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Active Pitch Control in Larger Scale Fixed Speed Horizontal Axis Wind Turbine Systems Part Ⅱ: Non-linear Controller Design

机译:大型定速水平轴风力发电机系统中的主动变桨控制第二部分:非线性控制器设计

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This paper considers non-linear control of fixed speed wind turbines in above rated wind speed, using blade pitch angle control and with special emphasis on differential geometric theory. A non-linear system can be described as a linear system with the co-ordinates transformations in differential geometry theory. Firstly, a non-linear theoretical model of the fixed speed wind turbine was built according to the physical characteristics. Then, the nonlinear model was linearised globally with differential geometry transmission and a new linear model was prepared. Finally, a non-linear controller has been designed relying on the linear quadratic optimal algorithm of the new linear system.
机译:本文考虑了在额定风速以上的定速风力发电机的非线性控制,它采用叶片桨距角控制,并特别强调了微分几何理论。在微分几何理论中,可以将非线性系统描述为具有坐标变换的线性系统。首先,根据物理特性建立了定速风力发电机的非线性理论模型。然后,利用微分几何传递对非线性模型进行全局线性化,并准备了新的线性模型。最后,根据新线性系统的线性二次最优算法设计了非线性控制器。

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