Impacts of high Solar Inverter Integration on Performance of FLIRS Function: Case Study for Danang Distribution Network

T. Hoang, Q. Tran, Hoai Son Le, Hoang Nhan Nguyen, M. Q. Duong
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引用次数: 2

Abstract

The increasing integration of distributed energy resources (DERs), especially renewable sources such as photo-voltaic (PV) systems, into distribution networks has presented several challenges to the fault location, isolation, and restoration service (FLIRS) integrated in their distribution automation system (DAS). While majority of studies reported paid attention on the issues related to knowledge- or impedance-based fault location, others only adopted simplified PV models which cannot ensure accurate presentation of actual PV fault behaviors. This paper, therefore, aims at conducting an extensive investigation on impacts of PV increased integration on the performance of the existing FLIRS. Since Danang Power Company has recently put in operation a commercial advanced FLIRS function integrated with its DAS system, considering the extremely rapid and high integration of PV systems into its medium-voltage (MV) distribution network, one of its typical highly PV-penetrated MV feeders is adopted for the study. All the network components relevant to the study are simulated with high details in the software environment PowerFactory/DIgSILENT. A total of 2700 fault scenarios is performed for the investigation purpose.
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太阳能逆变器高集成度对FLIRS功能性能的影响——以岘港配电网为例
分布式能源(DERs),特别是可再生能源如光伏(PV)系统,越来越多地集成到配电网中,这对配电自动化系统(DAS)中的故障定位、隔离和恢复服务(FLIRS)提出了一些挑战。大多数研究关注的是基于知识或阻抗的故障定位问题,而其他研究只采用简化的PV模型,不能保证准确地表示PV的实际故障行为。因此,本文旨在对PV增加集成度对现有前视红外系统性能的影响进行广泛的研究。由于岘港电力公司最近投入运行了一个集成了DAS系统的商用先进FLIRS功能,考虑到光伏系统在中压(MV)配电网中的快速和高集成度,因此采用了其典型的高PV渗透中压馈线之一进行研究。在PowerFactory/DIgSILENT软件环境中对与本研究相关的所有网络组件进行了详细的仿真。为了进行调查,总共进行了2700个故障场景。
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