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EWSE and Uncertainty and Disturbance Estimator Based Pitch Angle Control for Wind Turbine Systems Operating in Above-Rated Wind Speed Region

机译:基于额定风速区域运行的风力涡轮机系统的EWSE和不确定与扰动估计估计控制

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摘要

As wind energy becomes a larger part of the world's energy portfolio, the control of wind turbines is still confronted with challenges including wind speed randomness and high system uncertainties. In this study, a novel pitch angle controller based on effective wind speed estimation (EWSE) and uncertainty and disturbance estimator (UDE) is proposed for wind turbine systems (WTS) operating in above-rated wind speed region. The controller task is to maintain the WTS's generator power and rotor speed at their prescribed references, without measuring the wind speed information and accurate system model. This attempt also aims to bring a systematic solution to deal with different system characteristics over wide working range, including extreme and dynamic environmental conditions. First, support vector machine (SVR) based EWSE model is developed to estimate the effective wind speed in an online manner. Second, by integrating an UDE and EWSE model into the controller, highly turbulent and unpredictable dynamics introduced by wind speed and internal uncertainties is compensated. Rigid theoretical analysis guarantees the stability of the overall system. Finally, the performance of the novel pitch control scheme is testified via the professional Garrad Hassan (GH) bladed simulation platform with various working scenarios. The results reveal that the proposed approach achieves better performance in contrast to traditional L1 adaptive and proportional-integral (PI) pitch angle controllers.
机译:随着风能成为世界能源组合的较大部分,风力涡轮机的控制仍然面临着风速随机性和高系统不确定性的挑战。在该研究中,提出了一种基于有效风速估计(EWSE)和不确定性和扰动估计器(UDE)的新型桨距和扰动估计器(UDE),用于在上述风速区域操作的风力涡轮机系统(WTS)。控制器任务是在其规定的参考文献中维护WTS的发电机电源和转子速度,而不会测量风速信息和精确的系统模型。这次尝试还旨在提高系统解决方案,以处理在宽的工作范围内的不同系统特征,包括极端和动态的环境条件。首先,基于支持向量机(SVR)的EWSE模型以以在线方式估算有效风速。其次,通过将UDE和EWSE模型集成到控制器中,通过风速和内部不确定性引入的高度湍流和不可预测的动态得到补偿。刚性理论分析保证了整个系统的稳定性。最后,通过专业的Garrad Hassan(GH)Bladed仿真平台,通过各种工作场景来证实了新颖的音高控制方案的性能。结果表明,拟议的方法与传统的L1自适应和比例积分(PI)俯仰角控制器相比实现了更好的性能。

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    Zhejiang Univ Coll Control Sci &

    Engn Hangzhou 310027 Peoples R China;

    Zhejiang Univ Coll Control Sci &

    Engn Hangzhou 310027 Peoples R China;

    Zhejiang Univ Coll Control Sci &

    Engn Hangzhou 310027 Peoples R China;

    Zhejiang Windey Co Ltd Hangzhou 310012 Zhejiang Peoples R China;

    Zhejiang Windey Co Ltd Hangzhou 310012 Zhejiang Peoples R China;

    Zhejiang Windey Co Ltd Hangzhou 310012 Zhejiang Peoples R China;

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  • 正文语种 eng
  • 中图分类 自动化技术及设备;
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