Influence of low-voltage electrical switching and protecting devices and parameters of electrical equipment on electricity losses in workshop power supply networks

THE PURPOSE. To develop an algorithm for estimating electricity losses, taking into account the influencing factors in the main circuits of shop power supply. To study the influence of the main parameters of electrical equipment on the equivalent resistance of the distribution busbar. METHODS. We us...

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Main Authors: E. Yu. Abdullazyanov, E. I. Gracheva, A. N. Gorlov, Z. M. Shakurova, A. G. Logacheva
Format: Article
Language:English
Published: Kazan State Power Engineering University 2021-07-01
Series:Известия высших учебных заведений: Проблемы энергетики
Subjects:
Online Access:https://www.energyret.ru/jour/article/view/1837
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author E. Yu. Abdullazyanov
E. I. Gracheva
A. N. Gorlov
Z. M. Shakurova
A. G. Logacheva
author_facet E. Yu. Abdullazyanov
E. I. Gracheva
A. N. Gorlov
Z. M. Shakurova
A. G. Logacheva
author_sort E. Yu. Abdullazyanov
collection DOAJ
description THE PURPOSE. To develop an algorithm for estimating electricity losses, taking into account the influencing factors in the main circuits of shop power supply. To study the influence of the main parameters of electrical equipment on the equivalent resistance of the distribution busbar. METHODS. We use element-by-element methods for calculating active power losses using equivalent resistance on the example of a section of the main circuit of the shop network. Factors affecting the equivalent busbar resistance, such as the root-mean-square load factor, the load graph shape factor, the resistance of the contact connections of switching devices, and the ambient temperature, are investigated. RESULTS. The values of the resistances of the branch lines from the busbar are calculated taking into account the heating of the conductors and the resistances of the circuit breakers and magnetic starters installed on the line during the element-by-element calculation. The relations in the value of the equivalent resistance of the busbar to the values of the resistances of the contact connections of low-voltage electrical devices installed on the branch lines from the busbar, the values of the resistances of the branch lines taking into account heating, the value of the resistance of the busbar and the values of the resistance due to the heating of the busbar are revealed. CONCLUSIONS. The share of each of the studied parameters in the value of the equivalent resistance of the busbar is determined. The value of the relative error in determining the equivalent resistance of the busbar depending on the number of connected electric receivers and taking into account the studied parameters is calculated. The estimation of the value of the electricity losses of the section of the main scheme of the shop network was carried out in accordance with the daily schedule of the load of consumers.
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spelling doaj.art-62d547f586774af8a59c561b347100f62023-08-02T04:57:37ZengKazan State Power Engineering UniversityИзвестия высших учебных заведений: Проблемы энергетики1998-99032021-07-01233313754Influence of low-voltage electrical switching and protecting devices and parameters of electrical equipment on electricity losses in workshop power supply networksE. Yu. Abdullazyanov0E. I. Gracheva1A. N. Gorlov2Z. M. Shakurova3A. G. Logacheva4Kazan State Power Engineering UniversityKazan State Power Engineering UniversitySouth-West State UniversityKazan State Power Engineering UniversityKazan State Power Engineering UniversityTHE PURPOSE. To develop an algorithm for estimating electricity losses, taking into account the influencing factors in the main circuits of shop power supply. To study the influence of the main parameters of electrical equipment on the equivalent resistance of the distribution busbar. METHODS. We use element-by-element methods for calculating active power losses using equivalent resistance on the example of a section of the main circuit of the shop network. Factors affecting the equivalent busbar resistance, such as the root-mean-square load factor, the load graph shape factor, the resistance of the contact connections of switching devices, and the ambient temperature, are investigated. RESULTS. The values of the resistances of the branch lines from the busbar are calculated taking into account the heating of the conductors and the resistances of the circuit breakers and magnetic starters installed on the line during the element-by-element calculation. The relations in the value of the equivalent resistance of the busbar to the values of the resistances of the contact connections of low-voltage electrical devices installed on the branch lines from the busbar, the values of the resistances of the branch lines taking into account heating, the value of the resistance of the busbar and the values of the resistance due to the heating of the busbar are revealed. CONCLUSIONS. The share of each of the studied parameters in the value of the equivalent resistance of the busbar is determined. The value of the relative error in determining the equivalent resistance of the busbar depending on the number of connected electric receivers and taking into account the studied parameters is calculated. The estimation of the value of the electricity losses of the section of the main scheme of the shop network was carried out in accordance with the daily schedule of the load of consumers.https://www.energyret.ru/jour/article/view/1837power lossesequivalent network resistance0.4 kv electrical networkresistance of contact connections of low-voltage devicesrms load factorload graph shape coefficientambient temperature
spellingShingle E. Yu. Abdullazyanov
E. I. Gracheva
A. N. Gorlov
Z. M. Shakurova
A. G. Logacheva
Influence of low-voltage electrical switching and protecting devices and parameters of electrical equipment on electricity losses in workshop power supply networks
Известия высших учебных заведений: Проблемы энергетики
power losses
equivalent network resistance
0.4 kv electrical network
resistance of contact connections of low-voltage devices
rms load factor
load graph shape coefficient
ambient temperature
title Influence of low-voltage electrical switching and protecting devices and parameters of electrical equipment on electricity losses in workshop power supply networks
title_full Influence of low-voltage electrical switching and protecting devices and parameters of electrical equipment on electricity losses in workshop power supply networks
title_fullStr Influence of low-voltage electrical switching and protecting devices and parameters of electrical equipment on electricity losses in workshop power supply networks
title_full_unstemmed Influence of low-voltage electrical switching and protecting devices and parameters of electrical equipment on electricity losses in workshop power supply networks
title_short Influence of low-voltage electrical switching and protecting devices and parameters of electrical equipment on electricity losses in workshop power supply networks
title_sort influence of low voltage electrical switching and protecting devices and parameters of electrical equipment on electricity losses in workshop power supply networks
topic power losses
equivalent network resistance
0.4 kv electrical network
resistance of contact connections of low-voltage devices
rms load factor
load graph shape coefficient
ambient temperature
url https://www.energyret.ru/jour/article/view/1837
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