A comprehensive survey on vehicular Ad Hoc network

Journal of Network and Computer Applications - Tập 37 - Trang 380-392 - 2014
Saif Al-Sultan1, Moath Muayad Al-Doori1, Ali H. Al‐Bayatti1, Hussein Zedan1
1Software Technology Research Laboratory, De Montfort University, Bede Island Building, Western Boulevard, Leicester LE2 7EW, UK

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Tài liệu tham khảo

N.H.T.S. Administration. Vehicle safety communications project task 3 final report, identify intelligent vehicle safety applications enabled by dsrc. Technical Report, US Department of Transportation. Technical Report DOT HS 809 859 2005.

Al-Doori M. Directional routing techniques in vanet. PhD thesis; November 2011.

Artimy M, Robertson W, Phillips W. Connectivity in inter-vehicle ad hoc networks. In: Canadian conference on electrical and computer engineering, IEEE, vol. 1; 2004. p. 293–8.

Artimy M, Phillips W, Robertson W. Connectivity with static transmission range in vehicular ad hoc networks. In: Proceedings of the 3rd annual communication networks and services research conference. IEEE; 2005. p. 237–42.

Bagrodia, 1998, Parsec, Computer, 31, 77, 10.1109/2.722293

Bhakthavathsalam R, Nayak S. Operational inferences on vanets in 802.16e and 802.11p with improved performance by congestion alert. In: Consumer communications and networking conference (CCNC), 2011 IEEE; 2011. p. 467–71.

Blum, 2004, Challenges of intervehicle ad hoc networks, IEEE Transactions on Intelligent Transportation Systems, 5, 347, 10.1109/TITS.2004.838218

Brasche, 1997, Concepts, services, and protocols of the new gsm phase 2+ general packet radio service, IEEE Communications Magazine, 35, 94, 10.1109/35.606036

Buchenscheit A, Schaub F, Kargl F, Weber M. A vanet-based emergency vehicle warning system. In: Vehicular networking conference (VNC), IEEE, IEEE, 2009; 2009. p. 1–8.

C.C. Communication Consortium. Car 2 car communication consortium manifesto. 〈Http://car-to-car.org/index.php?id=31〉.

Chen, 2011, A survey and challenges in routing and data dissemination in vehicular ad hoc networks, Wireless Communications and Mobile Computing, 11, 787, 10.1002/wcm.862

Faezipour, 2012, Progress and challenges in intelligent vehicle area networks, Communications of the ACM, 55, 90, 10.1145/2076450.2076470

Farooq J, Rauf B. Implementation and evaluation of ieee 802.11 e wireless lan in glomosim, Department of Computing Science Umeå University Sweden.

Festag A, Noecker G, Strassberger M, Lubke A, Bochow B, Torrent-Moreno M, Schnaufer S, Eigner R, Catrinescu C, Kunisch J. Now-network on wheels: project objectives, technology and achievements. In: Proceedings of the 5th international workshop on intelligent transportation; 2008. p. 211–6.

Fiore M. Mobility models in inter-vehicle communications literature. Technical Report, Department of Electronics, Polytechnic Institute of Torino.

Fortino G, Garro A, Mascillaro S, Russo W. Modeling multi-agent systems through event-driven lightweight dsc-based agents, Università della Calabria, Via P. Bucci cubo 41c 87036.

Global Mobile Information System Simulation glomosim. 〈http://pcl.cs.ucla.edu/projects/glomosim/〉 [accessed: 21/02/2012].

Hartenstein, 2008, A tutorial survey on vehicular ad hoc networks, Communications Magazine, IEEE, 46, 164, 10.1109/MCOM.2008.4539481

Hartenstein H, Laberteaux K. VANET vehicular applications and inter-networking technologies. Wiley Online Library; 2009.

Hassan A. Vanet simulation, Master thesis; May 2009

Ieee Trial-use Standard for Wireless Access in Vehicular Environments (wave)—Resource Manager. IEEE Std 1609.1-2006 (2006) c1–63. http://dx.doi.org/10.1109/IEEESTD.2006.246485.

Jakubiak J, Koucheryavy Y. State of the art and research challenges for vanets. In: Consumer communications and networking conference. CCNC 2008. 5th IEEE; 2008. p. 912–6.

Jiang D, Delgrossi L. Ieee 802.11p: towards an international standard for wireless access in vehicular environments. In: Vehicular technology conference. VTC Spring 2008. IEEE; 2008. p. 2036–40.

Jiang, 2006, Design of 5.9Ghz dsrc-based vehicular safety communication, IEEE Wireless Communications, 13, 36, 10.1109/WC-M.2006.250356

Karnadi F, Mo ZH, chan Lan K. Rapid generation of realistic mobility models for vanet. In: Wireless communications and networking conference. WCNC 2007. IEEE; 2007. p. 2506–11. http://dx.doi.org/10.1109/WCNC.2007.467.

Lee K, Lee U, Gerla M. Survey of routing protocols in vehicular ad hoc networks. Advances in vehicular ad-hoc networks: developments and challenges, IGI Global.

Li, 2007, Routing in vehicular ad hoc networks, IEEE Vehicular Technology Magazine, 2, 12, 10.1109/MVT.2007.912927

Lin, 2010, Routing protocols in vehicular ad hoc networks, Journal of Information Science and Engineering, 26, 913

Luo J, Hubaux J-P. A survey of inter-vehicle communication. Technical Report, School of Computer and Communication Sciences. EPFL, Lausanne, Switzerland. Technical Report IC/2004/24; 2004.

Moustafa, 2009

Nekovee M. Sensor networks on the road: the promises and challenges of vehicular ad hoc networks and grids. In: Workshop on ubiquitous computing and e-Research; 2005.

Olariu, 2009

Rahnema, 1993, Overview of the gsm system and protocol architecture, IEEE Communications Magazine, 31, 92, 10.1109/35.210402

Rawashdeh Z, Mahmud S. Intersection collision avoidance system architecture. In: Consumer communications and networking conference, CCNC 2008. 5th IEEE, IEEE; 2008. p. 493–4.

Romano NC, Nunamaker JF. Meeting analysis: findings from research and practice. In: Proceedings of the 34th annual Hawaii international conference on system science; 2001. p. 13. http://dx.doi.org/10.1109/HICSS.2001.926253.

Sichitiu, 2008, Inter-vehicle communication systems, IEEE Communications Surveys & Tutorials, 10, 88, 10.1109/COMST.2008.4564481

Simulation of Urban Mobility. 〈http://sumo.sourceforge.net/〉 [accessed: 21/05/2012].

The Network Simulator—ns-2. 〈http://www.isi.edu/nsnam/ns/〉 accessed: 21/05/2012.

Toor, 2008, Vehicle ad hoc networks, IEEE Communications Surveys Tutorials, 10, 74, 10.1109/COMST.2008.4625806

Traffic and Network Simulation Environment. 〈http://lca.epfl.ch/projects/trans/〉 [accessed: 21/05/2012].

Transims. 〈http://transims.tsasa.lanl.gov/〉 [accessed: 21/02/2012].

Tuduce C, Gross T. A mobility model based on wlan traces and its validation. In: INFOCOM 2005. 24th annual joint conference of the IEEE computer and communications societies. Proceedings of the IEEE, vol. 1; 2005. p. 664–74. http://dx.doi.org/10.1109/INFCOM.2005.1497932.

UDel Models for Simulation of Urban Mobile Wireless Networks. 〈http://udelmodels.eecis.udel.edu/〉 [accessed: 30/04/2012].

VanetMobiSim. 〈http://vanet.eurecom.fr/〉 [accessed: 21/05/2012].

Vaughan-Nichols, 2008, Mobile wimax, Computer, 41, 16, 10.1109/MC.2008.201

Vissim. 〈http://www.english.ptv.de/cgi-bin/traffic/trafvissim.pl〉 [accessed: 22/02/2012].

Wang S-Y, Lin C-C. Nctuns 5.0: a network simulator for ieee 802.11(p) and 1609 wireless vehicular network researches. In: Vehicular technology conference. VTC 2008-Fall. IEEE 68th; 2008. p. 1–2. http://dx.doi.org/10.1109/VETECF.2008.464.

Wischhof, 2005, Information dissemination in self-organizing intervehicle networks, IEEE Transactions on Intelligent Transportation Systems, 6, 90, 10.1109/TITS.2004.842407

Yoon J, Noble B, Liu M, Kim M. Building realistic mobility models from coarse-grained traces. In: Proceedings of the 4th international conference on mobile systems, applications and services, ACM; 2006. p. 177–90.

Yousefi S, Mousavi MS, Fathy M. Vehicular ad hoc networks (vanets): challenges and perspectives. In: Proceedings of the 6th international conference on ITS telecommunications; 2006. p. 761–6.

Zhang, 2008, Routing protocols for vehicular ad hoc networks in rural areas, IEEE Communications Magazine, 46, 126, 10.1109/MCOM.2008.4689255