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Sensorless Nonlinear Control of Wind Energy Systems with Doubly Fed Induction Generator

机译:双馈感应发电机的风能系统无传感器非线性控制

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The problem of controlling doubly fed induction generators (DFIG) associated with wind turbines is addressed. The control objective is twofold: maximum power point tracking and reactive power regulation in the DFIG. Unlike previous works, we seek the achievement of this control objective without resorting to physical sensors of mechanical variables (e.g., wind turbine velocity and DFIG rotor speed). Interestingly, wind velocity is also not assumed to be accessible to measurements. The control problem is dealt with using an output feedback controller designed on the basis of the nonlinear state-space representation of the controlled system. The controller is constituted of a high-gain nonlinear state observer and a nonlinear sliding state feedback mode. Using tools from Lyapunov’s stability, it is formally shown that the closed-loop control system, expressed in terms of the state estimation errors and the output-reference tracking errors, enjoys a semi-global practical stability. Accordingly, it is possible to tune the controller design parameters so that it meets its objectives with an arbitrarily high accuracy, whatever the initial conditions are. These theoretical results are confirmed by simulations involving wide range variation of the wind speed...
机译:解决了控制与风力涡轮机相关的双馈感应发电机(DFIG)的问题。控制目标是双重的:DFIG中的最大功率点跟踪和无功功率调节。与以前的工作不同,我们寻求实现此控制目标而不求助于机械变量的物理传感器(例如风轮机速度和DFIG转子速度)。有趣的是,风速也不被认为可用于测量。通过使用基于受控系统的非线性状态空间表示而设计的输出反馈控制器来处理控制问题。控制器由高增益非线性状态观测器和非线性滑动状态反馈模式组成。使用Lyapunov稳定性的工具,正式表明,以状态估计误差和输出参考跟踪误差表示的闭环控制系统具有半全局的实用稳定性。因此,无论初始条件如何,都可以调整控制器的设计参数,使其以任意高精度满足其目标。这些理论结果已通过涉及风速大范围变化的模拟得到了证实。

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