Fryze reactive power of trams in effective stochastic recuperation processes

Urban electric transport system, particularly tram systems, is not a direct current system not only in traction mode but in regenerative modes as both voltage on a collector and regenerative current are stochastic abruptly variable processes. The above- mentioned facts determine availability of Fryz...

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Main Authors: Bondar Oleh, Kostin Mikola, Mukha Andrei, Sheikina Olha, Levytska Svitlana
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:MATEC Web of Conferences
Online Access:https://www.matec-conferences.org/articles/matecconf/pdf/2019/43/matecconf_eot18_01006.pdf
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spelling doaj-588b031a60834576809f5724835fa50f2021-02-02T07:02:47ZengEDP SciencesMATEC Web of Conferences2261-236X2019-01-012940100610.1051/matecconf/201929401006matecconf_eot18_01006Fryze reactive power of trams in effective stochastic recuperation processesBondar Oleh0Kostin Mikola1Mukha Andrei2Sheikina Olha3Levytska Svitlana4Dnipro National University of Railway Transport named after Academician V. LazaryanDnipro National University of Railway Transport named after Academician V. LazaryanDnipro National University of Railway Transport named after Academician V. LazaryanDnipro National University of Railway Transport named after Academician V. LazaryanPrydneprovsk state Academy of Civil Engineering and ArchitectureUrban electric transport system, particularly tram systems, is not a direct current system not only in traction mode but in regenerative modes as both voltage on a collector and regenerative current are stochastic abruptly variable processes. The above- mentioned facts determine availability of Fryze’s reactive power in this system that flows from a railway substation to trams, leads to incidental losses of energy and significantly reduces its quality. So evaluation of power effectiveness of the system in electrical trams operation is impossible without determining the level of reactive power in this system. We have analytical expression of reactive power by Fryze. Numerical calculations for trams type T3D and T4D in regenerative braking modes are done. Probabilistic statistical data processing operation of reactive power expressions is done. It is determined that reactive power changes in the limit of 10…100 kilo-volt ampere reactive with mathematical expectation – 37,0 kilo-volt ampere reactive. Statistical allocation of random power values are different. Numerical calculations of incidental losses, energy of recuperation are done and they range supplementary – 20% from total losses. It is stated that coefficient of reactive power of system route of trams is exceeding permissible value 0,25.https://www.matec-conferences.org/articles/matecconf/pdf/2019/43/matecconf_eot18_01006.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Bondar Oleh
Kostin Mikola
Mukha Andrei
Sheikina Olha
Levytska Svitlana
spellingShingle Bondar Oleh
Kostin Mikola
Mukha Andrei
Sheikina Olha
Levytska Svitlana
Fryze reactive power of trams in effective stochastic recuperation processes
MATEC Web of Conferences
author_facet Bondar Oleh
Kostin Mikola
Mukha Andrei
Sheikina Olha
Levytska Svitlana
author_sort Bondar Oleh
title Fryze reactive power of trams in effective stochastic recuperation processes
title_short Fryze reactive power of trams in effective stochastic recuperation processes
title_full Fryze reactive power of trams in effective stochastic recuperation processes
title_fullStr Fryze reactive power of trams in effective stochastic recuperation processes
title_full_unstemmed Fryze reactive power of trams in effective stochastic recuperation processes
title_sort fryze reactive power of trams in effective stochastic recuperation processes
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2019-01-01
description Urban electric transport system, particularly tram systems, is not a direct current system not only in traction mode but in regenerative modes as both voltage on a collector and regenerative current are stochastic abruptly variable processes. The above- mentioned facts determine availability of Fryze’s reactive power in this system that flows from a railway substation to trams, leads to incidental losses of energy and significantly reduces its quality. So evaluation of power effectiveness of the system in electrical trams operation is impossible without determining the level of reactive power in this system. We have analytical expression of reactive power by Fryze. Numerical calculations for trams type T3D and T4D in regenerative braking modes are done. Probabilistic statistical data processing operation of reactive power expressions is done. It is determined that reactive power changes in the limit of 10…100 kilo-volt ampere reactive with mathematical expectation – 37,0 kilo-volt ampere reactive. Statistical allocation of random power values are different. Numerical calculations of incidental losses, energy of recuperation are done and they range supplementary – 20% from total losses. It is stated that coefficient of reactive power of system route of trams is exceeding permissible value 0,25.
url https://www.matec-conferences.org/articles/matecconf/pdf/2019/43/matecconf_eot18_01006.pdf
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