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Novel power capture optimization based sensorless maximum power point tracking strategy and internal model controller for wind turbines systems driven SCIG

机译:基于新型功率捕获优化的无传感器最大功率点跟踪策略和用于风力涡轮机系统驱动的SCIG的内部模型控制器

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Under the trends to using renewable energy sources as alternatives to the traditional ones, it is important to contribute to the fast growing development of these sources by using powerful soft computing methods. In this context, this paper introduces a novel structure to optimize and control the energy produced from a variable speed wind turbine which is based on a squirrel cage induction generator (SCIG) and connected to the grid. The optimization strategy of the harvested power from the wind is realized by a maximum power point tracking (MPPT) algorithm based on fuzzy logic, and the control strategy of the generator is implemented by means of an internal model (IM) controller. Three IM controllers are incorporated in the vector control technique, as an alternative to the proportional integral (PI) controller, to implement the proposed optimization strategy. The MPPT in conjunction with the IM controller is proposed as an alternative to the traditional tip speed ratio (TSR) technique, to avoid any disturbance such as wind speed measurement and wind turbine (WT) characteristic uncertainties. Based on the simulation results of a six KW-WECS model in Matlab/Simulink, the presented control system topology is reliable and keeps the system operation around the desired response.
机译:在使用可再生能源替代传统能源的趋势下,重要的是通过使用强大的软计算方法为这些能源的快速增长做出贡献。在这种情况下,本文介绍了一种新颖的结构,用于优化和控制由基于鼠笼式感应发电机(SCIG)并连接到电网的变速风力发电机产生的能量。通过基于模糊逻辑的最大功率点跟踪(MPPT)算法来实现风能发电的优化策略,并通过内部模型(IM)控制器实现发电机的控制策略。在矢量控制技术中并入了三个IM控制器,以替代比例积分(PI)控制器,以实现建议的优化策略。建议将MPPT与IM控制器结合使用,以替代传统的叶尖速比(TSR)技术,以避免任何干扰,例如风速测量和风力涡轮机(WT)特性不确定性。基于Matlab / Simulink中6 KW-WECS模型的仿真结果,所提出的控制系统拓扑是可靠的,并使系统运行在所需的响应附近。

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