Conflict and Sensitivity Analysis of Vehicular Stability Using a Two-State Linear Bicycle Model

Vehicle parameters and operation conditions play a critical role in vehicular handling and stability. This study aimed to evaluate vehicle stability based on cornering tire stiffness integrated with vehicle parameters. A passenger vehicle is considered in which a two-state linear bicycle model is de...

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Main Authors: Mohamed A. Hassan, Mohamed A. A. Abdelkareem, Gangfeng Tan, M. M. Moheyeldein
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2021/6641972
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spelling doaj-24f0f19d204644849203f876f48190b42021-03-01T01:14:21ZengHindawi LimitedShock and Vibration1875-92032021-01-01202110.1155/2021/6641972Conflict and Sensitivity Analysis of Vehicular Stability Using a Two-State Linear Bicycle ModelMohamed A. Hassan0Mohamed A. A. Abdelkareem1Gangfeng Tan2M. M. Moheyeldein3School of Automotive EngineeringAutomotive and Tractors Engineering DepartmentSchool of Automotive EngineeringAutomotive and Tractors Engineering DepartmentVehicle parameters and operation conditions play a critical role in vehicular handling and stability. This study aimed to evaluate vehicle stability based on cornering tire stiffness integrated with vehicle parameters. A passenger vehicle is considered in which a two-state linear bicycle model is developed in the Matlab/Simulink. The effect of the vehicle parameters on lateral vehicle stability has been investigated and analyzed. The investigated parameters included CG longitudinal position, wheelbase, and tire cornering stiffness. Furthermore, the effects of load variation and vehicle speed were addressed. Based on a Fishhook steering maneuver, the lateral stability criteria represented in lateral acceleration, yaw rate, vehicle sideslip angle, tire sideslip angles, and the lateral tire force were analyzed. The results demonstrated that the parameters that affect the lateral vehicle stability the most are the cornering stiffness coefficient and the CG longitudinal location. The findings also indicated a positive correlation between vehicle properties and lateral handling and stability.http://dx.doi.org/10.1155/2021/6641972
collection DOAJ
language English
format Article
sources DOAJ
author Mohamed A. Hassan
Mohamed A. A. Abdelkareem
Gangfeng Tan
M. M. Moheyeldein
spellingShingle Mohamed A. Hassan
Mohamed A. A. Abdelkareem
Gangfeng Tan
M. M. Moheyeldein
Conflict and Sensitivity Analysis of Vehicular Stability Using a Two-State Linear Bicycle Model
Shock and Vibration
author_facet Mohamed A. Hassan
Mohamed A. A. Abdelkareem
Gangfeng Tan
M. M. Moheyeldein
author_sort Mohamed A. Hassan
title Conflict and Sensitivity Analysis of Vehicular Stability Using a Two-State Linear Bicycle Model
title_short Conflict and Sensitivity Analysis of Vehicular Stability Using a Two-State Linear Bicycle Model
title_full Conflict and Sensitivity Analysis of Vehicular Stability Using a Two-State Linear Bicycle Model
title_fullStr Conflict and Sensitivity Analysis of Vehicular Stability Using a Two-State Linear Bicycle Model
title_full_unstemmed Conflict and Sensitivity Analysis of Vehicular Stability Using a Two-State Linear Bicycle Model
title_sort conflict and sensitivity analysis of vehicular stability using a two-state linear bicycle model
publisher Hindawi Limited
series Shock and Vibration
issn 1875-9203
publishDate 2021-01-01
description Vehicle parameters and operation conditions play a critical role in vehicular handling and stability. This study aimed to evaluate vehicle stability based on cornering tire stiffness integrated with vehicle parameters. A passenger vehicle is considered in which a two-state linear bicycle model is developed in the Matlab/Simulink. The effect of the vehicle parameters on lateral vehicle stability has been investigated and analyzed. The investigated parameters included CG longitudinal position, wheelbase, and tire cornering stiffness. Furthermore, the effects of load variation and vehicle speed were addressed. Based on a Fishhook steering maneuver, the lateral stability criteria represented in lateral acceleration, yaw rate, vehicle sideslip angle, tire sideslip angles, and the lateral tire force were analyzed. The results demonstrated that the parameters that affect the lateral vehicle stability the most are the cornering stiffness coefficient and the CG longitudinal location. The findings also indicated a positive correlation between vehicle properties and lateral handling and stability.
url http://dx.doi.org/10.1155/2021/6641972
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AT mohamedaaabdelkareem conflictandsensitivityanalysisofvehicularstabilityusingatwostatelinearbicyclemodel
AT gangfengtan conflictandsensitivityanalysisofvehicularstabilityusingatwostatelinearbicyclemodel
AT mmmoheyeldein conflictandsensitivityanalysisofvehicularstabilityusingatwostatelinearbicyclemodel
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