DocumentCode :
1805311
Title :
A consensus-based approach for platooning with inter-vehicular communications
Author :
Santini, S. ; Salvi, A. ; Valente, A.S. ; Pescape, A. ; Segata, M. ; Cigno, R. Lo
Author_Institution :
Univ. of Napoli Federico II, Naples, Italy
fYear :
2015
fDate :
April 26 2015-May 1 2015
Firstpage :
1158
Lastpage :
1166
Abstract :
Automated and coordinated vehicles´ driving (platooning) is gaining more and more attention today and it represents a challenging scenario heavily relying on wireless Inter-Vehicular Communication (IVC). In this paper, we propose a novel controller for vehicle platooning based on consensus. Opposed to current approaches where the logical control topology is fixed a priori and the control law designed consequently, we design a system whose control topology can be reconfigured depending on the actual network status. Moreover, the controller does not require the vehicles to be radar equipped and automatically compensates outdated information caused by network delays. We define the control law and analyze it in both analytical and simulative way, showing its robustness in different network scenarios. We consider three different wireless network settings: uncorrelated Bernoullian losses, correlated losses using a Gilbert-Elliott channel, and a realistic traffic scenario with interferences caused by other vehicles. Finally, we compare our strategy with another state of the art controller. The results show the ability of the proposed approach to maintain a stable string of vehicles even in the presence of strong interference, delays, and fading conditions, providing higher comfort and safety for platoon drivers.
Keywords :
mobile communication; road traffic; telecommunication network topology; Bernoullian losses; Gilbert-Elliott channel; coordinated vehicles driving; correlated losses; inter-vehicular communications; logical control topology; network delays; platooning; wireless intervehicular communication; Algorithm design and analysis; Delays; Heuristic algorithms; Stability analysis; Topology; Vehicle dynamics; Vehicles;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computer Communications (INFOCOM), 2015 IEEE Conference on
Conference_Location :
Kowloon
Type :
conf
DOI :
10.1109/INFOCOM.2015.7218490
Filename :
7218490
Link To Document :
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