Model of own harmonic conductor oscillations for tasks of monitoring the status of airline power transmission lines

The article substantiates the relevance of the inspection of overhead power lines by determining the mechanical loads of the conductors. The conductor sways under the action of external loads and variable internal mechanical loads. The conductor behaves in span like a pendulum. Using the inclinometr...

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Main Authors: D. A. Yaroslavskiy, V. V. Nguyen, M. F. Sadykov, M. P. Goryachev, A. A. Naumov
Format: Article
Language:English
Published: Kazan State Power Engineering University 2020-09-01
Series:Известия высших учебных заведений: Проблемы энергетики
Subjects:
Online Access:https://www.energyret.ru/jour/article/view/1364
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author D. A. Yaroslavskiy
V. V. Nguyen
M. F. Sadykov
M. P. Goryachev
A. A. Naumov
author_facet D. A. Yaroslavskiy
V. V. Nguyen
M. F. Sadykov
M. P. Goryachev
A. A. Naumov
author_sort D. A. Yaroslavskiy
collection DOAJ
description The article substantiates the relevance of the inspection of overhead power lines by determining the mechanical loads of the conductors. The conductor sways under the action of external loads and variable internal mechanical loads. The conductor behaves in span like a pendulum. Using the inclinometric method, it is possible to determine the deviations of the conductor in space from its equilibrium position. Having restored the geometry of the conductor in the span of an overhead power line, mechanical loads can be determined. A model of the harmonic oscillations of the conductor in flight is derived to assess the mechanical loads of the conductor overhead power lines. This mathematical model is based on mathematical models of a flexible thread and a model of a physical pendulum. A conductor is a physical pendulum, where the conductor acts as the body, and in the role of the fixed axis of rotation, a straight line passing through the suspension points of the conductor. The developed model allows you to determine the arrow of its sag from the period of oscillations of the conductor in the span. The article considers algorithms for calculating the conductor sag arrows for two cases: the conductor suspension points are at the same height; conductor suspension points are at different heights. A theoretical calculation is given for a model of a span overhead power line with an estimate of the sensitivity of the developed model and its error in determining the sag of the conductor. Using the arrow of the conductor sag, you can restore its geometry, and hence the mechanical load of the conductor. Therefore, knowing the initial geometric parameters of the span of the overhead power line and the current period of the conductor’s oscillations, it is possible to examine its current state.
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spelling doaj.art-0fff44e7bd2a4727a70412fd44b923212023-08-02T04:57:45ZengKazan State Power Engineering UniversityИзвестия высших учебных заведений: Проблемы энергетики1998-99032020-09-012239710610.30724/1998-9903-2020-22-3-97-106679Model of own harmonic conductor oscillations for tasks of monitoring the status of airline power transmission linesD. A. Yaroslavskiy0V. V. Nguyen1M. F. Sadykov2M. P. Goryachev3A. A. Naumov4Kazan State Power Engineering UniversityKazan State Power Engineering UniversityKazan State Power Engineering UniversityKazan State Power Engineering UniversityKazan State Power Engineering UniversityThe article substantiates the relevance of the inspection of overhead power lines by determining the mechanical loads of the conductors. The conductor sways under the action of external loads and variable internal mechanical loads. The conductor behaves in span like a pendulum. Using the inclinometric method, it is possible to determine the deviations of the conductor in space from its equilibrium position. Having restored the geometry of the conductor in the span of an overhead power line, mechanical loads can be determined. A model of the harmonic oscillations of the conductor in flight is derived to assess the mechanical loads of the conductor overhead power lines. This mathematical model is based on mathematical models of a flexible thread and a model of a physical pendulum. A conductor is a physical pendulum, where the conductor acts as the body, and in the role of the fixed axis of rotation, a straight line passing through the suspension points of the conductor. The developed model allows you to determine the arrow of its sag from the period of oscillations of the conductor in the span. The article considers algorithms for calculating the conductor sag arrows for two cases: the conductor suspension points are at the same height; conductor suspension points are at different heights. A theoretical calculation is given for a model of a span overhead power line with an estimate of the sensitivity of the developed model and its error in determining the sag of the conductor. Using the arrow of the conductor sag, you can restore its geometry, and hence the mechanical load of the conductor. Therefore, knowing the initial geometric parameters of the span of the overhead power line and the current period of the conductor’s oscillations, it is possible to examine its current state.https://www.energyret.ru/jour/article/view/1364overhead power transmission linesmonitoring of power transmission linessagconductor’s oscillationsmechanical loadsconductor
spellingShingle D. A. Yaroslavskiy
V. V. Nguyen
M. F. Sadykov
M. P. Goryachev
A. A. Naumov
Model of own harmonic conductor oscillations for tasks of monitoring the status of airline power transmission lines
Известия высших учебных заведений: Проблемы энергетики
overhead power transmission lines
monitoring of power transmission lines
sag
conductor’s oscillations
mechanical loads
conductor
title Model of own harmonic conductor oscillations for tasks of monitoring the status of airline power transmission lines
title_full Model of own harmonic conductor oscillations for tasks of monitoring the status of airline power transmission lines
title_fullStr Model of own harmonic conductor oscillations for tasks of monitoring the status of airline power transmission lines
title_full_unstemmed Model of own harmonic conductor oscillations for tasks of monitoring the status of airline power transmission lines
title_short Model of own harmonic conductor oscillations for tasks of monitoring the status of airline power transmission lines
title_sort model of own harmonic conductor oscillations for tasks of monitoring the status of airline power transmission lines
topic overhead power transmission lines
monitoring of power transmission lines
sag
conductor’s oscillations
mechanical loads
conductor
url https://www.energyret.ru/jour/article/view/1364
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AT mfsadykov modelofownharmonicconductoroscillationsfortasksofmonitoringthestatusofairlinepowertransmissionlines
AT mpgoryachev modelofownharmonicconductoroscillationsfortasksofmonitoringthestatusofairlinepowertransmissionlines
AT aanaumov modelofownharmonicconductoroscillationsfortasksofmonitoringthestatusofairlinepowertransmissionlines