Optimal layout model of feeder automation equipment oriented to the type of fault detection and local action
Abstract In feeder automation transformation there are difficulties in equipment and location selection. To help with this, an optimal layout model of feeder automation equipment oriented to the type of fault detection and local action is proposed. It analyzes the coordination relationship of the th...
Main Authors: | , , |
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Format: | Article |
Language: | English |
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SpringerOpen
2023-01-01
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Series: | Protection and Control of Modern Power Systems |
Subjects: | |
Online Access: | https://doi.org/10.1186/s41601-022-00275-6 |
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author | Ruizhi Chen Xihong Li Yanbo Chen |
author_facet | Ruizhi Chen Xihong Li Yanbo Chen |
author_sort | Ruizhi Chen |
collection | DOAJ |
description | Abstract In feeder automation transformation there are difficulties in equipment and location selection. To help with this, an optimal layout model of feeder automation equipment oriented to the type of fault detection and local action is proposed. It analyzes the coordination relationship of the three most common types of automation equipment, i.e., fault indicator, over-current trip switch and non-voltage trip switch in the fault handling process, and the explicit expressions of power outage time caused by a fault on different layouts of the above three types of equipment are given. Given constraints of power supply reliability and the goal of minimizing the sum of equipment-related capital investment and power interruption cost, a mixed-integer quadratic programming model for optimal layout is established, in which the functional failure probability of equipment is linearized using the $$3\delta$$ 3 δ principle in statistics. Finally, the basic characteristics of the proposed model are illustrated by different scenarios on the IEEE RBTS-BUS6 system. It can not only take into account fault location and fault isolation to enhance user power consumption perception, but also can guide precise investment to improve the operational quality and efficiency of a power company. |
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id | doaj.art-dfe3eabb7d0244e08710b5d4cea0fc86 |
institution | Directory Open Access Journal |
issn | 2367-2617 2367-0983 |
language | English |
last_indexed | 2024-04-10T22:47:37Z |
publishDate | 2023-01-01 |
publisher | SpringerOpen |
record_format | Article |
series | Protection and Control of Modern Power Systems |
spelling | doaj.art-dfe3eabb7d0244e08710b5d4cea0fc862023-01-15T12:14:41ZengSpringerOpenProtection and Control of Modern Power Systems2367-26172367-09832023-01-018111510.1186/s41601-022-00275-6Optimal layout model of feeder automation equipment oriented to the type of fault detection and local actionRuizhi Chen0Xihong Li1Yanbo Chen2Bishan Power Supply Branch of Chongqing Electric Power CompanyBishan Power Supply Branch of Chongqing Electric Power CompanyNorth China Electric Power UniversityAbstract In feeder automation transformation there are difficulties in equipment and location selection. To help with this, an optimal layout model of feeder automation equipment oriented to the type of fault detection and local action is proposed. It analyzes the coordination relationship of the three most common types of automation equipment, i.e., fault indicator, over-current trip switch and non-voltage trip switch in the fault handling process, and the explicit expressions of power outage time caused by a fault on different layouts of the above three types of equipment are given. Given constraints of power supply reliability and the goal of minimizing the sum of equipment-related capital investment and power interruption cost, a mixed-integer quadratic programming model for optimal layout is established, in which the functional failure probability of equipment is linearized using the $$3\delta$$ 3 δ principle in statistics. Finally, the basic characteristics of the proposed model are illustrated by different scenarios on the IEEE RBTS-BUS6 system. It can not only take into account fault location and fault isolation to enhance user power consumption perception, but also can guide precise investment to improve the operational quality and efficiency of a power company.https://doi.org/10.1186/s41601-022-00275-6Feeder automationEquipment layout optimizationPower outage timeExplicit expressionMixed integer quadratic programming modelFunctional failure probability of equipment |
spellingShingle | Ruizhi Chen Xihong Li Yanbo Chen Optimal layout model of feeder automation equipment oriented to the type of fault detection and local action Protection and Control of Modern Power Systems Feeder automation Equipment layout optimization Power outage time Explicit expression Mixed integer quadratic programming model Functional failure probability of equipment |
title | Optimal layout model of feeder automation equipment oriented to the type of fault detection and local action |
title_full | Optimal layout model of feeder automation equipment oriented to the type of fault detection and local action |
title_fullStr | Optimal layout model of feeder automation equipment oriented to the type of fault detection and local action |
title_full_unstemmed | Optimal layout model of feeder automation equipment oriented to the type of fault detection and local action |
title_short | Optimal layout model of feeder automation equipment oriented to the type of fault detection and local action |
title_sort | optimal layout model of feeder automation equipment oriented to the type of fault detection and local action |
topic | Feeder automation Equipment layout optimization Power outage time Explicit expression Mixed integer quadratic programming model Functional failure probability of equipment |
url | https://doi.org/10.1186/s41601-022-00275-6 |
work_keys_str_mv | AT ruizhichen optimallayoutmodeloffeederautomationequipmentorientedtothetypeoffaultdetectionandlocalaction AT xihongli optimallayoutmodeloffeederautomationequipmentorientedtothetypeoffaultdetectionandlocalaction AT yanbochen optimallayoutmodeloffeederautomationequipmentorientedtothetypeoffaultdetectionandlocalaction |