Design and Optimization of an Intelligent Monitoring System for Overhead Lines Based on Common Information Model

Overhead lines act as the basic media for electricity transmission, and their stable operation remains really important to the whole power systems. As a result, real-time monitoring towards the operation status and fast discovery towards the device fault are in urgent demand. To deal with such issue...

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Main Authors: Yamin Wang, Pengfei Sai
Format: Article
Language:English
Published: IEEE 2024-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/10443393/
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author Yamin Wang
Pengfei Sai
author_facet Yamin Wang
Pengfei Sai
author_sort Yamin Wang
collection DOAJ
description Overhead lines act as the basic media for electricity transmission, and their stable operation remains really important to the whole power systems. As a result, real-time monitoring towards the operation status and fast discovery towards the device fault are in urgent demand. To deal with such issue, this work presents design and optimization of an intelligent monitoring system for overhead lines based on common information model (CIM). Firstly, tree format data structure is established using CIM, and analysis of CIM-XML data files are completed based on CIM. Then, the necessary relational tables without affecting database performance are established, in order to ensure that the mapped relational database can fully express all kinds of relationships in CIM. Finally, the abnormal temperature rise at the connection of overhead lines in traction power supply systems is selected as the object. And some simulation is conducted to evaluate performance of the designed prototype system. The results show that the system can accurately detect the voltage value from normal working state to the limit state of human safety voltage, with relatively small errors (about 3%-6%). Compared with inductive high-voltage detection technology, this system has higher detection capability. The intelligent monitoring of overhead lines based on the Common Information Model (CIM) optimizes the combined contact force characteristic values of pantographs and dynamic schemes of overhead lines, reducing the average risk loss.
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spelling doaj.art-f6a3a2057aa1410f9f410aa32469fd662024-03-06T00:00:32ZengIEEEIEEE Access2169-35362024-01-0112313863139810.1109/ACCESS.2024.336870210443393Design and Optimization of an Intelligent Monitoring System for Overhead Lines Based on Common Information ModelYamin Wang0https://orcid.org/0009-0002-6150-5240Pengfei Sai1Basic Teaching Department, Huanghe Jiaotong University, Jiaozuo, ChinaBasic Teaching Department, Huanghe Jiaotong University, Jiaozuo, ChinaOverhead lines act as the basic media for electricity transmission, and their stable operation remains really important to the whole power systems. As a result, real-time monitoring towards the operation status and fast discovery towards the device fault are in urgent demand. To deal with such issue, this work presents design and optimization of an intelligent monitoring system for overhead lines based on common information model (CIM). Firstly, tree format data structure is established using CIM, and analysis of CIM-XML data files are completed based on CIM. Then, the necessary relational tables without affecting database performance are established, in order to ensure that the mapped relational database can fully express all kinds of relationships in CIM. Finally, the abnormal temperature rise at the connection of overhead lines in traction power supply systems is selected as the object. And some simulation is conducted to evaluate performance of the designed prototype system. The results show that the system can accurately detect the voltage value from normal working state to the limit state of human safety voltage, with relatively small errors (about 3%-6%). Compared with inductive high-voltage detection technology, this system has higher detection capability. The intelligent monitoring of overhead lines based on the Common Information Model (CIM) optimizes the combined contact force characteristic values of pantographs and dynamic schemes of overhead lines, reducing the average risk loss.https://ieeexplore.ieee.org/document/10443393/Intelligent monitoringdatabase developmentoptimal designcommon information model
spellingShingle Yamin Wang
Pengfei Sai
Design and Optimization of an Intelligent Monitoring System for Overhead Lines Based on Common Information Model
IEEE Access
Intelligent monitoring
database development
optimal design
common information model
title Design and Optimization of an Intelligent Monitoring System for Overhead Lines Based on Common Information Model
title_full Design and Optimization of an Intelligent Monitoring System for Overhead Lines Based on Common Information Model
title_fullStr Design and Optimization of an Intelligent Monitoring System for Overhead Lines Based on Common Information Model
title_full_unstemmed Design and Optimization of an Intelligent Monitoring System for Overhead Lines Based on Common Information Model
title_short Design and Optimization of an Intelligent Monitoring System for Overhead Lines Based on Common Information Model
title_sort design and optimization of an intelligent monitoring system for overhead lines based on common information model
topic Intelligent monitoring
database development
optimal design
common information model
url https://ieeexplore.ieee.org/document/10443393/
work_keys_str_mv AT yaminwang designandoptimizationofanintelligentmonitoringsystemforoverheadlinesbasedoncommoninformationmodel
AT pengfeisai designandoptimizationofanintelligentmonitoringsystemforoverheadlinesbasedoncommoninformationmodel