The concept of a hybrid traction power supply system

The growing shortage of energy resources to provide heavy traffic and high-speed traffic necessitates the development of a new power supply scheme for a traction network using sources of distributed generation of electric energy. Application of asymmetric distributed traction power system with the u...

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Main Authors: Sychenko Viktor, Kuznetsov Valeriy, Kosarev Yevheniy, Beh Petro., Sayenko Yuriy, Styslo Bohdan, Pavlichenko Mihail, Vasilev Ihor, Pulin Mykola
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_01014.pdf
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spelling doaj-152e8928cf7a4aefac3b267f61b4872a2021-02-02T07:02:47ZengEDP SciencesMATEC Web of Conferences2261-236X2019-01-012940101410.1051/matecconf/201929401014matecconf_eot18_01014The concept of a hybrid traction power supply systemSychenko Viktor0Kuznetsov Valeriy1Kosarev Yevheniy2Beh Petro.3Sayenko Yuriy4Styslo Bohdan5Pavlichenko Mihail6Vasilev Ihor7Pulin Mykola8DNURTRailway InstituteDNURTDNURTPGTUNTU “KhPI”LLC DDKUrGUPSLviv RailwayThe growing shortage of energy resources to provide heavy traffic and high-speed traffic necessitates the development of a new power supply scheme for a traction network using sources of distributed generation of electric energy. Application of asymmetric distributed traction power system with the use of distributed generation allows to increase electric energy efficiency of the feed system of rolling stock, reduce its material capacity and increase the reliability of the functioning of the railway system as a whole. The proposed structure of the hybrid electric traction system involves the creation of a new paradigm aimed at ensuring high demands on the voltage and specific power in the traction network, which will allow to improve the quality and safety of the transportation process when increasing the energy performance indicators. This paradigm will allow to form a new philosophy of building traction power systems. The key elements of this philosophy are decentralization of generation and consumption of electric energy, the use of intelligent electric equipment, distributed power supply management in a single information space of the energy process during transportation. The peculiarity of the proposed work is the optimal combination of technological processes of transmission, consumption of electric energy and transportation, taking into account the specific conditions of functioning of the electrified section: points of connection of power sources and their type, profile of the track, schedule of trains, types of rolling stock and equipment. Conceptually, the hybrid traction power system is an electric hub, in which the inputs are generating points, and the output is the power supply system of the rolling stock. The internal structure of the electric power objects of the hub is determined by the type of transformation and accumulation of electric energy and ways of managing these objects in real time.https://www.matec-conferences.org/articles/matecconf/pdf/2019/43/matecconf_eot18_01014.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Sychenko Viktor
Kuznetsov Valeriy
Kosarev Yevheniy
Beh Petro.
Sayenko Yuriy
Styslo Bohdan
Pavlichenko Mihail
Vasilev Ihor
Pulin Mykola
spellingShingle Sychenko Viktor
Kuznetsov Valeriy
Kosarev Yevheniy
Beh Petro.
Sayenko Yuriy
Styslo Bohdan
Pavlichenko Mihail
Vasilev Ihor
Pulin Mykola
The concept of a hybrid traction power supply system
MATEC Web of Conferences
author_facet Sychenko Viktor
Kuznetsov Valeriy
Kosarev Yevheniy
Beh Petro.
Sayenko Yuriy
Styslo Bohdan
Pavlichenko Mihail
Vasilev Ihor
Pulin Mykola
author_sort Sychenko Viktor
title The concept of a hybrid traction power supply system
title_short The concept of a hybrid traction power supply system
title_full The concept of a hybrid traction power supply system
title_fullStr The concept of a hybrid traction power supply system
title_full_unstemmed The concept of a hybrid traction power supply system
title_sort concept of a hybrid traction power supply system
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2019-01-01
description The growing shortage of energy resources to provide heavy traffic and high-speed traffic necessitates the development of a new power supply scheme for a traction network using sources of distributed generation of electric energy. Application of asymmetric distributed traction power system with the use of distributed generation allows to increase electric energy efficiency of the feed system of rolling stock, reduce its material capacity and increase the reliability of the functioning of the railway system as a whole. The proposed structure of the hybrid electric traction system involves the creation of a new paradigm aimed at ensuring high demands on the voltage and specific power in the traction network, which will allow to improve the quality and safety of the transportation process when increasing the energy performance indicators. This paradigm will allow to form a new philosophy of building traction power systems. The key elements of this philosophy are decentralization of generation and consumption of electric energy, the use of intelligent electric equipment, distributed power supply management in a single information space of the energy process during transportation. The peculiarity of the proposed work is the optimal combination of technological processes of transmission, consumption of electric energy and transportation, taking into account the specific conditions of functioning of the electrified section: points of connection of power sources and their type, profile of the track, schedule of trains, types of rolling stock and equipment. Conceptually, the hybrid traction power system is an electric hub, in which the inputs are generating points, and the output is the power supply system of the rolling stock. The internal structure of the electric power objects of the hub is determined by the type of transformation and accumulation of electric energy and ways of managing these objects in real time.
url https://www.matec-conferences.org/articles/matecconf/pdf/2019/43/matecconf_eot18_01014.pdf
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