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A Co-Simulation Analysis of Hydraulic Pitch Control System in Large Wind Turbine

机译:大风力涡轮机液压桨距控制系统的共模分析

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The use of wind power has been rising up rapidly due to its power potential and the improvement of technology. In order to extend the max capacity of power output, the size of wind turbine should grow simultaneously. Therefore, a cost effectiveness of wind power plant is needed to improve the performance. This paper aims at designing a novel hydraulic pitch actuator to achieve pitch control performance effectively even if an impulsive wind peak appears. By developing a novel hydraulic pump control system, the creative design of hydraulic pump control system comprising a fixed displacement pump driven by a servo motor, two hydraulic cylinder, and circuits, can react smoothly even if an impulsive wind appears suddenly. Furthermore, a feedback linearization controller was designed to compensate for the nonlinearity of hydraulic system. The turbine model was built through FAST released by NREL and the dynamic performance showed the excellent robustness and response with that proposed controller and mechanical design.
机译:由于其电力潜力和技术的改进,风电的使用已经迅速上升。为了延长电力输出的最大容量,风力涡轮机的尺寸应同时生长。因此,需要风力发电厂的成本效益来提高性能。本文旨在设计一种新型液压桨距致动器,即使出现脉冲风峰,也能有效地实现俯仰控制性能。通过开发一种新型液压泵控制系统,液压泵控制系统的创造性设计包括由伺服电动机驱动的固定位移泵,两个液压缸和电路,即使突然出现冲动的风也会平稳地反应。此外,设计反馈线性化控制器以补偿液压系统的非线性。涡轮机模型由NRER快速释放,动态性能显示出优异的鲁棒性和响应,并与建议的控制器和机械设计。

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