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A new active island detection method which is based on a novel disturbance way

机译:一种新的活性岛检测方法,基于一种新的扰动方式

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Island will not only lead a damaging to the equipment of the power system, serious when, may appear a series of problems like threatening the safety of the maintenance personnel of the power system. So the grid-connected Photovoltaic power generation system must have the function of detecting the islanding in all the time to ensure if the gird is working. The traditional AFD's detecting effects are different under different kinds of loads, it's better for the impedance load, but it brings a high THD. Although researchers proposed the improved AFDs based on the feedback adjustment or periodic disturbance which could reduce the THD, but they slow down the detecting speed at the same time. In view of this, this paper proposes a new active island detection method which adopts a novel disturbing way with low THD, and the detection effects are better than the traditional AFD under RLC impedance load. The non-detection zone is smaller and the detecting speed is faster, better yet, the THD injecting to the grid is lower, it has a practical value. In this paper, Matlab/Simulink simulation experiment shows that the proposed method is better than the traditional AFD at reducing THD, improving the detecting speed, and reducing the non-detection zone.
机译:岛屿不仅会对电力系统的设备造成损害,严重的时候可能出现了一系列问题,如威胁到电力系统的维护人员的安全。因此,网格连接的光伏发电系统必须具有在所有时间内检测岛屿的功能,以确保GIRD是否正常工作。传统的AFD检测效果在不同类型的负载下不同,对于阻抗负荷更好,但它带来了高度。虽然研究人员基于反馈调整或定期干扰提出了改进的AFDS,但它们可以减少THD,但它们同时减慢检测速度。鉴于此,本文提出了一种新的活性岛检测方法,采用了一种具有低THD的新型令人不安的方式,并且检测效果优于RLC阻抗负荷下的传统AFD。非检测区域较小,检测速度更快,更好,更好地注入电网较低,它具有实用的值。在本文中,Matlab / Simulink仿真实验表明,该方法优于传统的AFD在减少THD时,提高检测速度,降低非检测区。

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