Search for rational ratio of maximum speed and minimum fuel consumption of the vehicle

The gear ratio of the final drive and the distribution of the vehicle mass along the axles has a great influence on the technical and operational parameters of the vehicle. The article discusses the use of mathematical modelling in the MATLAB Simulink and the planning of the experiment to identify t...

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Main Authors: Sidorov Maxim, Eliseev Igor, Sidorov Vladimir, Golubina Svetlana
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/61/e3sconf_abr2021_07011.pdf
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spelling doaj-d8de47cb4ea94793846b81f228755c732021-07-07T11:44:00ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012850701110.1051/e3sconf/202128507011e3sconf_abr2021_07011Search for rational ratio of maximum speed and minimum fuel consumption of the vehicleSidorov Maxim0Eliseev Igor1Sidorov Vladimir2Golubina Svetlana3Kaluga Branch of Russian Timiryazev State Agrarian UniversityKaluga Branch of Bauman Moscow State Technical University (National Research University)Kaluga Branch of Bauman Moscow State Technical University (National Research University)Kaluga Branch of Bauman Moscow State Technical University (National Research University)The gear ratio of the final drive and the distribution of the vehicle mass along the axles has a great influence on the technical and operational parameters of the vehicle. The article discusses the use of mathematical modelling in the MATLAB Simulink and the planning of the experiment to identify the optimal values of the final drive ratio and the mass distribution along the axles when driving a vehicle on a horizontal reference surface. A computational model for determining the moment of resistance on the wheels is developed when the vehicle moves along a supporting surface without slopes. The roughness and unevenness of the surface were not taken into account in the above model. The response function is obtained by studying the dependence of change in two parameters: the speed and fuel consumption of the car from two factors of variation: the final drive ratio and the mass distribution along the axles. The steep ascent method is used to determine the optimal parameters of the vehicle design, which allow achieving maximum speed with minimum fuel consumption when the vehicle is moving on a horizontal supporting surface.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/61/e3sconf_abr2021_07011.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Sidorov Maxim
Eliseev Igor
Sidorov Vladimir
Golubina Svetlana
spellingShingle Sidorov Maxim
Eliseev Igor
Sidorov Vladimir
Golubina Svetlana
Search for rational ratio of maximum speed and minimum fuel consumption of the vehicle
E3S Web of Conferences
author_facet Sidorov Maxim
Eliseev Igor
Sidorov Vladimir
Golubina Svetlana
author_sort Sidorov Maxim
title Search for rational ratio of maximum speed and minimum fuel consumption of the vehicle
title_short Search for rational ratio of maximum speed and minimum fuel consumption of the vehicle
title_full Search for rational ratio of maximum speed and minimum fuel consumption of the vehicle
title_fullStr Search for rational ratio of maximum speed and minimum fuel consumption of the vehicle
title_full_unstemmed Search for rational ratio of maximum speed and minimum fuel consumption of the vehicle
title_sort search for rational ratio of maximum speed and minimum fuel consumption of the vehicle
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description The gear ratio of the final drive and the distribution of the vehicle mass along the axles has a great influence on the technical and operational parameters of the vehicle. The article discusses the use of mathematical modelling in the MATLAB Simulink and the planning of the experiment to identify the optimal values of the final drive ratio and the mass distribution along the axles when driving a vehicle on a horizontal reference surface. A computational model for determining the moment of resistance on the wheels is developed when the vehicle moves along a supporting surface without slopes. The roughness and unevenness of the surface were not taken into account in the above model. The response function is obtained by studying the dependence of change in two parameters: the speed and fuel consumption of the car from two factors of variation: the final drive ratio and the mass distribution along the axles. The steep ascent method is used to determine the optimal parameters of the vehicle design, which allow achieving maximum speed with minimum fuel consumption when the vehicle is moving on a horizontal supporting surface.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/61/e3sconf_abr2021_07011.pdf
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