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Fault Detection and Control Reconfiguration of Wind Power Plants

机译:风力发电厂的故障检测与控制重构

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In this paper we developed a new Active Fault Tolerant Control algorithm That is able to stabilize the Wind Turbine under actuator fault, The main idea is to use a observers redundancy to generate a residual set for an effective detection and multiple controls scheme which allow to switch automatically the control to the adequate one in the presence of the fault to maintain the continuity of the energy production with the highest performance possible. For the fault detection we used a bank of two observers the Kalman filter and Sliding mode observer, A method using In the healthy mode is Linear Quadratic Gaussian (LQG) control methodology shows good performance, optimal control and robust-ness in controller design and Sliding Mode control when fault occur. To validate the proposed method, the simulation has been carried out using MATLAB script and the results are presented.
机译:在本文中,我们开发了一种新的主​​动容错控制算法,该算法能够在执行器故障下稳定风力涡轮机。主要思想是使用观察者冗余来生成残差集,以进行有效的检测和多控制方案,从而实现切换在出现故障时自动将控制权控制在适当的水平,以保持能源生产的连续性并尽可能实现最高性能。对于故障检测,我们使用了两个观察员组成的库尔曼滤波器和滑动模式观察器,在健康模式下使用的一种方法是线性二次高斯(LQG)控制方法,该方法在控制器设计和滑动中表现出良好的性能,最优的控制和鲁棒性发生故障时的模式控制。为了验证所提出的方法,使用MATLAB脚本进行了仿真,并给出了结果。

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