Simulation model of the heating and air conditioning system of dc electric trains

Most of the territory of the Russian Federation is located in the zone of long-term exposure to negative ambient temperatures. In this regard, in the suburban traffic on the railways of the Russian Federation, a significant proportion of the electric power falls on the operation of heating and air c...

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Main Authors: Istomin Stanislav, Shtraukhman Aleksandr
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/61/e3sconf_itese18_02018.pdf
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spelling doaj-d9a21ca609bd4e37bdd23cdc6763a69e2021-02-02T06:41:56ZengEDP SciencesE3S Web of Conferences2267-12422019-01-011350201810.1051/e3sconf/201913502018e3sconf_itese18_02018Simulation model of the heating and air conditioning system of dc electric trainsIstomin Stanislav0Shtraukhman Aleksandr1Omsk state transport UniversityOmsk state transport UniversityMost of the territory of the Russian Federation is located in the zone of long-term exposure to negative ambient temperatures. In this regard, in the suburban traffic on the railways of the Russian Federation, a significant proportion of the electric power falls on the operation of heating and air conditioning systems. Nowadays, Russia and the world are developing energy-saving methods and tools to reduce the energy consumption of auxiliary needs of electric trains. In this paper, the method of constructing simulation models in the MATLAB Simulink software was used to build an energy-saving heating and air conditioning system, since this method allows studying various options for building the studied systems with lower financial and labor costs in comparison with the experimental method. The correct selection and display of the parameters of the electric train interior will allow achieving the optimal values of energy consumption for heating and air conditioning of the electric trains. In order to verify its adequacy, the simulation model includes standard values of electric energy consumption for heating and conditioning electric trains for various sections and operating conditions, which were obtained earlier during the correlation and regression analysis of data from electric train parameter recorders. The results of the study showed the adequacy of the application of the developed simulation model for organizing the control of electric power consumption for heating and air conditioning of DC electric trains.https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/61/e3sconf_itese18_02018.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Istomin Stanislav
Shtraukhman Aleksandr
spellingShingle Istomin Stanislav
Shtraukhman Aleksandr
Simulation model of the heating and air conditioning system of dc electric trains
E3S Web of Conferences
author_facet Istomin Stanislav
Shtraukhman Aleksandr
author_sort Istomin Stanislav
title Simulation model of the heating and air conditioning system of dc electric trains
title_short Simulation model of the heating and air conditioning system of dc electric trains
title_full Simulation model of the heating and air conditioning system of dc electric trains
title_fullStr Simulation model of the heating and air conditioning system of dc electric trains
title_full_unstemmed Simulation model of the heating and air conditioning system of dc electric trains
title_sort simulation model of the heating and air conditioning system of dc electric trains
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2019-01-01
description Most of the territory of the Russian Federation is located in the zone of long-term exposure to negative ambient temperatures. In this regard, in the suburban traffic on the railways of the Russian Federation, a significant proportion of the electric power falls on the operation of heating and air conditioning systems. Nowadays, Russia and the world are developing energy-saving methods and tools to reduce the energy consumption of auxiliary needs of electric trains. In this paper, the method of constructing simulation models in the MATLAB Simulink software was used to build an energy-saving heating and air conditioning system, since this method allows studying various options for building the studied systems with lower financial and labor costs in comparison with the experimental method. The correct selection and display of the parameters of the electric train interior will allow achieving the optimal values of energy consumption for heating and air conditioning of the electric trains. In order to verify its adequacy, the simulation model includes standard values of electric energy consumption for heating and conditioning electric trains for various sections and operating conditions, which were obtained earlier during the correlation and regression analysis of data from electric train parameter recorders. The results of the study showed the adequacy of the application of the developed simulation model for organizing the control of electric power consumption for heating and air conditioning of DC electric trains.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/61/e3sconf_itese18_02018.pdf
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