基于最大峰值功率跟踪的最优风能捕获失速调节控制算法

B. Neammanee, K. Krajangpan, S. Sirisumrannukul, S. Chatrattana
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引用次数: 37

摘要

针对风电最优捕获问题,提出了三种基于最大峰值功率跟踪的失速调节控制算法:基于转矩参考的MPPT算法、基于搜索的MPPT算法和基于模糊的MPPT算法。第一种算法使用扭矩参考作为跟踪的指导方针。第二种方法是从功率-转速曲线的斜率中寻找最优工作点。最后利用开发的模糊逻辑规则库实现控制目标。这三种算法在低成本的数字信号控制器板上实现,并在实时风力发电机模拟器上进行了测试。实验发现,对于任意输入风速,三种算法都能获得最大功率,但在功率波动、转速波动和跟踪时间方面的控制性能不同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Maximum Peak Power Tracking-Based Control Algorithms with Stall Regulation for Optimal Wind Energy Capture
This paper presents three alternative maxium peak power tracking-based control algorithms with stall regulation for optimal wind energy capture: torque reference-based MPPT algorithm, searching-based MPPT algorithm and fuzzy-based MPPT algorithm. The first algorithm uses a torque reference as a guideline for tracking. The second method searches an optimal operating point from the slope of the power-rotational speed curve. The last one achieves the control objective using a developed fuzzy logic rule base. These three algorithms were implemented on a low cost digital signal controller board and tested with a real-time wind turbine simulator. It is found from the experiment that the three algorithms can manage to obtain the maximum power for any input wind speeds but with different control performance in terms of power fluctuation, rotational speed fluctuation and tracking time.
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