DocumentCode :
1725588
Title :
Distributed autonomous multi-hop vehicle-to-vehicle communications over TV white space
Author :
Ihara, Y. ; Kremo, Haris ; Altintas, Onur ; Tanaka, Hiroya ; Ohtake, M. ; Fujii, Teruya ; Yoshimura, C. ; Ando, K. ; Tsukamoto, Kazuya ; Tsuru, Masato ; Oie, Yuji
Author_Institution :
Toyota InfoTechnology Center, Tokyo, Japan
fYear :
2013
Firstpage :
336
Lastpage :
344
Abstract :
This paper presents design and experimental evaluation of a distributed autonomous multi-hop vehicle-to-vehicle (V2V) communication system over TV white space performed in Japan. We propose the two-layer control channel model, which consists of the Zone Aware Control Channel (ZACC) and the Swarm Aware Control Channel (SACC), to establish the multi-hop network. Several vehicles construct a swarm using location and direction information shared through ZACC, and share route and channel information, and available white space information through SACC. To evaluate the system we carried out field experiments with swarm made of three vehicles in a convoy. As the test case application, the leading vehicle sends real-time speed and sudden break information to the rear vehicle, while the vehicle in between acts as the relay. The vehicles observe channel occupancy via energy detection and agree on the control and the data channels autonomously. For coarse synchronization of quiet periods for sensing we use GPS driven oscillators, and introduce a time margin to accommodate for remaining drift. When a primary user is detected in any of the borrowed channels, the vehicles switch to a vacant channel without disrupting the ongoing multi-hop communication. We present results of the experiments in terms of the time to establish control channel, channel switching time, and throughput.
Keywords :
mobile robots; mobile television; relay networks (telecommunication); telecommunication network routing; vehicular ad hoc networks; wireless channels; GPS driven oscillators; Japan; SACC; TV white space; V2V communication system; ZACC; autonomous data channels; borrowed channels; channel information; channel switching time; coarse synchronization; control channel; distributed autonomous multihop vehicle-to-vehicle communications; energy detection; information sharing; real-time speed; rear vehicle; swarm aware control channel; two-layer control channel model; vacant channel; vehicles observe channel occupancy; zone aware control channel; Antennas; Data communication; Sensors; Switches; Vehicles; White spaces; Wideband; White space; dynamic spectrum access; multi-hop; spectrum sensing; vehicular commnunication;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Consumer Communications and Networking Conference (CCNC), 2013 IEEE
Conference_Location :
Las Vegas, NV
Print_ISBN :
978-1-4673-3131-9
Type :
conf
DOI :
10.1109/CCNC.2013.6488467
Filename :
6488467
Link To Document :
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