Evaluating Vehicle Energy Efficiency in Urban Transport Systems Based on Fuzzy Logic Models

This work solves the task of developing a fuzzy logic model for evaluating the energy efficiency of vehicles as part of the control unit of an intelligent transport system. Within the scope of this study, the previously obtained morphological model of the transport system was modified. A mathematica...

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Main Authors: Vasyl Mateichyk, Nataliia Kostian, Miroslaw Smieszek, Jakub Mosciszewski, Liudmyla Tarandushka
Format: Article
Language:English
Published: MDPI AG 2023-01-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/16/2/734
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author Vasyl Mateichyk
Nataliia Kostian
Miroslaw Smieszek
Jakub Mosciszewski
Liudmyla Tarandushka
author_facet Vasyl Mateichyk
Nataliia Kostian
Miroslaw Smieszek
Jakub Mosciszewski
Liudmyla Tarandushka
author_sort Vasyl Mateichyk
collection DOAJ
description This work solves the task of developing a fuzzy logic model for evaluating the energy efficiency of vehicles as part of the control unit of an intelligent transport system. Within the scope of this study, the previously obtained morphological model of the transport system was modified. A mathematical dependence is proposed to determine the vehicle energy efficiency indicator. This dependence characterizes the energy consumption of the vehicle in relation to the energy consumption of the vehicle under the reference operating conditions. Synthesis of system configurations was performed, and procedures were used to transform the morphological formulas of the received configurations into a base of logical derivation rules. Parameters of the membership functions of system parameters to fuzzy terms of the area of their definition are defined. Based on the results of the morphological analysis, two fuzzy derivation models were developed: the Mamdani type and the Sugeno type. The accuracy of the modeling was evaluated using different defuzzification algorithms in the control sample. The most accurate model is the fuzzy Mamdani model, with an accuracy value of 98.8%. Using the developed model, the nature of the mutual influence of the transport system parameters on the level of vehicle efficiency was assessed. The results of the study can be used to justify the choice of the vehicle under the specified operating conditions and in the settlement design of the road infrastructure.
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spelling doaj.art-4c604162ce204626b9f24b61a29534332023-11-30T22:03:17ZengMDPI AGEnergies1996-10732023-01-0116273410.3390/en16020734Evaluating Vehicle Energy Efficiency in Urban Transport Systems Based on Fuzzy Logic ModelsVasyl Mateichyk0Nataliia Kostian1Miroslaw Smieszek2Jakub Mosciszewski3Liudmyla Tarandushka4Department of Technical Systems Engineering, Rzeszow University of Technology, al. Powstancow Warszawy 10, 35-959 Rzeszow, PolandDepartment of Automobiles and Technologies for their Operating, Cherkasy State Technological University, Shevchenko 333, 18006 Cherkasy, UkraineDepartment of Technical Systems Engineering, Rzeszow University of Technology, al. Powstancow Warszawy 10, 35-959 Rzeszow, PolandDepartment of Technical Systems Engineering, Rzeszow University of Technology, al. Powstancow Warszawy 10, 35-959 Rzeszow, PolandDepartment of Automobiles and Technologies for their Operating, Cherkasy State Technological University, Shevchenko 333, 18006 Cherkasy, UkraineThis work solves the task of developing a fuzzy logic model for evaluating the energy efficiency of vehicles as part of the control unit of an intelligent transport system. Within the scope of this study, the previously obtained morphological model of the transport system was modified. A mathematical dependence is proposed to determine the vehicle energy efficiency indicator. This dependence characterizes the energy consumption of the vehicle in relation to the energy consumption of the vehicle under the reference operating conditions. Synthesis of system configurations was performed, and procedures were used to transform the morphological formulas of the received configurations into a base of logical derivation rules. Parameters of the membership functions of system parameters to fuzzy terms of the area of their definition are defined. Based on the results of the morphological analysis, two fuzzy derivation models were developed: the Mamdani type and the Sugeno type. The accuracy of the modeling was evaluated using different defuzzification algorithms in the control sample. The most accurate model is the fuzzy Mamdani model, with an accuracy value of 98.8%. Using the developed model, the nature of the mutual influence of the transport system parameters on the level of vehicle efficiency was assessed. The results of the study can be used to justify the choice of the vehicle under the specified operating conditions and in the settlement design of the road infrastructure.https://www.mdpi.com/1996-1073/16/2/734fuzzy logic modelmembership functionmorphological matrixurban transport systemvehicle energy efficiency
spellingShingle Vasyl Mateichyk
Nataliia Kostian
Miroslaw Smieszek
Jakub Mosciszewski
Liudmyla Tarandushka
Evaluating Vehicle Energy Efficiency in Urban Transport Systems Based on Fuzzy Logic Models
Energies
fuzzy logic model
membership function
morphological matrix
urban transport system
vehicle energy efficiency
title Evaluating Vehicle Energy Efficiency in Urban Transport Systems Based on Fuzzy Logic Models
title_full Evaluating Vehicle Energy Efficiency in Urban Transport Systems Based on Fuzzy Logic Models
title_fullStr Evaluating Vehicle Energy Efficiency in Urban Transport Systems Based on Fuzzy Logic Models
title_full_unstemmed Evaluating Vehicle Energy Efficiency in Urban Transport Systems Based on Fuzzy Logic Models
title_short Evaluating Vehicle Energy Efficiency in Urban Transport Systems Based on Fuzzy Logic Models
title_sort evaluating vehicle energy efficiency in urban transport systems based on fuzzy logic models
topic fuzzy logic model
membership function
morphological matrix
urban transport system
vehicle energy efficiency
url https://www.mdpi.com/1996-1073/16/2/734
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AT miroslawsmieszek evaluatingvehicleenergyefficiencyinurbantransportsystemsbasedonfuzzylogicmodels
AT jakubmosciszewski evaluatingvehicleenergyefficiencyinurbantransportsystemsbasedonfuzzylogicmodels
AT liudmylatarandushka evaluatingvehicleenergyefficiencyinurbantransportsystemsbasedonfuzzylogicmodels