential harnessed by marine current turbine arrays in the alderney race[J].Renewable Energy,2005,(30):1713-1731.
  • 5Ezzeldin S A,Xu Wilson.Control design and dynamic performance analysis of a wind turbine-induction generator unit[J].IEEE Trans,On EC,2000,3(15):7.
  • 6Endusa Billy Muhando,Tomonobu Senjyu,Naomitsu Urasaki,et al.Gain scheduling control of variable speed WTG under widely varying turbulence loading[J].Renewable Energy,2007,32(14):2407-2423.
  • 7Zhou xin. Han Jiguang. The criterion to judge the power - flow type of the closed epicyclic gear train [C]. Proceedings of International Conference on Mechanical Transmissions and Mechanisms (MTM'97, Tianjin, China). Beijing, China: China Machine Press, 1997:680-682.
  • 8Ackermann T. , Soder L. An Overview of Wind Energy-sta- tus 2002 [ J ]. Renewable & Sustainable Energy Reviews, 2002, 6(1 -2): 67-128.
  • 9全球风能理事会(GWEC):2011年新增风电装机容量达41000MW[J].电器工业,2012,(3):3.
  • 10Sun H. M. , Gao M. , Nie S. L. The Application of Hy- draulic System in Wind turbine[ C]. 3rd International Con- ference on Mechanical and Electronics Engineering (ICMEE 2011 ). China : Hefei ,2011:630 - 632.

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