Feeder Topology Configuration and Application Based on IEC 61850
Distribution automation (DA) and Internet of Things (IoT) all need the topology information of power distribution network to support some applications, such as fault diagnosis, network reconfiguration and optimization. IEC 61850 is a general communication model and standard for information exchange...
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doaj-6814dd50fa334f40915cb4f7564adf232021-07-23T13:38:57ZengMDPI AGEnergies1996-10732021-07-01144230423010.3390/en14144230Feeder Topology Configuration and Application Based on IEC 61850Haotian Ge0Bingyin Xu1Xinhui Zhang2Yongjian Bi3Zida Zhao4Electrical Engineering, Shandong University of Technology, Zibo 255000, ChinaElectrical Engineering, Shandong University of Technology, Zibo 255000, ChinaElectrical Engineering, Shandong University of Technology, Zibo 255000, ChinaElectrical Engineering, Shandong University of Technology, Zibo 255000, ChinaElectrical Engineering, Shandong University of Technology, Zibo 255000, ChinaDistribution automation (DA) and Internet of Things (IoT) all need the topology information of power distribution network to support some applications, such as fault diagnosis, network reconfiguration and optimization. IEC 61850 is a general communication model and standard for information exchange between intelligent electronic devices (IEDs). However, it has no mechanism for feeder topology information exchange. This paper solves this problem by developing the corresponding information model. Firstly, a feeder model is established as a container of the equipment along a distribution line. Secondly, logical models, such as terminal and connection nodes, are added to describe the physical connection relationship between the electrical equipment. Taking a circuit breaker as an example, this paper introduces how to add the terminal attribute to an existing logical node (XCBR). The physical connection between the circuit breaker and other electrical equipment is described by adding the logic node LCNN. Then, a new logical node LTPN is added to describe the logical connection between the devices. A new logical node, FTPA, is added to describe the status of the topology analysis and the topology results. Based on these new logical nodes, this paper proposes the mechanism of topology information exchange between IEDs. Three IEDs and the IEEE 13-node model are used to build an experimental environment. The result verifies the effectiveness of this method. More distributed applications can be used to test the validity and interoperability of the proposed model.https://www.mdpi.com/1996-1073/14/14/4230feeder topologyIEC 61850information modelpower distribution network |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Haotian Ge Bingyin Xu Xinhui Zhang Yongjian Bi Zida Zhao |
spellingShingle |
Haotian Ge Bingyin Xu Xinhui Zhang Yongjian Bi Zida Zhao Feeder Topology Configuration and Application Based on IEC 61850 Energies feeder topology IEC 61850 information model power distribution network |
author_facet |
Haotian Ge Bingyin Xu Xinhui Zhang Yongjian Bi Zida Zhao |
author_sort |
Haotian Ge |
title |
Feeder Topology Configuration and Application Based on IEC 61850 |
title_short |
Feeder Topology Configuration and Application Based on IEC 61850 |
title_full |
Feeder Topology Configuration and Application Based on IEC 61850 |
title_fullStr |
Feeder Topology Configuration and Application Based on IEC 61850 |
title_full_unstemmed |
Feeder Topology Configuration and Application Based on IEC 61850 |
title_sort |
feeder topology configuration and application based on iec 61850 |
publisher |
MDPI AG |
series |
Energies |
issn |
1996-1073 |
publishDate |
2021-07-01 |
description |
Distribution automation (DA) and Internet of Things (IoT) all need the topology information of power distribution network to support some applications, such as fault diagnosis, network reconfiguration and optimization. IEC 61850 is a general communication model and standard for information exchange between intelligent electronic devices (IEDs). However, it has no mechanism for feeder topology information exchange. This paper solves this problem by developing the corresponding information model. Firstly, a feeder model is established as a container of the equipment along a distribution line. Secondly, logical models, such as terminal and connection nodes, are added to describe the physical connection relationship between the electrical equipment. Taking a circuit breaker as an example, this paper introduces how to add the terminal attribute to an existing logical node (XCBR). The physical connection between the circuit breaker and other electrical equipment is described by adding the logic node LCNN. Then, a new logical node LTPN is added to describe the logical connection between the devices. A new logical node, FTPA, is added to describe the status of the topology analysis and the topology results. Based on these new logical nodes, this paper proposes the mechanism of topology information exchange between IEDs. Three IEDs and the IEEE 13-node model are used to build an experimental environment. The result verifies the effectiveness of this method. More distributed applications can be used to test the validity and interoperability of the proposed model. |
topic |
feeder topology IEC 61850 information model power distribution network |
url |
https://www.mdpi.com/1996-1073/14/14/4230 |
work_keys_str_mv |
AT haotiange feedertopologyconfigurationandapplicationbasedoniec61850 AT bingyinxu feedertopologyconfigurationandapplicationbasedoniec61850 AT xinhuizhang feedertopologyconfigurationandapplicationbasedoniec61850 AT yongjianbi feedertopologyconfigurationandapplicationbasedoniec61850 AT zidazhao feedertopologyconfigurationandapplicationbasedoniec61850 |
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1721288570258325504 |