发电配电利用过流继电器

Sarah Herul Anuar, Rasyidah Mohd Idris
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引用次数: 0

摘要

分布式发电(DG)是利用各种可再生能源生产的电力,这些能源更接近客户和负荷。配电网中分布式电源的加入改变了配电网的特性,对配电网的保护协调产生了影响。继电保护在保护电力系统免受各种问题的影响方面起着至关重要的作用。继电保护协调减少了继电器动作时间,避免了继电器故障。因此,需要对配电网是否安装分布式电源进行故障分析,以确定在径向系统安装DG对过流继电保护的影响。本研究采用ETAP 19.0版编程软件来表示一个实际的配电系统。分析的结果是发现了过流保护继电器的后果。同时,DG安装后的过流继电器可能不再可靠。因此,评估DG安装的影响是至关重要的,以验证保护区域是否可以得到适当的保护。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Overcurrent Relay for Generation Distribution Utilization
Distributed Generation (DG) is the production of electricity from a variety of renewable energy sources that is closer to the customer and load. The addition of distributed generation sources to the distribution networks alters the characteristics of distribution system and has an influence on its protection coordination. Relay protection plays a critical function in protecting a power system from various problems. Relay protection coordination reduces relay operating time and avoids relay failure. As a result, a fault analysis of the distribution network with and without distributed generation installation is required to determine the effects of installing DG at the radial system on overcurrent relay protection. The software programmed ETAP version 19.0 was used to represent an actual distribution system in this research paper. The consequences on the overcurrent protection relay were discovered as a result of the analysis. Simultaneously, the presence of an overcurrent relay following the installation of DG may no longer be dependable. As a result, it is critical to assess the effects of DG installation in order to verify that the protective zone can be properly protected.  
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