Continuous Monitoring of Transmission Lines Sag through Angular Measurements Performed with Wireless Sensors

High voltage transmission lines are crucial infrastructure that are demanded to supply an increasing request of electric energy. In the design and operations stages, sag represents a key parameter which must respect specific constraints. Therefore, sag continuous monitoring is becoming essential to...

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Main Authors: Federico Zanelli, Marco Mauri, Francesco Castelli-Dezza, Francesco Ripamonti
Format: Article
Language:English
Published: MDPI AG 2023-03-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/13/5/3175
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author Federico Zanelli
Marco Mauri
Francesco Castelli-Dezza
Francesco Ripamonti
author_facet Federico Zanelli
Marco Mauri
Francesco Castelli-Dezza
Francesco Ripamonti
author_sort Federico Zanelli
collection DOAJ
description High voltage transmission lines are crucial infrastructure that are demanded to supply an increasing request of electric energy. In the design and operations stages, sag represents a key parameter which must respect specific constraints. Therefore, sag continuous monitoring is becoming essential to guarantee the correct functioning of the line and to optimize the current flow. Different solutions have been proposed in literature, but they are still lacking efficiency and reliability to be used during operations. In this work, a simple and efficient method, based on conductor parabolic approximation, is developed and used to compute the sag through the measurement of the conductor slope in proximity of the span extremities. The angular measurements are obtained using wireless sensors equipped with MEMS accelerometers developed by authors and employed for HVTL conductor vibration monitoring. The proposed method and its implementation in the monitoring system was tested in a laboratory environment on a real conductor. The values of sag at different tensile loads have been obtained and compared to the measured ones, with satisfactory results according to the accelerometer resolution. The solution developed therefore represents a complete and innovative tool to be adopted in the field to monitor, in real time, both the sag and the level of vibration due to the wind action, allowing to increase the performance reliability of HVTL.
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spelling doaj.art-b512a76a23184426a30f7a7657b12ad72023-11-17T07:20:19ZengMDPI AGApplied Sciences2076-34172023-03-01135317510.3390/app13053175Continuous Monitoring of Transmission Lines Sag through Angular Measurements Performed with Wireless SensorsFederico Zanelli0Marco Mauri1Francesco Castelli-Dezza2Francesco Ripamonti3Department of Mechanical Engineering, Politecnico di Milano, 20156 Milan, ItalyDepartment of Mechanical Engineering, Politecnico di Milano, 20156 Milan, ItalyDepartment of Mechanical Engineering, Politecnico di Milano, 20156 Milan, ItalyDepartment of Mechanical Engineering, Politecnico di Milano, 20156 Milan, ItalyHigh voltage transmission lines are crucial infrastructure that are demanded to supply an increasing request of electric energy. In the design and operations stages, sag represents a key parameter which must respect specific constraints. Therefore, sag continuous monitoring is becoming essential to guarantee the correct functioning of the line and to optimize the current flow. Different solutions have been proposed in literature, but they are still lacking efficiency and reliability to be used during operations. In this work, a simple and efficient method, based on conductor parabolic approximation, is developed and used to compute the sag through the measurement of the conductor slope in proximity of the span extremities. The angular measurements are obtained using wireless sensors equipped with MEMS accelerometers developed by authors and employed for HVTL conductor vibration monitoring. The proposed method and its implementation in the monitoring system was tested in a laboratory environment on a real conductor. The values of sag at different tensile loads have been obtained and compared to the measured ones, with satisfactory results according to the accelerometer resolution. The solution developed therefore represents a complete and innovative tool to be adopted in the field to monitor, in real time, both the sag and the level of vibration due to the wind action, allowing to increase the performance reliability of HVTL.https://www.mdpi.com/2076-3417/13/5/3175transmission linescontinuous monitoringsmart gridsagwireless sensorsMEMS accelerometer
spellingShingle Federico Zanelli
Marco Mauri
Francesco Castelli-Dezza
Francesco Ripamonti
Continuous Monitoring of Transmission Lines Sag through Angular Measurements Performed with Wireless Sensors
Applied Sciences
transmission lines
continuous monitoring
smart grid
sag
wireless sensors
MEMS accelerometer
title Continuous Monitoring of Transmission Lines Sag through Angular Measurements Performed with Wireless Sensors
title_full Continuous Monitoring of Transmission Lines Sag through Angular Measurements Performed with Wireless Sensors
title_fullStr Continuous Monitoring of Transmission Lines Sag through Angular Measurements Performed with Wireless Sensors
title_full_unstemmed Continuous Monitoring of Transmission Lines Sag through Angular Measurements Performed with Wireless Sensors
title_short Continuous Monitoring of Transmission Lines Sag through Angular Measurements Performed with Wireless Sensors
title_sort continuous monitoring of transmission lines sag through angular measurements performed with wireless sensors
topic transmission lines
continuous monitoring
smart grid
sag
wireless sensors
MEMS accelerometer
url https://www.mdpi.com/2076-3417/13/5/3175
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