A Passive Islanding Detection Technique for Grid-Connected Photovoltaic Inverters

Amit Singh, R. Bhatia, S. Chanana, Pankaj Gupta
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引用次数: 3

Abstract

One of the problem associated with grid connected distribution generator is islanding, which occurs when a disconnected distribution generator is energized unintentionally. If islanding is not detected quickly it could pose a serious threat to the distribution generator and to the personnel working. The islanding methods that are available use system parameter to distinguish between islanding and non-islanding condition. This paper presents a passive islanding detection method based on the difference of ripple content of voltage at the point of common coupling during non-islanding and islanding period. Islanding is detected whenever the ripple content of the voltage at point of common coupling breaches the set threshold level for fixed period of time. This method distinguishes the islanding condition from the other grid disturbances efficiently and detects whenever an islanding occurs. The various islanding and non-islanding condition were simulated to test the working of this method. It was inferred that the proposed method did not exhibit any non-detection zone and was able to detect all types of islanding cases within 300ms of the allowed delay time.Theoretical analysis and simulation results are presented to validate the proposed method.
并网光伏逆变器无源孤岛检测技术
与并网配电发电机相关的问题之一是孤岛,当断开的配电发电机无意中通电时就会发生孤岛。如果不能迅速发现孤岛,它可能对配电发电机和工作人员构成严重威胁。现有的孤岛方法利用系统参数来区分孤岛状态和非孤岛状态。提出了一种基于非孤岛期和孤岛期共耦合点电压纹波含量差异的被动孤岛检测方法。每当在公共耦合点的电压纹波含量超过设定的阈值水平一段固定时间时,检测到孤岛。该方法能有效地将孤岛条件与其他网格扰动区分开来,并在孤岛发生时进行检测。通过对各种孤岛和非孤岛工况的模拟,验证了该方法的有效性。可以推断,所提出的方法不存在任何未检测区,并且能够在允许的延迟时间的300ms内检测到所有类型的孤岛病例。理论分析和仿真结果验证了该方法的有效性。
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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