配电网分布式电源孤岛检测方法综述

Dragan Mlakić
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引用次数: 0

摘要

摘要:配电源数量的增加带来了许多好处:系统可靠性、部分情况下的电能质量、电压稳定性、电力安全性等。增加的好处包括对网络及其用户的潜在缺点和风险,在这种情况下是消费者和其他电力来源。缺点可能是,但不限于,增加短路电流水平,故意与配电网断开,在某些情况下能源质量差,以及孤岛的风险。孤岛保护已成为电网中需要安装新的配电源时的主要要求之一,这就要求孤岛保护作为标准的配电源保护之一。许多研究者提出了一些解决孤岛问题的方法,在前人研究的基础上,形成了通信保护、被动保护、主动保护和混合保护四种主要方法。本文综述了目前在工业和实体部门中适用的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Overview of Islanding Detection Methods of Distributed Sources in Distribution Grid
Abstract Increasing number of distribution sources has many benefits: system reliability, energy quality in some cases, voltage stability, power security, etc. Adding advantages include potential disadvantages and risks for the network and its users, in this case consumers and other electricity sources. The disadvantages may be, but are not limited to increased levels of short circuit currents, deliberate disconnection from the distribution network, poor energy quality in some cases, and risk of islanding. Islanding protection has become one of the main requirements when a new distribution source needs to be installed in the network, which requires islanding protection as one of the standard distribution source protections. Many researchers have suggested some solutions to the problem of islanding and, based on previous research, four main parts have been formed: communication-based protection, passive, active, and hybrid methods of protection. This paper reviews current applicable methods in industry and the real sector.
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