Novel pre-emptive control solutions for V2X connected electric vehicles

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: So, Kai Man, Tavolo, Gaetano, Tavernini, Davide, Grosso, Marco, Pozzato, Sergio, Perlo, Pietro, Sorniotti, Aldo
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866911903368871936
author So, Kai Man
Tavolo, Gaetano
Tavernini, Davide
Grosso, Marco
Pozzato, Sergio
Perlo, Pietro
Sorniotti, Aldo
author_facet So, Kai Man
Tavolo, Gaetano
Tavernini, Davide
Grosso, Marco
Pozzato, Sergio
Perlo, Pietro
Sorniotti, Aldo
contents V2X technologies will become widespread in the next generation of passenger cars, and enable the development of novel vehicle control functionalities. Although a wide literature describes the energy efficiency benefits of V2X connectivity, e.g., in terms of vehicle speed profiling and platooning, there is a gap in the analysis of the potential of vehicle connectivity in enhancing the performance of active safety control systems. To highlight the impact vehicle connectivity could have on future active safety systems, this paper presents two novel control functions for connected vehicles, benefitting from the precise knowledge of the expected path and tire-road friction conditions ahead, as well as the current position of the ego vehicle. These functions, developed within recent and ongoing European projects, are: i) pre-emptive traction control; and ii) pre-emptive braking control.
format Preprint
id arxiv_https___arxiv_org_abs_2406_02211
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Novel pre-emptive control solutions for V2X connected electric vehicles
So, Kai Man
Tavolo, Gaetano
Tavernini, Davide
Grosso, Marco
Pozzato, Sergio
Perlo, Pietro
Sorniotti, Aldo
Systems and Control
V2X technologies will become widespread in the next generation of passenger cars, and enable the development of novel vehicle control functionalities. Although a wide literature describes the energy efficiency benefits of V2X connectivity, e.g., in terms of vehicle speed profiling and platooning, there is a gap in the analysis of the potential of vehicle connectivity in enhancing the performance of active safety control systems. To highlight the impact vehicle connectivity could have on future active safety systems, this paper presents two novel control functions for connected vehicles, benefitting from the precise knowledge of the expected path and tire-road friction conditions ahead, as well as the current position of the ego vehicle. These functions, developed within recent and ongoing European projects, are: i) pre-emptive traction control; and ii) pre-emptive braking control.
title Novel pre-emptive control solutions for V2X connected electric vehicles
topic Systems and Control
url https://arxiv.org/abs/2406.02211