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Composite islanding detection method based on the active frequency drift and voltage amplitude variation

机译:基于有功频率漂移和电压幅度变化的复合孤岛检测方法

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Efficient and reliable islanding detection method is essential for the grid-connected photovoltaic systems. In spite of a high detection efficiency, the active frequency drift (AFD) method cannot identify the islanding in the case of power matching and is limited by the amount of total harmonic distortion (THD) injected into the grid. To cope with the above problems, a novel composite islanding detection method based on the change of both voltage frequency and amplitude is proposed, which is divided into dominant and auxiliary detection in accordance with active frequency drift and amplitude variation respectively. Simultaneously the assignment way of chopping fraction is improved to further reduce current harmonic distortion. The results derived from Matlab simulation indicate that it not only can largely narrow the non-detection zone of AFD method, especially the most difficult condition of islanding detection, but also significantly diminish the harmonic impact on the grid.
机译:高效可靠的孤岛检测方法对于并网光伏系统至关重要。尽管检测效率很高,但是有源频率漂移(AFD)方法在功率匹配的情况下仍无法识别孤岛,并且受到注入电网的总谐波失真(THD)量的限制。针对上述问题,提出了一种基于电压频率和幅度变化的复合孤岛检测方法,根据有效频率漂移和幅度变化分别将其分为显性检测和辅助检测。同时改进了斩波比的分配方式,以进一步减小电流谐波畸变。 Matlab仿真得出的结果表明,它不仅可以大大缩小AFD方法的非检测区域,特别是孤岛检测最困难的条件,而且还可以大大减小谐波对电网的影响。

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