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Behavior of an Inductive Loop Sensor in the Measurement of Partial Discharge Pulses with Variations in Its Separation from the Primary Conductor

Ideally, an insulation system must be capable of electrically insulating the active components of a machine or device subjected to high voltages. However, due to the presence of polluting agents or imperfections inside or on the surface of the insulation, small current pulses called partial discharg...

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Autores principales: Ardila-Rey, Jorge Alfredo, Barrueto, Aldo, Zerene, Alvaro, de Castro, Bruno Albuquerque, Ulson, José Alfredo Covolan, Mas’ud, Abdullahi Abubakar, Valdivia, Patricio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6069046/
https://www.ncbi.nlm.nih.gov/pubmed/30021944
http://dx.doi.org/10.3390/s18072324
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author Ardila-Rey, Jorge Alfredo
Barrueto, Aldo
Zerene, Alvaro
de Castro, Bruno Albuquerque
Ulson, José Alfredo Covolan
Mas’ud, Abdullahi Abubakar
Valdivia, Patricio
author_facet Ardila-Rey, Jorge Alfredo
Barrueto, Aldo
Zerene, Alvaro
de Castro, Bruno Albuquerque
Ulson, José Alfredo Covolan
Mas’ud, Abdullahi Abubakar
Valdivia, Patricio
author_sort Ardila-Rey, Jorge Alfredo
collection PubMed
description Ideally, an insulation system must be capable of electrically insulating the active components of a machine or device subjected to high voltages. However, due to the presence of polluting agents or imperfections inside or on the surface of the insulation, small current pulses called partial discharges (PDs) are common, which partially short-circuit the insulation and cause it to lose its insulating properties, and thus its insulation capacity, over time. In some cases, measurements of this phenomenon are limited by the type of sensor used; if it is not adequate, it can distort the obtained results, which can lead to a misdiagnosis of the state of the device. The inductive loop sensor has experimentally been demonstrated to be capable of properly measuring different types of PDs. However, because of its current design, there are several practical limitations on its use in real devices or environments. An example is the presence of a primary conductor located at a fixed distance from the sensor, through which PD pulses must flow for the sensor to capture them. In this article, the sensor’s behavior is studied at different separation distances from the line through which the PD pulses flow. In addition, the measuring capacity of the sensor is tested by removing the presence of the primary conductor and placing the sensor directly over the line through which the PD pulses of a real device flow.
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spelling pubmed-60690462018-08-07 Behavior of an Inductive Loop Sensor in the Measurement of Partial Discharge Pulses with Variations in Its Separation from the Primary Conductor Ardila-Rey, Jorge Alfredo Barrueto, Aldo Zerene, Alvaro de Castro, Bruno Albuquerque Ulson, José Alfredo Covolan Mas’ud, Abdullahi Abubakar Valdivia, Patricio Sensors (Basel) Article Ideally, an insulation system must be capable of electrically insulating the active components of a machine or device subjected to high voltages. However, due to the presence of polluting agents or imperfections inside or on the surface of the insulation, small current pulses called partial discharges (PDs) are common, which partially short-circuit the insulation and cause it to lose its insulating properties, and thus its insulation capacity, over time. In some cases, measurements of this phenomenon are limited by the type of sensor used; if it is not adequate, it can distort the obtained results, which can lead to a misdiagnosis of the state of the device. The inductive loop sensor has experimentally been demonstrated to be capable of properly measuring different types of PDs. However, because of its current design, there are several practical limitations on its use in real devices or environments. An example is the presence of a primary conductor located at a fixed distance from the sensor, through which PD pulses must flow for the sensor to capture them. In this article, the sensor’s behavior is studied at different separation distances from the line through which the PD pulses flow. In addition, the measuring capacity of the sensor is tested by removing the presence of the primary conductor and placing the sensor directly over the line through which the PD pulses of a real device flow. MDPI 2018-07-18 /pmc/articles/PMC6069046/ /pubmed/30021944 http://dx.doi.org/10.3390/s18072324 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ardila-Rey, Jorge Alfredo
Barrueto, Aldo
Zerene, Alvaro
de Castro, Bruno Albuquerque
Ulson, José Alfredo Covolan
Mas’ud, Abdullahi Abubakar
Valdivia, Patricio
Behavior of an Inductive Loop Sensor in the Measurement of Partial Discharge Pulses with Variations in Its Separation from the Primary Conductor
title Behavior of an Inductive Loop Sensor in the Measurement of Partial Discharge Pulses with Variations in Its Separation from the Primary Conductor
title_full Behavior of an Inductive Loop Sensor in the Measurement of Partial Discharge Pulses with Variations in Its Separation from the Primary Conductor
title_fullStr Behavior of an Inductive Loop Sensor in the Measurement of Partial Discharge Pulses with Variations in Its Separation from the Primary Conductor
title_full_unstemmed Behavior of an Inductive Loop Sensor in the Measurement of Partial Discharge Pulses with Variations in Its Separation from the Primary Conductor
title_short Behavior of an Inductive Loop Sensor in the Measurement of Partial Discharge Pulses with Variations in Its Separation from the Primary Conductor
title_sort behavior of an inductive loop sensor in the measurement of partial discharge pulses with variations in its separation from the primary conductor
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6069046/
https://www.ncbi.nlm.nih.gov/pubmed/30021944
http://dx.doi.org/10.3390/s18072324
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