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A Novel Hybrid MPPT for Wind Energy Conversion Systems Operating under Low Variations in Wind Speed

机译:用于风速低变化的风能转换系统的新型混合MPPT

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摘要

This manuscript presents a new approach MPPT (Maximum Power Point Tracking) for improving and optimizing the performance of a Wind Energy Conversion System (WECS) operating for small variations in wind speed by combining sliding mode control and fuzzy logic control. The proposed method consists of optimizing the sliding mode controller by the fuzzy controller. The main purpose of the Sliding Mode control-Fuzzy Logic controller (SM-FL) is to ensure the robustness (by eliminating certain disadvantages of the sliding mode control such as the phenomenon of chattering) and the stability of the control system in the case of small variations in conditions atmospheric (here variation of the wind). Our system consists of a wind turbine, a Permanent Magnet Synchronous Generator (PMSG) and a DC-DC boost converter connected to a continuous load. The performances of the method suggested are compared with those of fuzzy logic and fuzzy-Proportional Integral (FL-PI) in term speed of convergence, of tracking time and tracking efficiency. The results of numerical simulation of our system confirmed the best performance of this method.
机译:该稿件提出了一种新的方法MPPT(最大功率点跟踪),用于通过组合滑模控制和模糊逻辑控制来改进和优化风能转换系统(WECS)的性能,以通过组合滑模控制和模糊逻辑控制。所提出的方法包括通过模糊控制器优化滑动模式控制器。滑动模式控制 - 模糊逻辑控制器(SM-FL)的主要目的是确保鲁棒性(通过消除滑动模式控制的某些缺点,例如抖动的现象)和控制系统的稳定性条件大气(这里有风的变化)的小变化。我们的系统由风力涡​​轮机,永磁同步发电机(PMSG)和连接到连续负载的DC-DC升压转换器组成。建议的方法的性能与术语速度的模糊逻辑和模糊比例积分(FL-PI)进行比较,跟踪时间和跟踪效率。我们系统数值模拟结果证实了这种方法的最佳性能。

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