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A new sliding mode control strategy for variable‐speed wind turbine power maximization

机译:变速风力发电机功率最大化的新型滑模控制策略

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The paper proposes a new sliding mode power control strategy for a wound-field synchronous generator-based variable speed wind energy conversion systems to maximize the power extracted from the wind turbine. The proposed controller can handle the inherent nonlinearities in wind energy conversion systems and the randomness of the wind speed as well as the uncertainties of the model and external disturbances. To reduce the chattering phenomenon that characterizes conventional sliding mode control, a sigmoid function with a variable boundary layer is proposed. The adaptive switching gains are adjusted on-line by using a fuzzy logic-based technique. Several simulation scenarios were performed to evaluate the performance of the proposed control scheme. The results demonstrate that this controller provides excellent response characteristics, is robust against parameter variations, and free from chattering phenomenon as compared with the conventional sliding mode control.
机译:本文针对基于绕线场同步发电机的变速风能转换系统提出了一种新的滑模功率控制策略,以使从风力涡轮机提取的功率最大化。所提出的控制器可以处理风能转换系统中固有的非线性,风速的随机性,模型的不确定性和外部干扰。为了减少表征传统滑模控制的颤振现象,提出了具有可变边界层的S形函数。自适应开关增益通过使用基于模糊逻辑的技术进行在线调整。执行了几种仿真方案,以评估所提出的控制方案的性能。结果表明,与传统的滑模控制相比,该控制器具有出色的响应特性,对参数变化具有鲁棒性,并且没有抖动现象。

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