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首页> 外文期刊>Sustainable Energy, IEEE Transactions on >Bumpless Transfer-Based Inter-Region Controller Switching of Wind Turbines for Reducing Power and Load Fluctuation
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Bumpless Transfer-Based Inter-Region Controller Switching of Wind Turbines for Reducing Power and Load Fluctuation

机译:基于无扰动转移的区域间风轮机控制器切换,以减少功率和负载波动

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摘要

For wind turbine operation, wind variations around the rated wind speed can lead to frequent controller switching actions, which may result in significant fluctuation in power output and structural load. This paper presents a bumpless transfer scheme for the inter-region controller switching for variable-speed variable-pitch wind turbines, which aims to reduce the associated power fluctuation and fatigue load. The study follows a typical partition of Region 2 (maximum power capture control), Region 2.5 (rotor speed regulation), and Region 3 (constant power control) around the rated wind speed. Two relatively simple bumpless transfer techniques, i.e., 1)the conditioning technique and 2)the linear quadratic (LQ) technique, respectively, are employed for different situations of inter-region controller switching. The conditioning bumpless transfer approach is adopted for switching between Regions 2 and 2.5 via generator torque control. The LQ bumpless transfer technical is applied to the switching between Regions 2.5 and 3, when the generator torque is saturated at its rated value, the pitch controller takes over so as to limit the load of wind turbine. The simulation results demonstrated the effectiveness of the proposed scheme of inter-region switching, with significant reduction of power flicker and structural load.
机译:对于风力涡轮机运行,额定风速附近的风速变化会导致频繁的控制器切换动作,这可能会导致功率输出和结构负载的明显波动。本文提出了一种用于变速变桨距风力发电机的区域间控制器切换的无扰动传输方案,旨在减少相关的功率波动和疲劳负荷。该研究遵循额定风速周围区域2(最大功率捕获控制),区域2.5(转子速度调节)和区域3(恒定功率控制)的典型分区。对于区域间控制器切换的不同情况,分别采用了两种相对简单的无扰动传输技术,即1)调节技术和2)线性二次(LQ)技术。通过发电机转矩控制,采用条件无扰动传递方法在区域2和2.5之间进行切换。 LQ无扰动传递技术应用于区域2.5和区域3之间的切换,当发电机转矩达到其额定值饱和时,变桨控制器将接管以限制风力涡轮机的负载。仿真结果证明了所提出的区域间切换方案的有效性,并显着降低了电源闪烁和结构负载。

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