Effect of Mains Communication Voltage on Induction Motors

Power system lines are not only used for electric energy transfer, but also for the transmission of a communication signal, called the mains communication voltage. The mains communication voltage is in the form of a telegram code, superimposed on the fundamental voltage harmonic. From the point of...

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Main Authors: Piotr Gnaciński, Damian Hallmann
Format: Article
Language:English
Published: Gdynia Maritime University 2024-12-01
Series:Scientific Journal of Gdynia Maritime University
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Online Access:https://ojs.umg.edu.pl/index.php/sjgmu/article/view/454
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author Piotr Gnaciński
Damian Hallmann
author_facet Piotr Gnaciński
Damian Hallmann
author_sort Piotr Gnaciński
collection DOAJ
description Power system lines are not only used for electric energy transfer, but also for the transmission of a communication signal, called the mains communication voltage. The mains communication voltage is in the form of a telegram code, superimposed on the fundamental voltage harmonic. From the point of view of power quality, mains communication voltage should be considered as interharmonics – components of frequency being not equal to the integer multiple of the fundamental frequency. Interharmonics have a negative impact on various energy receivers, including rotating machinery. This study is devoted to the effect of the mains communication voltage on an induction motor. The results of numerical computations on currents and electromagnetic torque pulsations are presented for a four-pole cage induction motor of rated power 3 kW.
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publisher Gdynia Maritime University
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series Scientific Journal of Gdynia Maritime University
spelling doaj-art-714b84fbd2f54e45baf62a587ec322c52024-12-19T09:00:32ZengGdynia Maritime UniversityScientific Journal of Gdynia Maritime University2657-58412657-69882024-12-0113210.26408/132.02Effect of Mains Communication Voltage on Induction MotorsPiotr Gnaciński0Damian Hallmann1Gdynia Maritime University, Morska 81–87, 81–225 Gdynia, Poland, Faculty of Electrical Engineering, Department of Marine Electrical Power EngineeringGdynia Maritime University, Morska 81–87, 81–225 Gdynia, Poland, Faculty of Electrical Engineering, Department of Marine Electrical Power Engineering Power system lines are not only used for electric energy transfer, but also for the transmission of a communication signal, called the mains communication voltage. The mains communication voltage is in the form of a telegram code, superimposed on the fundamental voltage harmonic. From the point of view of power quality, mains communication voltage should be considered as interharmonics – components of frequency being not equal to the integer multiple of the fundamental frequency. Interharmonics have a negative impact on various energy receivers, including rotating machinery. This study is devoted to the effect of the mains communication voltage on an induction motor. The results of numerical computations on currents and electromagnetic torque pulsations are presented for a four-pole cage induction motor of rated power 3 kW. https://ojs.umg.edu.pl/index.php/sjgmu/article/view/454interharmonics, power quality, cage induction motor, mains communication voltage, ripple control, voltage waveform distortions
spellingShingle Piotr Gnaciński
Damian Hallmann
Effect of Mains Communication Voltage on Induction Motors
Scientific Journal of Gdynia Maritime University
interharmonics, power quality, cage induction motor, mains communication voltage, ripple control, voltage waveform distortions
title Effect of Mains Communication Voltage on Induction Motors
title_full Effect of Mains Communication Voltage on Induction Motors
title_fullStr Effect of Mains Communication Voltage on Induction Motors
title_full_unstemmed Effect of Mains Communication Voltage on Induction Motors
title_short Effect of Mains Communication Voltage on Induction Motors
title_sort effect of mains communication voltage on induction motors
topic interharmonics, power quality, cage induction motor, mains communication voltage, ripple control, voltage waveform distortions
url https://ojs.umg.edu.pl/index.php/sjgmu/article/view/454
work_keys_str_mv AT piotrgnacinski effectofmainscommunicationvoltageoninductionmotors
AT damianhallmann effectofmainscommunicationvoltageoninductionmotors