5G Communication Based Distributed Fault Recovery Scheme of Active Distribution Network

As more and more distributed power sources are connected to low and medium voltage distribution networks, the traditional single-ended passive distribution networks have evolved into multi- terminal, multi-source active distribution networks. When distributed generations with high permeability are c...

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Main Authors: Li Xin, Gao Houlei, Yuan Tong, Xu Bin
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/45/e3sconf_iceeb2020_01039.pdf
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spelling doaj-556d7775ef8747158ab1be09c15e58812021-04-02T11:47:31ZengEDP SciencesE3S Web of Conferences2267-12422020-01-011850103910.1051/e3sconf/202018501039e3sconf_iceeb2020_010395G Communication Based Distributed Fault Recovery Scheme of Active Distribution NetworkLi XinGao HouleiYuan TongXu BinAs more and more distributed power sources are connected to low and medium voltage distribution networks, the traditional single-ended passive distribution networks have evolved into multi- terminal, multi-source active distribution networks. When distributed generations with high permeability are connected to a distribution network, the structure and power flow of this network will change significantly, thus the original fault detection method and reclosing scheme may be challenged, which may cause incorrect action of protection or failure of reclosing. On basis of that, this paper proposes an active distribution network fault recovery scheme based on 5G wireless communication, in which the topology recognition technology and smart terminal units with peer-to-peer communication capability are applied. To prove the method’s feasibility, delay of 5G communication is analysed and tested online. In addition, a model of 10 kV active distribution network is built on Real Time Digital Simulation system. Principle investigation and simulation indicate that the proposed scheme can adapt to the change of network structure and implement the fault self-healing quickly.https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/45/e3sconf_iceeb2020_01039.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Li Xin
Gao Houlei
Yuan Tong
Xu Bin
spellingShingle Li Xin
Gao Houlei
Yuan Tong
Xu Bin
5G Communication Based Distributed Fault Recovery Scheme of Active Distribution Network
E3S Web of Conferences
author_facet Li Xin
Gao Houlei
Yuan Tong
Xu Bin
author_sort Li Xin
title 5G Communication Based Distributed Fault Recovery Scheme of Active Distribution Network
title_short 5G Communication Based Distributed Fault Recovery Scheme of Active Distribution Network
title_full 5G Communication Based Distributed Fault Recovery Scheme of Active Distribution Network
title_fullStr 5G Communication Based Distributed Fault Recovery Scheme of Active Distribution Network
title_full_unstemmed 5G Communication Based Distributed Fault Recovery Scheme of Active Distribution Network
title_sort 5g communication based distributed fault recovery scheme of active distribution network
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2020-01-01
description As more and more distributed power sources are connected to low and medium voltage distribution networks, the traditional single-ended passive distribution networks have evolved into multi- terminal, multi-source active distribution networks. When distributed generations with high permeability are connected to a distribution network, the structure and power flow of this network will change significantly, thus the original fault detection method and reclosing scheme may be challenged, which may cause incorrect action of protection or failure of reclosing. On basis of that, this paper proposes an active distribution network fault recovery scheme based on 5G wireless communication, in which the topology recognition technology and smart terminal units with peer-to-peer communication capability are applied. To prove the method’s feasibility, delay of 5G communication is analysed and tested online. In addition, a model of 10 kV active distribution network is built on Real Time Digital Simulation system. Principle investigation and simulation indicate that the proposed scheme can adapt to the change of network structure and implement the fault self-healing quickly.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/45/e3sconf_iceeb2020_01039.pdf
work_keys_str_mv AT lixin 5gcommunicationbaseddistributedfaultrecoveryschemeofactivedistributionnetwork
AT gaohoulei 5gcommunicationbaseddistributedfaultrecoveryschemeofactivedistributionnetwork
AT yuantong 5gcommunicationbaseddistributedfaultrecoveryschemeofactivedistributionnetwork
AT xubin 5gcommunicationbaseddistributedfaultrecoveryschemeofactivedistributionnetwork
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