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Implementation of Maximum Power Point Tracking Based on Variable Speed Forecasting for Wind Energy Systems

机译:基于风能系统变速预测的最大功率点跟踪的实现

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摘要

In order to precisely control the wind power generation systems under nonlinear variable wind velocity, this paper proposes a novel maximum power tracking (MPPT) strategy for wind turbine systems based on a hybrid wind velocity forecasting algorithm. The proposed algorithm adapts the bat algorithm and improved extreme learning machine (BA-ELM) for forecasting wind speed to alleviate the slow response of anemometers and sensors, considering that the change of wind speed requires a very short response time. In the controlling strategy, to optimize the output power, a state feedback control technique is proposed to achieve the rotor flux and rotor speed tracking purpose based on MPPT algorithm. This method could decouple the current and voltage of induction generator to track the reference of stator current and flux linkage. By adjusting the wind turbine mechanical speed, the wind energy system could operate at the optimal rotational speed and achieve the maximal power. Simulation results verified the effectiveness of the proposed technique.
机译:为了精确地控制下非线性变风速的风力发电系统,提出一种基于混合风速预报算法风力涡轮机系统的新颖的最大功率跟踪(MPPT)的策略。所提出的算法适应于预测风速蝙蝠算法和改进的极端学习机(BA-ELM)缓解风速计和传感器的响应速度慢,考虑到风速的变化需要在很短的响应时间。在控制策略,以优化输出功率,一个状态反馈控制技术,提出了实现基于MPPT算法转子磁通和转子速度跟踪目的。该方法能分离的电流和感应发电机的电压以跟踪定子电流和磁链的参考。通过调整所述风力涡轮机的机械速度,风能系统可以在最佳转速操作并实现最大功率。仿真结果验证了该技术的有效性。

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