Computer Science ›› 2013, Vol. 40 ›› Issue (8): 1-5.

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Key Technologies of Data Delivery over VANETs

ZHANG Li-feng,JIN Bei-hong and ZHANG Fu-sang   

  • Online:2018-11-16 Published:2018-11-16

Abstract: Data delivery over VANETs can provide data transmission for various services including traffic information collecting,urban life services,emergency alarming,and military command.But there are many challenges in data delivery brought by the rapid changing of network topology,limited wireless channel capacity,and etc.The paper analyzed the key challenges,pointed out the main influencing factors,classified the essential mechanisms,and reviewed the existing implementation approaches of data delivery over VANETs.In addition,the paper also summarized the optimization strategies to improve capabilities of data delivery.The paper concluded the future research trends.

Key words: Data delivery,VANET,Implementation approaches,Performance optimization

[1] Pazzi R W,et al.Service Discovery Protocols for VANET Based Emergency Preparedness Class of Applications:A Necessity Public Safety and Security[C]∥Information Systems,Technology and Management.2010:1-7
[2] Abusch-Magder D,et al.911-NOW:A network on wheels for emergency response and disaster recovery operations [J].Bell Labs Technical Journal,2007,11(4):113-133
[3] Gupta P,Kumar P R.The capacity of wireless networks [J].IEEE Transactions on Information Theory,2000,46(2):388-404
[4] Panwai S,Dia H.Comparative evaluation of microscopic car-following behavior [J].IEEE Transactions on Intelligent Transportation Systems,2005,6(3):314-325
[5] Mahajan A,et al.Urban mobility models for vanets [M].2006
[6] Filali F,Bonnet C.Mobility Models for Vehicular Ad Hoc Networks:A Survey and Taxonomy[R].RR-06-168.2006
[7] Lochert C,et al.The feasibility of information dissemination in vehicular ad-hoc networks[C]∥ Proceedings of Wireless on Demand Network Systems and Services.2007
[8] Reis A B,Sargento S,Tonguz O K.On the Performance ofSparse Vehicular Networks with Road Side Units[C]∥ Proceedings of Vehicular Technology Conference(VTC Spring).2011
[9] Sok-Ian S,Tonguz O K.Enhancing VANET Connectivity Th-rough Roadside Units on Highways [J].IEEE Transactions on Vehicular Technology,2011,60(8):3586-3602
[10] Yousefi S,et al.Improving connectivity in vehicular ad hoc networks:An analytical study [J].Computer Communications,2008,31(9):1653-1659
[11] Wisitpongphan N,Tonguz O K,Parikh J S,et al.Broadcaststorm mitigation techniques in vehicular ad hoc networks[J].IEEE Wireless Communications,2007,14(6):84-94
[12] Khabbazian M,Bhargava V K.Localized Broadcasting withGuaranteed Delivery and Bounded Transmission Redundancy[J]. IEEE Transactions on Computers,2008,57(8):1072-1086
[13] Ros F,Ruiz P,Stojmenovic.Acknowledgment-Based Broadcast Protocol for Reliable and Efficient Data Dissemination in Vehicular Ad-hoc Networks[J].IEEE Transactions on Mobile Computing,2012,11(1):33-46
[14] Korkmaz G,EkiciEylem,et al.Urban multi-hop broadcast protocol for inter-vehicle communication systems[C]∥Proceedings of the 1st ACM International Workshop on Vehicular Ad hoc Networks.ACM:Philadelphia,PA,USA,2004:76-85
[15] Huang Hong-yu,Luo Pei-en,Li Ming-lu,et al.Performance e-valuation of SUVnet with real-time traffic data [J].IEEE Trans.on Vehicular Technology,2007,56(6):3381-3396
[16] Nekovee M.Epidemic algorithms for reliable and efficient information dissemination in vehicular Ad hoc networks[J].IET Intelligent Transport Systems,2009,3(2):104-110
[17] Wu Hao,Fujimoto R M,Guensler R,et al.MDDV:A mobility-centric data dissemination algorithm for vehicular networks[C]∥Proceedings of the 1st ACM Int’l Workshop on Vehicular Ad Hoc Networks.New York:ACM Press,2004:47-56
[18] Lochert C,Hartenstein H,et al.A routing strategy for vehicular ad hoc networks in city environments[C]∥Proceedings of the IEEE Intelligent Vehicles Symposium.2003
[19] Lochert C,Mauve M,et al.Geographic routing in city scenarios [J].ACM Sigmobile Mobile Computing and Communications Review,2005,9(1):69-72
[20] Zhao J,Cao G.VADD:Vehicle-Assisted data delivery in vehicular ad hoc networks[C]∥Proceedings of the INFOCOM 2006.New York,2006:1-12
[21] Burgess J,Gallagher B,Jensen D,et al.MaxProp:Routing forvehicle-based disruption-tolerant networks[C]∥Proceedings of the 25th International Conference on Computer Communications,INFOCOM 2006.IEEE,2006
[22] Shafiee K,Leung V C M.Connectivity-aware minimum-delaygeographic routing with vehicle tracking in VANETs[J].Ad Hoc Networks,2011,9(2):131-141
[23] Naumov V,Gross T R.Connectivity-Aware routing(CAR)in vehicular ad-hoc networks[C]∥Proceedings of the 26th IEEE Int’l Conf.on Computer Communications(INFOCOM 2007).New York,2007:1919-1927
[24] Tonguz O,Wisitpongphan N,Bai F,et al.Broadcasting in VANET[C]∥Proceedings of 2007Mobile Networking for Vehicular Environments.2007
[25] Khabazian M,Ali M.A Performance Modeling of Connectivity in Vehicular Ad Hoc Networks [J].IEEE Transactions on Vehicular Technology,2008,57(4):2440-2450
[26] Khabazian M,Ali M M.A Continuous Communication Path Availability Analysis in Vehicular Ad Hoc Networks[C]∥Vehi-cular Technology Conference.VTC Spring 2009.IEEE 69th.2009
[27] Nzouonta J,Nakayama M K,Borcea C.On deriving and incorporating multihop path duration estimates in VANET protocols[J].ACM Transactions on Modeling and Computer Simulation,2011,21(2):1-23
[28] Zhao Jing,Zhang Yang,Cao Guo-hong.Data pouring and buffering on the road:A new data dissemination paradigm for vehicular ad hoc networks[J].IEEE Trans.on Vehicular Technology,2007,56(6):3266-3277
[29] Ding Yong,Xiao Li.SADV:Static-node-assisted adaptive datadissemination in vehicular networks [J].IEEE Transactions on Vehicular Technology,2010,59(5):2445-2455
[30] Wischoff L,et al.SOTIS-a self-organizing traffic informationsystem.in Vehicular Technology Conference[C]∥Proceedings of VTC.2003
[31] Yu B,Xu C,Guo M.Adaptive Forwarding Delay Control forVANET Data Aggregation[J].IEEE Transactions on Parallel and Distributed Systems,2011(99)
[32] Lochert C,Bjrn S,Martin M.A probabilistic method for cooperative hierarchical aggregation of data in VANETs[J].Ad hoc Networks,2010,8(5):518-530
[33] Dietzel S,Boto B,et al.A fuzzy logic based approach for structure-free aggregation in vehicular ad-hoc networks[C]∥Proceedings of the sixth ACM international workshop on Vehicular Inter NETworking.ACM:Beijing,China,2009:79-88
[34] Jong-moon C,Kim M,et al.Time Coordinated V2I Communications and Handover for WAVE Networks[J].IEEE Journal on Selected Areas in Communications,2011,29(3):545-558
[35] Bi Yuan-guo,Liu Kuang-hao,Cai Lin X,et al.A Multi-Channel Token Ring Protocol for QoS Provisioning in Inter-Vehicle Communications [J].IEEE Trans.Wireless Communication,2009,8(11)
[36] Zang Yun-peng,Stibor L,et al.A Novel MAC Protocol forThroughput Sensitive Applications in Vehicular Environments[C]∥Proceedings of Vehicular Technology Conference.2007
[37] Han Chong,Dianati D,Tafazolli R,et al.A Novel Distributed Asynchronous Multi-Channel MAC Scheme for Large-Scale Vehicular Ad Hoc Networks [J].IEEE Transactions on Vehicular Technology,2012(99)
[38] Wang Qing,Leng Su-peng,Fu Hui-rong,et al.An IEEE 802.11p-Based Multichannel MAC Scheme With Channel Coordination for Vehicular Ad Hoc Networks [J].IEEE Transactions on Intelligent Transportation Systems,2012,13(2):449-458
[39] 宋超,刘明,龚海刚,等.基于分布式实时信息的车载网络路由协议[J].软件学报,2011(03):466-480
[40] 陈丽,李治军,姜守旭,等.车载Ad hoc网络中基于移动网关的数据传输[J].计算机学报,2012(03):454-463

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