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海上浮式风力机变桨距控制研究 被引量:1

RESEARCH ON PITCH CONTROL OF FLOATING OFFSHORE WIND TURBINE
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摘要 借鉴陆上风力机基于状态空间法的干扰自适应控制,在状态空间中考虑海上浮式风力机支撑平台运动自由度,采用状态观测器评估系统各状态量,研究不同干扰自适应变桨距控制对海上浮式风力机控制性能的影响,并与FAST基础控制对比分析。结果表明:海上浮式风力机变桨距控制设计应基于状态空间法的干扰自适应控制,同时在状态空间中应考虑平台纵荡、纵摇及艏摇自由度。 Using disturbance accommodating control based on state-space of onshore wind turbines,and considering the freedom of floating offshore wind turbine support platform in the state-space,and using state estimator to evaluate the system state variables,to research the influence of different disturbances accommodating control of pitch on the control performance of floating offshore wind turbine and compare it with FAST baseline control. The results shows that floating offshore wind turbine pitch control design should be use disturbance accommodating control based on state-space method,and the support platform surge,pitch and yaw freedom should be considered in the state-space.
作者 余万 丁勤卫 李春 郝文星 韩志伟 Yu Wan;Ding Qinwei;Li Chun;Hao Wenxing;Han Zhiwei(School of Energy and Power Engineering,University of Shanghai for Science and Technology,Shanghai 200093,China;Shanghai Key Laboratory of Multiphase Flow and Heat Transfer in Power Engineering,Shanghai 200093,China)
出处 《太阳能学报》 EI CAS CSCD 北大核心 2021年第1期143-148,共6页 Acta Energiae Solaris Sinica
基金 国家自然科学基金(51676131,51176129) 上海市科学技术委员会项目(13DZ2260900)。
关键词 海上浮式风力机 自由度 状态空间法 干扰自适应控制 变桨距控制 floating offshore wind turbine degree of freedom state space method disturbance accommodating control pitch control
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  • 1Battista H, Mantz R J. Wind turbine control systems principles, modeling and gain scheduling design[M]. London: Springer-Vorlay, 2007.
  • 2Bossanyi E A. The design of closed loop controller for wind turbines[J]. Wind Energy, 2001, 3(3): 149- 163.
  • 3Laks J H, Pao L Y, Wright A D. Control of wind turbines: past, present, and future[A]. American Control Conference[C]. St. Louis, MO, USA, 2009, 2096-2103.
  • 4Doff R C, Bishop R H. Modem control system[M]. Singapore: Pearson Education Inc, 2008, 281-295.
  • 5Mika R. Torque and speed control of a pitch regulated wind turbine [R]. Sweden: Department of Electric Power Engineering, 2003.
  • 6Hansen M, Hansen A, Fuglsang P. et al. Control design for a pitch-regulated, variable speed wind turbine[R]. Denmark : Riso National Laboratory, 2005.
  • 7Ekelund T. Modeling and linear quadratic optimal control of wind turbines[D]. Sweden: Chalmers University of Technology, 1997.
  • 8Munteanu. I, Cutululis N A, Bratcu A I, et al.Optimization of variable speed wind power systems based on a LQG approach[J]. Control Engineering Practice, 2005, 15: 905-912.
  • 9Boukhezzar B, Siguerdidjane H. Comparison between linear and non-linear control strategies for variable speed wind turbines [J]. Control Engineering Practice,2010, 18: 1357-1368.
  • 10Yao Xingjia, Guo Changchun, Xing Zuoxia, et al. Pitch regulated LQG controller design for variable speed wind turbine [A]. International Conference on Mechatronics and Automation[C], ICMA 2009, IEEE, 2009, 845- 849.

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