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Fuzzy, integer and fractional-order control: application on a wind turbine benchmark model

机译:模糊,整数和分数阶控制:在风力发电机基准模型上的应用

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摘要

This paper presents a comparison between proportional integral control approaches for variable speed wind turbines. Integer and fractional-order controllers are designed using linearized wind turbine model whilst fuzzy controller also takes into account system nonlinearities. These controllers operate in the full load region and the main objective is to extract maximum power from the wind turbine while ensuring the performance and reliability required to be integrated into an electric grid. The main contribution focuses on the use of fractional-order proportional integral (FOPI) controller which benefits from the introduction of one more tuning parameter, the integral fractional-order, taking advantage over integer order proportional integral (PI) controller. A comparison between proposed control approaches for the variable speed wind turbines is presented using a wind turbine benchmark model in the Matlab/Simulink environment. Results show that FOPI has improved system performance when compared with classical PI and fuzzy PI controller outperforms the integer and fractional-order control due to its capability to deal with system nonlinearities and uncertainties. © 2014 IEEE.
机译:本文介绍了变速风力发电机比例积分控制方法之间的比较。整数和分数阶控制器是使用线性风力涡轮机模型设计的,而模糊控制器也考虑了系统的非线性。这些控制器在满负载区域内运行,其主要目的是从风力涡轮机中提取最大功率,同时确保集成到电网中所需的性能和可靠性。主要贡献集中在分数阶比例积分(FOPI)控制器的使用上,该控制器得益于引入了另一种调整参数,即整数分数阶,从而优于整数阶比例积分(PI)控制器。使用Matlab / Simulink环境中的风力涡轮机基准模型,对建议的变速风力涡轮机控制方法进行了比较。结果表明,与经典PI相比,FOPI的系统性能有所提高,并且由于模糊PI控制器具有处理系统非线性和不确定性的能力,其性能优于整数和分数阶控制。 ©2014 IEEE。

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