Performance and Safety Enhancement Strategies in Vehicle Dynamics and Ground Contact

Recent trends in vehicle engineering are testament to the great efforts that scientists and industries have made to seek solutions to enhance both the performance and safety of vehicular systems. This Special Issue aims to contribute to the study of modern vehicle dynamics, attracting recent experim...

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Year of Publication:2022
Language:English
Physical Description:1 electronic resource (346 p.)
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520 |a Recent trends in vehicle engineering are testament to the great efforts that scientists and industries have made to seek solutions to enhance both the performance and safety of vehicular systems. This Special Issue aims to contribute to the study of modern vehicle dynamics, attracting recent experimental and in-simulation advances that are the basis for current technological growth and future mobility. The area involves research, studies, and projects derived from vehicle dynamics that aim to enhance vehicle performance in terms of handling, comfort, and adherence, and to examine safety optimization in the emerging contexts of smart, connected, and autonomous driving.This Special Issue focuses on new findings in the following topics:(1) Experimental and modelling activities that aim to investigate interaction phenomena from the macroscale, analyzing vehicle data, to the microscale, accounting for local contact mechanics; (2) Control strategies focused on vehicle performance enhancement, in terms of handling/grip, comfort and safety for passengers, motorsports, and future mobility scenarios; (3) Innovative technologies to improve the safety and performance of the vehicle and its subsystems; (4) Identification of vehicle and tire/wheel model parameters and status with innovative methodologies and algorithms; (5) Implementation of real-time software, logics, and models in onboard architectures and driving simulators; (6) Studies and analyses oriented toward the correlation among the factors affecting vehicle performance and safety; (7) Application use cases in road and off-road vehicles, e-bikes, motorcycles, buses, trucks, etc. 
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653 |a tire model parameters identification 
653 |a artificial neural networks 
653 |a curve fitting 
653 |a Pacejka's magic formula 
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653 |a microscopic traffic simulation 
653 |a autonomous driving 
653 |a friction estimate 
653 |a tire-based control 
653 |a ADAS 
653 |a potential friction 
653 |a energy consumption and recovery 
653 |a transmission layouts 
653 |a fuel-cell electric vehicles 
653 |a adhesion enhancement 
653 |a dimple model 
653 |a patterned surfaces 
653 |a viscoelasticity 
653 |a enhancement 
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653 |a eigenvalue analysis 
653 |a central control 
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653 |a pitch behavior 
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653 |a roll behavior 
653 |a self-steering behavior 
653 |a vehicle dynamics 
653 |a viscoelastic modulus 
653 |a rubber 
653 |a friction 
653 |a empirical modeling 
653 |a autonomous emergency steering 
653 |a multi-input multi-output model predictive control 
653 |a actuator dynamics 
653 |a control allocation 
653 |a handling enhancement 
653 |a road friction 
653 |a wear 
653 |a tyre 
653 |a suspension 
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653 |a comfort 
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653 |a directional stability 
653 |a road profile 
653 |a road unevenness 
653 |a vehicle-road interaction 
653 |a vertical vehicle excitation 
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653 |a motorcycle 
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653 |a international roughness index 
653 |a vehicle response 
653 |a driving comfort 
653 |a sky-hook 
653 |a in-wheel motor 
653 |a semi-active suspension 
653 |a quarter-car model 
653 |a suspension performance 
653 |a suspension test bench 
653 |a vehicle stability 
653 |a road models 
653 |a quarter car models 
653 |a limit cycles 
653 |a acceleration speed portraits 
653 |a speed oscillations 
653 |a velocity bifurcations 
653 |a noisy limit cycles 
653 |a limit flows of trajectories 
653 |a Sommerfeld effects 
653 |a differential-algebraic systems 
653 |a polar coordinates of roads 
653 |a covariance equations 
653 |a stability in mean 
653 |a supercritical speeds 
653 |a analytical travel speed amplitudes 
653 |a Floquet theory applied to limit cycles 
653 |a non-pneumatic tire 
653 |a finite element analysis 
653 |a steady state analysis 
653 |a tire characterization 
653 |a footprint 
653 |a contact patch 
653 |a longitudinal interaction 
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700 1 |a Sakhnevych, Aleksandr  |4 edt 
700 1 |a Farroni, Flavio  |4 oth 
700 1 |a Genovese, Andrea  |4 oth 
700 1 |a Sakhnevych, Aleksandr  |4 oth 
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