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Robust Speed Controller Design for the Variable-Speed Wind Turbine Power System

机译:变速风力发电系统的鲁棒速度控制器设计

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The use of an appropriate control scheme can greatly boost the performance of the wind energy systems. The wind power systems that are connected to the grid side contain highly nonlinear characteristics and therefore, demand robust control scheme for their proper operation. The classical control schemes do not provide robustness against the nonlinearities and uncertainties present in the system. In this article, a robust sliding mode controller (SMC) is being designed and analyzed for regulating the speed of the wind turbine system in the existence of unmodeled dynamics, external perturbations and system uncertainties. The controller stability is given using the theory of Lyapunov stability. The designed controller performance is also compared to classical control techniques. The designed controller shows a better system response with the elimination of the steady state error and good robustness against system uncertainties.
机译:使用适当的控制方案可以大大提高风能系统的性能。连接到电网侧的风力发电系统具有高度非线性的特性,因此需要鲁棒的控制方案以使其正常运行。经典的控制方案不能提供针对系统中存在的非线性和不确定性的鲁棒性。在本文中,正在设计和分析鲁棒滑模控制器(SMC),以在存在未建模的动力学,外部扰动和系统不确定性的情况下调节风力涡轮机系统的速度。控制器稳定性是使用李雅普诺夫稳定性理论给出的。还将设计的控制器性能与经典控制技术进行了比较。设计的控制器显示出更好的系统响应,并且消除了稳态误差,并且对系统不确定性具有良好的鲁棒性。

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