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Wind turbine output power maximization based on sliding mode control strategy

机译:基于滑模控制策略的风电机组输出功率最大化

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The efficiency of the wind power conversions systems can be greatly improved using an appropriate control algorithm. In this work, a robust control for variable speed wind power generation that incorporates a doubly feed induction generator is described. In the presented design it is applied the so called vector control theory. The proposed control scheme uses stator flux-oriented control for the rotor side converter bridge control and grid voltage vector control for the grid side converter bridge control. The proposed robust control law is based on a sliding mode control theory, that, as it is well known, presents a good performance under system uncertainties. The stability analysis of the proposed controller under disturbances and parameter uncertainties is provided using the Lyapunov stability theory. Finally simulated results show, on the one hand that the proposed controller provides high-performance dynamic characteristics, and on the other hand that this scheme is robust with respect to the uncertainties that usually appear in the real systems.
机译:使用适当的控制算法可以大大提高风能转换系统的效率。在这项工作中,描述了结合了双馈感应发电机的变速风力发电的鲁棒控制。在提出的设计中,它应用了所谓的矢量控制理论。所提出的控制方案将面向定子磁通的控制用于转子侧变流器桥控制,并将电网电压矢量控制用于电网侧变流器桥控制。所提出的鲁棒控制定律是基于滑模控制理论的,众所周知,该系统在系统不确定性下表现出良好的性能。利用李雅普诺夫稳定性理论,对所提出的控制器在扰动和参数不确定性下的稳定性进行了分析。最后的仿真结果表明,一方面,该控制器提供了高性能的动态特性,另一方面,该方案对于实际系统中通常出现的不确定性具有鲁棒性。

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