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  4. Simulation of Cooperative Automated Driving by Bidirectional Coupling of Vehicle and Network Simulators
 
conference paper

Simulation of Cooperative Automated Driving by Bidirectional Coupling of Vehicle and Network Simulators

Llatser, Ignacio
•
Jornod, Guillaume Stefan  
•
Festag, Andreas
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2017
Intelligent Vehicles Symposium (IV), 2017 IEEE
2017 IEEE Intelligent Vehicles Symposium

The convergence of sensor-based vehicle automation and Inter-Vehicle Communication (IVC) will be a key to achieve the full automation of vehicles. In this paper we present a new method for the design and performance evaluation of Cooperative Automated Driving (CAD) systems, based on a bidirectional coupling of vehicle and network simulators (Webots and ns-3). The coupling exploits the comprehensive capabilities of the simulators at a reasonable computational complexity and allows simulating CAD systems with high accuracy. We demonstrate the capabilities of the simulation tool by a case study of convoy driving with automated vehicles using a fully distributed control algorithm and IVC. The study compares CAD-specific metrics (safety distance, headway, speed) for an ideal and a realistic communication channel. The simulation results underline the need of accurate modeling and give valuable insights for the design of CAD systems.

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Type
conference paper
DOI
10.1109/IVS.2017.7995979
Author(s)
Llatser, Ignacio
Jornod, Guillaume Stefan  
Festag, Andreas
Mansolino, David  
Navarro Oiza, Inaki  
Martinoli, Alcherio  
Date Issued

2017

Published in
Intelligent Vehicles Symposium (IV), 2017 IEEE
Start page

1881

End page

1886

Subjects

Cooperative Automated Driving

•

Bidirectional Simulator

•

Webots

•

ns-3

•

Network and Vehicle Simulators

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
DISAL  
Event nameEvent placeEvent date
2017 IEEE Intelligent Vehicles Symposium

Redondo Beach, California, USA

June 11-14, 2017

Available on Infoscience
May 22, 2017
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/137492
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