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Development of a robust nonlinear pitch angle controller for a redesigned 5MW wind turbine blade tip

机译:为重新设计的5MW风力发电机叶片尖端开发鲁棒的非线性桨距角控制器

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Power in wind turbines are traditionally controlled by varying the pitch angle at high wind speeds in region 3 of the wind turbine operation. The pitch angles controllers are normally driven by electrical or hydraulic actuators. The motivation of this research is to design and implement a pitch angle control strategy at the outer section of the blade via a separated pitch control at blade tip (SePCaT). A pneumatic actuator is implemented to drive the pitch angle control mechanism by incorporating pneumatic actuated muscles (PAM) due to its high power/mass ratio, high specific work, and good contraction ratio while maintaining low weight at the tip of the blade. A sliding mode controller (SMC) is modeled and implemented on a redesigned 5MW wind turbine numerically. The hypothesis is that the SePCaT control strategy is effective and satisfactory pitch angle trajectory tracking is achievable. The method is adopted, the system is modeled, and the response was observed by subjecting the model dynamics to desired pitch angle trajectories. Initially comparative controller response with respect to desired trajectory revealed satisfactory pitch angle tracking but further investigation revealed chattering characteristics which was minimized by incorporating a saturation function. SePCaT offers an effective pitch angle control strategy which is smaller, lighter, reliable and efficient.
机译:传统上,通过在风力涡轮机运行的区域3中以高风速改变俯仰角来控制风力涡轮机中的功率。俯仰角控制器通常由电动或液压执行器驱动。这项研究的目的是通过叶片尖端的分离桨距控制(SePCaT)在叶片的外部设计并实施桨距角控制策略。气动执行器由于具有高功率/质量比,高比功和良好的收缩率,同时还保持了叶片尖端的低重量,因此通过并入气动致动肌肉(PAM)来实现俯仰角控制机构的驱动。在重新设计的5MW风力涡轮机上对滑模控制器(SMC)进行建模和实现。假设是SePCaT控制策略是有效的,并且可以获得令人满意的俯仰角轨迹跟踪。采用该方法,对系统进行建模,并通过使模型动力学经历所需的俯仰角轨迹来观察响应。最初,相对于所需轨迹的比较控制器响应显示出令人满意的俯仰角跟踪,但进一步的研究显示出颤振特性,通过结合饱和函数将其最小化。 SePCaT提供了有效的俯仰角控制策略,该策略更小,更轻,更可靠,更高效。

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