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A Passive Islanding Detection Technique for Grid connected Solar Photovoltaic System

机译:并网太阳能光伏系统的被动孤岛检测技术

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The world is moving progressively towards the power generation from renewable energy resources because these are inexhaustible, pollution free and available richly in the nature. Due to the advantages of renewable power generation, the grid interconnection of distributed generator (DG) is growing in the power market. The major drawback of this interconnection is an unintentional islanding. The islanding takes place in the power system when the distributed generator continues supply power even when the grid is not connected to the system. However, an unintentional islanding is an unplanned islanding which is harmful to the power system and the people working in it. Therefore it is essential to detect an unintentional islanding so to prevent from its harmful consequences. The islanding must be detected within minimum time delay i.e. within a 2 sec. as per the IEEE standard. In this paper, a solar photovoltaic DG is integrated with the main grid. A total harmonic distortion (THD) based passive method is employed here to detect the islanding in a grid tied solar PV system. In this method, changes in level of harmonics are observed in local parameters based on which detects the islanding. This method has reduced non-detection zone over other passive methods.
机译:世界正在逐步走向可再生能源资源的发电,因为这些是无穷无尽的,无污染,在性质中有丰富。由于可再生能源的优点,分布式发电机(DG)的电网互连在电力市场中增长。这种互连的主要缺点是无意的岛屿。即使网格未连接到系统,分布式发电机也继续供电,岛屿在电力系统中发生。然而,无意中的岛屿是一个无计划的岛屿,这对电力系统有害,并且在其中工作的人。因此,旨在检测无意中的岛屿,以防止其有害后果。必须在最小时间延迟中检测到岛屿即可在2秒内检测。根据IEEE标准。在本文中,太阳能光伏DG与主电网集成在一起。这里采用总基于谐波失真(THD)的无源方法,以检测网格绑定太阳能光伏系统中的岛屿。在该方法中,在基于局部参数中观察到谐波水平的变化,从而检测岛地。该方法在其他被动方法上具有减少的非检测区。

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