A Passive Islanding Detection Technique for Grid connected Solar Photovoltaic System

Sonal C. Meshram, Niranjan Kumar
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引用次数: 3

Abstract

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.
并网太阳能光伏系统无源孤岛检测技术
世界正在逐步向可再生能源发电发展,因为这些资源取之不尽,无污染,而且在自然界中储量丰富。由于可再生能源发电的优势,分布式发电机组的并网在电力市场上日益受到重视。这种互连的主要缺点是无意的孤岛。当分布式发电机组在未接入电网的情况下仍在继续供电时,就会出现电力系统孤岛现象。然而,无意的孤岛是一种计划外的孤岛,对电力系统和在其中工作的人都是有害的。因此,必须发现无意的孤立,以防止其有害后果。孤岛必须在最小时间延迟内检测到,即按照IEEE标准在2秒内检测到。在本文中,太阳能光伏发电DG与主电网集成。本文采用一种基于总谐波失真(THD)的被动方法来检测并网太阳能光伏系统中的孤岛。该方法通过观测局部参数中谐波电平的变化来检测孤岛现象。与其他被动方法相比,该方法减少了未检测区域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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