Active anti-islanding protection method based on active power flow applied to VSI-based distributed generation

M. S. C. de Carvalho, R. F. Magossi, M. S. Quinalia, K. Ottoboni, R. Machado
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引用次数: 1

Abstract

The main approach of this paper is the study of active anti-islanding techniques with positive feedback in a Distributed Generation (DG) system composed of a Voltage Source Inverter (VSI) and local loads connected in parallel. In the literature, active islanding detection methods are preferentially used because they have smaller non-detection zones compared to passive techniques. However, on these methods, continuous disturbances are injected on DG's control and degrade the power quality provided by the electronic converter. In this context, an active islanding detection technique frequency-based with positive feedback and fixed gain is discussed, based on the classical techniques. This research aims to investigate the method's performance in relation to the detection time and the injection of disturbances in the DG's control system. From this analysis, an anti-islanding technique is developed to guarantee similar efficiency to the traditional method in cases of small-power flow through the grid, even as minimize disturbances in different points of the plant operation. This technique is based on the calculation of the variable gain on the positive feedback, that is inversely proportional to the active power deviation delivered or absorbed from the grid.
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基于有功潮流的主动防孤岛保护方法在vsi分布式发电中的应用
本文的主要研究方向是电压源逆变器(VSI)与本地负载并联组成的分布式发电系统中具有正反馈的主动抗孤岛技术。在文献中,主动孤岛检测方法被优先使用,因为与被动技术相比,它们具有更小的未检测区域。然而,在这些方法中,对DG的控制注入了持续的干扰,降低了电子变换器提供的电能质量。在此背景下,在经典检测技术的基础上,讨论了一种基于频率的正反馈固定增益有源孤岛检测技术。本研究旨在探讨该方法的性能与检测时间和干扰注入DG控制系统的关系。根据这一分析,开发了一种反孤岛技术,以保证在通过电网的小功率流情况下与传统方法相似的效率,即使在工厂运行的不同点上最小化干扰。该技术基于对正反馈的可变增益的计算,正反馈与电网输出或吸收的有功功率偏差成反比。
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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