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摘要:
This paper proposes H∞ controller design for platform position transfer and regulation of floating offshore wind turbines.The platform movability of floating wind turbines can be utilized in mitigating the wake effect in the wind farm,thereby maximizing the wind farm's total power capture and efficiency.The controller is designed so that aerodynamic force is adjusted to meet the three objectives simultaneously,that is,1) to generate the desired electrical power level,2) to achieve the desired platform position,and 3) to suppress the platform oscillation.To acquire sufficient aerodynamic force to move the heavy platform,the pitch-to-stall blade pitching strategy is taken instead of the commonly-used pitch-to-feather strategy.The desired power level is attained by the standard constant-power strategy for the generator torque,while H∞ state-feedback control of blade pitch and nacelle yaw angles is adopted for the position regulation and platform oscillation suppression.Weighting constants for the H∞ controller design are adjusted to take the trade-off between the position regulation accuracy and the platform motion reduction.To demonstrate the efficiency of the proposed controller,a virtual 5-MW semi-submersible wind turbine is considered.Simulation results show that the designed H∞ controller successfully accomplishes the platform position transfer and regulation as well as the platform oscillation reduction against wind and wave disturbances,and that it outperforms a previously-proposed linear quadratic controller with an integrator.
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篇名 H∞ position transfer and regulation for floating offshore wind turbines
来源期刊 控制理论与技术(英文版) 学科
关键词
年,卷(期) 2020,(3) 所属期刊栏目
研究方向 页码范围 231-245
页数 15页 分类号
字数 语种 英文
DOI 10.1007/s11768-020-8280-9
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相关学者/机构
期刊影响力
控制理论与技术(英文版)
季刊
2095-6983
44-1706/TP
16开
广州市五山华南理工大学内
2003
eng
出版文献量(篇)
1113
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0
总被引数(次)
4188
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