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Nonlinear Dual-Mode Control of Variable-Speed Wind Turbines With Doubly Fed Induction Generators

机译:带有双馈感应发电机的变速风力发电机组的非线性双模控制

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This paper presents a feedback/feedforward nonlinear controller for variable-speed wind turbines with doubly fed induction generators. By appropriately adjusting the rotor voltages and the blade pitch angle, the controller simultaneously enables: 1) control of the active power in both the maximum power tracking and power regulation modes; 2) seamless switching between the two modes; and 3) control of the reactive power so that a desirable power factor is maintained. Unlike many existing designs, the controller is developed based on original, nonlinear, electromechanically-coupled models of wind turbines, without attempting approximate linearization. Its development consists of three steps: 1) employ feedback linearization to exactly cancel some of the nonlinearities and perform arbitrary pole placement; 2) design a speed controller that makes the rotor angular velocity track a desired reference whenever possible; and 3) introduce a Lyapunov-like function and present a gradient-based approach for minimizing this function. The effectiveness of the controller is demonstrated through simulation of a wind turbine operating under several scenarios.
机译:本文提出了一种带有双馈感应发电机的变速风力发电机的反馈/前馈非线性控制器。通过适当调节转子电压和叶片桨距角,控制器可同时启用:1)在最大功率跟踪和功率调节模式下控制有功功率; 2)两种模式之间的无缝切换; 3)控制无功功率,以保持理想的功率因数。与许多现有设计不同,该控制器是基于风力涡轮机的原始,非线性,机电耦合模型开发的,而未尝试进行近似线性化。它的发展包括三个步骤:1)利用反馈线性化来精确消除一些非线性并执行任意的极点布置; 2)设计一个速度控制器,使转子角速度尽可能地跟踪期望的参考值;和3)引入类Lyapunov函数,并提出了一种基于梯度的方法来最小化该函数。通过模拟在几种情况下运行的风力涡轮机,可以证明控制器的有效性。

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