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变桨距风力发电机组恒功率反馈线性化控制

杨俊华 郑俭华 杨梦丽 吴捷

控制理论与应用2012,Vol.29Issue(10):1365-1370,6.
控制理论与应用2012,Vol.29Issue(10):1365-1370,6.

变桨距风力发电机组恒功率反馈线性化控制

Feedback linearization control of constant output power for variable pitch wind turbine

杨俊华 1郑俭华 1杨梦丽 2吴捷3

作者信息

  • 1. 广东工业大学自动化学院,广东广州510006
  • 2. 信阳供电公司,河南信阳464000
  • 3. 华南理工大学电力学院,广东广州510640
  • 折叠

摘要

Abstract

When the wind speed exceeds the rated value, the wind power captured by the wind turbine must be reduced to guarantee the wind turbine to operate in the safe and stable status. A control scheme for limiting the power of the variable pitch wind turbine based on the differential geometry feedback linearized theory is proposed to keep the rotational speed and output power at the rated value. An affine nonlinear model of the wind turbine is developed and then globally exactly linearized by a differential geometry transformation. With the new linearized model, we design a novel pitch angle controller in which the output feedback variable is the rotational speed and the input control variable is the blade pitch angle. When the wind speed exceeds the rated value, the pitch angle controller changes the blade pitch angle to reduce the rotational speed back to the rated value for ensuring the constant output power. Simulation results show that, when the wind speed is above the rated value, the proposed control strategy effectively implements the constant output power control for the variable pitch wind turbine with fine flexibility and robustness.

关键词

风力发电机组/恒功率控制/反馈线性化/微分几何/全局精确线性化/变桨距

Key words

wind turbine/ power limitation control/ feedback linearization/ differential geometry/ globally precise linearization/ variable pitch

分类

信息技术与安全科学

引用本文复制引用

杨俊华,郑俭华,杨梦丽,吴捷..变桨距风力发电机组恒功率反馈线性化控制[J].控制理论与应用,2012,29(10):1365-1370,6.

基金项目

国家自然科学基金重点资助项目(60534040) (60534040)

广东省教育厅专项重点实验室资助项目(IDSYS200701) (IDSYS200701)

广东省科技计划资助项目(2009B010900052) (2009B010900052)

广东省自然科学基金资助项目(S2012040007895) (S2012040007895)

广东省绿色能源技术重点实验室开放基金项目(2012003). (2012003)

控制理论与应用

OA北大核心CSCDCSTPCD

1000-8152

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