Abstract
Vehicular ad hoc networks are a special type of MANET providing vehicle to vehicle and vehicle to roadside wireless communications. Vehicular ad-hoc network (VANET) have been designed in order to assist drivers on the road with a variety of applications especially in preventing danger and saving lives. For such ends, broadcasting is a suitable scheme to convey emergency messages dissemination to the entire network. Broadcasting in VANETs is a challenging task due to the specific VANET features such as nodes mobility and frequent topology changes. VANET applications, especially those related with human life saving, are delay sensitive and have specific requirements in terms of performances and QoS. A QoS aware broadcasting scheme relies on different factors and has to deal with hard constraints. In this paper, we introduce a survey of broadcasting in vehicular networks and discussion of different performance and QoS related to broadcasting issues. Furthermore, a comparative study of QoS aware broadcasting protocols classifying them according to different taxonomies is elaborated. This survey specifies QoS requirements and performance metrics of VANET services. Furthermore, this survey focuses on QoS aware broadcasting as a challenging problem regrading VANET characteristics.
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Dinesh, D., & Deshmukh, M. (2014). Challenges in vehicle ad hoc network (VANET). International Journal of Engineering Technology, Management and Applied Sciences, 2(7), 76–88.
Memon, I. (2015). A secure and efficient communication scheme with authenticated key establishment protocol for road networks. Wireless Personal Communications, 85(3), 1167–1191.
Akhtar, R., Leng, S., Memon, I., Ali, M., & Zhang, L. (2015). Architecture of hybrid mobile social networks for efficient content delivery. Wireless Personal Communications, 80(1), 85–96.
Tao, Y., Li, X., Tsukada, M., & Esaki, H. (2016). DUPE: Duplicated unicast packet encapsulation in position-based routing VANET. In 9th IFIP wireless and mobile networking conference (WMNC) (pp. 1–8). doi:10.1109/WMNC.2016.7543979.
Pathan, A.-S. K. (2011). Security of self-organizing networks (pp. 227–250). Boca Raton/London/New York: Taylor & Francis Group.
Venkatesh, I. A., & Murali, R. (2014). Routing protocols for vehicular adhoc networks (VANETs): A review. Journal of Emerging Trends in Computing and Information Sciences, 5(1), 25–43.
Sanguesa, J. A., Fogue, M., Garrido, P., Martinez, F. J., Cano, J.-C., & Calafate, C. T. (2016). A survey and comparative study of broadcast warning message dissemination schemes for VANETs. Hindawi Publishing Corporation Mobile Information Systems, Article ID 8714142.
Gupta, R., & Patel, P. (2016). A survey on vehicular ad hoc networks. International Journal of Scientific Research in Science, Engineering and Technology (IJSRSET), 15(4), 34–42.
Zeadally, S., Hunt, R., Chen, Y.-S., Irwin, A., & Hassan, A. (2010). Vehicular ad hoc networks (VANETS): Status, results, and challenges. Springer Telecommunication Systems, 50(4), 217–241.
Al-Sultan, S., Al-Doori, M. M., Al-Bayatti, A. H., & Zedan, H. (2013). A comprehensive survey on vehicular ad hoc network. Journal of Network and Computer Applications, 37, 380–392.
Kamini, R. K. (2010). VANET parameters and applications: A review. Global Journal of Computer Science and Technology, 10(07), 72–77.
Vahdat-Nejada, H., Ramazania, A., Mohammadib, T., & Mansoorc, W. (2016). A survey on context-aware vehicular network applications. Vehicular Communications, 3, 43–57.
Cunha, F., Villas, L., Boukerche, A., Maia, G., Viana, A., Mini, R. A. F., et al. (2016). Data communication in VANETs: Survey. Applications and challenges. Ad Hoc Networks, 44(C), 90–103.
Eze, E. C, Zhang, S., & Liu, E. (2014). Vehicular ad hoc networks (VANETs): Current state, challenges, potentials and way forward. In: Proceedings of the 20th international conference on automation & computing (pp. 1–6). Cranfield University, Bedfordshire, UK. doi:10.1109/IConAC.2014.6935482.
ur Rehman, S., Khan, M. A., Zia, T. A., & Zheng, L. (2013). Vehicular ad-hoc networks (VANETs) an overview and challenges. Australia: Journal of Wireless Networking and Communications, 03(03), 29–38.
Vegni, A. M., & Loscr, V. (2015). A survey on vehicular social networks. IEEE Communications Society, 17(4), 2397–2419.
Anwer, M. S., & Guy, C. (2014). A survey of VANET technologies. Journal of Emerging Trends in Computing and Information Sciences, 5(9), 661–671.
Eze, E. C., Zhang, S.-J., Liu, E.-J., & Eze, J. C. (2015). Advances in vehicular ad-hoc networks (VANETs): Challenges and road-map for future development. International Journal of Automation and Computing., 13(1), 1–18.
Mejria, M. N., Ben-Othmana, J., & Hamdib, M. (2014). Survey on VANET security challenges and possible cryptographic solutions. Vehicular Communications, 1(2), 53–66.
Diyar Khairi, M. S., & Berqia, A. (2015). Survey on QoS and security in vehicular ad hoc networks. International Journal of Advanced Research in Computer Science and Software Engineering, 05(05), 42–52.
Khan, U., Agrawal, S., & Silakari, S. (2015). A detailed survey on misbehavior node detection techniques in vehicular ad hoc networks. In Information systems design and intelligent applications, Vol. 339 of the series advances in intelligent systems and computing (Vol. 339, pp. 11–19). doi:10.1007/978-81-322-2250-7_2.
Patel, N. J., & Jhaveri, R. H. (2015). Trust based approaches for secure routing in VANET: A survey. Procedia Computer Science. InInternational conference on advanced computing technologies and applications (ICACTA), Vol. 45, pp. 592–601.
Liu, J., Wan, J., Wang, Q., Deng, P., Zhou, K., & Qiao, Y. (2016). A survey on position-based routing for vehicular ad hoc networks. Telecommunication System, 62(1), 15–30.
Kumar, S., & Verma, A. K. (2015). Position based routing protocols in VANET: A survey. Wireless Personal Communications, 83(4), 2747–2772.
Kenichi, M. A. S. E. (2016). A survey of geographic routing protocols for vehicular ad hoc networks as a sensing platform. IEICE Transactions on Communications., B(9), 1938–1948.
Sirika, S., & Mahajan, S. (2016). Survey on dynamic routing protocols. International Journal of Engineering Research & Technology, 5(1), 10–14.
Shin, J., Baek, Y., & Son, S. H. (2016). Fundamental topology-based routing protocols for autonomous vehicles. In IEEE 22nd international conference on embedded and real-time computing systems and applications (RTCSA) (p. 265). doi:10.1109/RTCSA.2016.56.
Bitam, S., Mellouk, A., & Zeadally, S. (2015). Bio-inspired routing algorithms survey for vehicular ad hoc networks. IEEE Communications Surveys & Tutorials, 17(2), 843–867.
Hajlaoui, R., Guyennet, H., & Moulahi, T. (2016). A survey on heuristic-based routing methods in vehicular ad-hoc network: Technical challenges and future trends. IEEE Sensors Journal, 16(17), 6782–6792.
Altayeb, M., & Mahgoub, I. (2013). A survey of vehicular ad hoc networks routing protocols. International Journal of Innovation and Applied Studies, 3(3), 829–846.
Narang, G., & Juneja, Y. (2015). Review on classification of different VANET protocols based on routing information. International Journal of Advanced Research in Computer and Communication Engineering, 4(5), 388–392.
Patel, D., Faisal Khan, M., Batavia, P., Makhija, S., & Roja, M. M. (2016). Overview of routing protocols in VANET. International Journal of Computer Applications, 136(9), 4–7.
Thenmozhi, R., Yusuf, H., Vignesh, K., & Dinesh, J. (2014). Survey on collision avoidance system in VANET. International Journal of Innovative Research & Development, 3(4), 69–77.
Xu, S., Guo, P., Xu, B., & Zhou, H. (2013). QoS evaluation of VANET routing protocols. Journal of Networks, 8(1), 132–139.
Batish, S., Mehan, B., Bhatia, R., & Dhiman, A. (2015). Performance analysis of various routing protocols with preference to border nodes in VANET environment. International Journal of Computer Applications, 121(7), 10–18.
Ali, F., Karim, F., Shaikh, A. Q., Ansari, N. A., & Mahoto, E. F. (2015). Comparative analysis of VANET routing protocols: On road side unit placement strategies. Wireless Personal Communications, 85(2), 393–406.
Kang, H., Ahmed, S. H., Kim, D., & Chung, Y.-S. (2015). Routing protocols for vehicular delay tolerant networks: A survey. International Journal of Distributed Sensor Networks—Special issue on Vehicular Delay Tolerant and Sensor Networks: Protocols and Applications, 11(3). Article ID 325027. 9 pages.
Jothi, K. R., & Jeyakumar, A. E. (2013). A survey on broadcasting protocols in VANETs. International Journal of Innovative Technology and Exploring Engineering (IJITEE), 03(06), 100–103.
Ahmed, S. A. M., Ariffin, S. H. S., Norsheila Fisal, S. K., Syed-Yusof, S., & Latif, N. M. A. (2014). Survey on broadcasting in VANETs. Research Journal of Applied Sciences, Engineering and Technology, 7(18), 3733–3739.
Nagaraj, U., & Dhamal, P. (2011). Broadcasting routing protocols in VANET. Network and Complex System, 1(2), 13–19.
Cooper, C., Franklin, D., Ros, M., Safaei, F., & Abolhasan, M. (2016). A comparative survey of VANET clustering techniques. IEEE Communications Surveys & Tutorials,. doi:10.1109/COMST.2016.2611524.
Yang, P., Wang, J., Zhang, Y., Tang, Z., & Song, S. (2015). Clustering algorithm in VANETs: A survey. In IEEE 9th international conference on anti-counterfeiting, security, and identification (ASID) (pp. 166–170). doi:10.1109/ICASID.2015.7405685.
Rani, A., & Ranga, A. (2016). Providing quality of service support for VANET: Survey. Imperial Journal of Interdisciplinary Research (IJIR), 2(9), 1219–1223.
Yogi, A., & Surana, J. (2013). An analysis & survey on quality of service improvement in MANET, VANET and WSN. International Journal of Science and Research (IJSR), 4(11), 2048–2051.
Vijayakumar, V., Inbavalli, P., Joseph, K. S., Amudhavel, J., Rajaguru, D., Sampath Kumar, S., et al. (2015). Research on QoS aware dynamic reconfiguration and performance measures in VANET. In Proceedings of 2015 global conference on communication technologies. doi:10.1109/GCCT.2015.7342777. Pp 829-833.
Amjad, Z., & Song, W.-C. (2015). Road aware QoS routing in VANETs. Network Operations and management symposium (APNOMS), 17th Asia-Pacific (pp. 133–138). doi:10.1109/APNOMS.2015.7275415.
Sharma, M., & Tiwari, K. K. (2016). Different approaches for quality of service based routing protocol for VANETs: Review paper. International Journal of Advanced Research in Computer Science and Electronics Engineering (IJARCSEE), 5(3), 35–41.
Karagiannis, G., Altintas, O., Ekici, E., Heijenk, G., Jarupan, B., Lin, K., et al. (2011). Vehicular networking: A survey and tutorial on requirements, architectures, challenges, standards and solutions. IEEE Communications Surveys & Tutorials, 13(4), 584–616.
Memon, I., Chen, L., Majid, A., Lv, M., Hussain, I., & Chen, G. (2014). Travel recommendation using geo-tagged photos in social media for tourist. Wireless Personal Communications, 80(4), 1347–1362.
Kumar, V., Mishra, S., & Chand, N. (2013). Applications of VANETs: Present & future. Communications and Network, 05(01), 12–15.
Cristofer, E., Chen, L., Vinel, A., & Lin, S. Y. (2015). Future applications of VANETs (pp. 525–544). Springer International Publishing. doi:10.1007/978-3-319-15497-8-18.
Memon, I., & Arain, Q. A. (2016). Dynamic path privacy protection framework for continuous query service over road networks. New York: Springer Science+Business Media. doi:10.1007/s11280-016-0403-3.
Yu, R., Zhang, Y., Gjessing, S., Xia, W., & Yang, K. (2013). Toward cloud-based vehicular networks with efficient resource management. IEEE Network, 27(5), 48–55.
Cheng, H. T., Shan, H., & Zhuang, W. (2010). Infotainment and road safety service support in vehicular networking: From a communication perspective. Elsevier Mechanical Systems and Signal Processing, 25(6), 2020–2038.
Wu, X., Subramanian, S., Guha, R., et al. (2013). Vehicular communications using DSRC: Challenges, enhancements, and evolution. IEEE Journal on Selected Areas in Communications, 31(09), 399–408.
Saini, M., Alelaiwi, A., & Aaddik, A. E. (2015). How close are we to realizing a pragmatic VANET solution? ACM Computing Surveys, 48(2), 1–40.
Morgan, Y. L. (2010). Notes on DSRC & WAVE standards suite: Its architecture, design, and characteristics. IEEE Communications Surveys & Tutorials, 12(4), 504–518.
3GPP, TS 36.300. (2010). Evolved universal terrestrial radio access (E-ULTRA) and evolved universal radio access network (E-UTRAN). TS 36.300 version 9.4.0 Release 9.
Araniti, G., Campolo, C., Condoluci, M., Iera, A., & Molinaro, A. (2013). LTE for vehicular networking: A survey. IEEE Communications Magazine, 51(5), 148–157.
Samara, G., & Alhmiedat, T. (2014). Intelligent emergency message broadcasting in VANET using PSO. World of Computer Science and Information Technology Journal (WCSIT), 04(07), 90–100.
Chaqfeh, M., Lakas, A., & Jawhar, I. (2014). A survey on data dissemination in vehicular ad hoc networks. Vehicular Communications, 01(04), 214–225.
Cha, S.-H. (2014). A survey of broadcast protocols for vehicular ad-hoc networks. Smart Computing Review, 04(04), 246–255.
Jangyodsuk, P. (2010). Reliable broadcasting in VANET (pp. 1–62). SJSU ScholarWorks: San Jose State University.
Sasan, A., & Erfani, S. (2005). Mobile ad-hoc networks with QoS and RSVP provisioning. Canadian conference on electrical and computer engineering (pp. 2069–2072). doi:10.1109/CCECE.2005.1557394.
Singh, V. K., Kushwaha, D. S., Sujane, R., & Taram, M. (2015). Survey of quality of services to improved performance of routing in MANET. International Journal of Computer Science and Information Technologies (IJCSIT), 06(05), 4599–4604.
Gajare, S., Deore, P., & Wagh, S. (2014). Traffic management in VANET using clustering. International Journal of Engineering and Technical Research (IJETR), 02(05), 175–180.
Kassem, A. (2015). QoS provisioning in VANET infrastructure (pp. 1–11). Lebanon: Faculty of Engineering, IUL University.
Nakorn, N. N., & Rojviboonchai, K. (2010). DECA: Density-aware reliable broadcasting in vehicular ad hoc networks. In Proceedings of the international conference on electrical engineering/electronics computer telecommunications and information technology (ECTI-CON), Chaing Mai, Thailand (pp. 598–602).
Muthamizh, B., Sathya, S. S., & Chitra, M. (2014). Spanning tree based broadcasting for VANET. International Journal of P2P Network Trands and Technology (IJPTT). 7, 21–25.
Laouiti, A., Mhlethaler, P., & Toor, Y. (2009). Reliable opportunistic broadcast in VANETs (R-OB-VAN). In Intelligent transport systems telecommunications (ITST) (pp. 382–387). doi:10.1109/ITST.2009.5399325.
Galaviz-Mosqueda, A., Villarreal-Reyes, S., Galeana-Zapin, H., Rubio-Loyola, J., & Covarrubias-Rosales, D. H. (2014). Reliable multihop broadcast protocol with a low-overhead link quality assessment for ITS based on VANETs in highway scenarios. Hindawi Publishing Corporation the Scientific World Journal,. doi:10.1155/2014/359636.
Wahab, O. A., Otrok, H., & Mourad, A. (2013). VANET QoS-OLSR: QoS-based clustering protocol for vehicular ad hoc networks. Computer Communications, 36(13), 1422–1435.
Al-Kubati, G., Al-Dubai, A., Mackenzie, L., & Pezaros, D. P. (2014). Efficient road topology based broadcast protocol for VANETs. In 2014 IEEE wireless communications and networking conference (WCNC) (pp. 2710–2715). IEEE. doi:10.1109/WCNC.2014.6952857.
Rehan, M., Hasbullah, H., Rehan, W., & Chughtai, O. (2015). ZoomOut HELLO: A novel 1-hop broadcast scheme to improve network QoS for VANET on highways (Vol. 306). Singapore: Springer.
Salvador, G., & Ramos, V. (2015). Fast-OB-VAN: A fast opportunistic broadcast protocol for VANETs. In 2015 9th international conference on next generation mobile applications, services and technologies (pp. 114–119). IEEE. doi:10.1109/NGMAST.2015.52.
Obara, K., Akamatsu, R., & Shigeno, H. (2015). BRNT: Broadcast protocol with road network topology for urban vehicular ad hoc networks. In 2015 IEEE 82nd vehicular technology conference (VTC2015-Fall) (Vol. 2015, pp 1–5). IEEE. doi:10.1109/VTCFall.7390858.
Najafzadeh, S., Ithnin, N., Razak, S. A., & Karimi, R. (2014). BSM: Broadcasting of safety messages in vehicular ad hoc networks. Arabian Journal for Science and Engineering, 39(2), 777–782.
Bononi, L., Felice, M. D., & Pizzi, S. (2009). DBA-MAC: Dynamic backbone-assisted medium access control protocol for efficient broadcast in VANETs. Journal of Interconnection Networks, 10(04), 321–344.
Tonguz, O. K., Wisitpongphan, N., & Bai, F. (2010). DV-CAST: A distributed vehicular broadcast protocol for vehicular ad hoc networks. IEEE Wireless Communications, 17(02), 47–57.
Ghodrati, A. D. (2013). Reduces broadcast storm using clustering in VANTEs. International Research Journal of Applied and Basic Sciences, 07(13), 979–987.
Vegni, A. M., Stramacci, A., & Natalizio, E. (2012). SRB: A selective reliable broadcast protocol for safety applications in VANET. In Proceedings of international conference on selected topics in mobile & wireless networking (iCOST 2012), Avignon, France (pp. 89–94). doi:10.1109/iCOST.2012.6271297.
Villas, L. A., Boukerche, A., Maia, G., Pazzi, R. W., & Loureiro, A. A. F. (2014). DRIVE: An efficient and robust data dissemination protocol for highway and urban vehicular ad hoc networks. Computer Networks., 75(A), 381–394.
Ghodrati, A. D., & Mohammadkhanli, L. (2013). A new cluster-based efficient broadcast algorithm for alert message dissemination in VANETs. International Research Journal of Applied and Basic Sciences (IRJABS)., 4, 1235–1244.
Haritha, D., & Lalitha, R. V. S. (2014). Broadcasting mechanism for dissemination of data in VANETs. International Journal of Advance Research in Computer Science and Management Studies, 2(9), 133–141.
Ucar, S., Ergen, S. C., & Ozkasap, O. (2015). Multihop-cluster-based IEEE 802.11p and LTE hybrid architecture for VANET safety message dissemination. IEEE Transactions on Vehicular Technology, 65(4), 2621–2636.
Luo, Y., Zhang, W., & Hu, Y. (2010). A new cluster based routing protocol for VANET. In Networks security wireless communications and trusted computing NSWCTC second international conference (pp. 176–180). doi:10.1109/NSWCTC.2010.48.
Slavik, M., & Mahgoub, I. (2013). Spatial distribution and channel quality adaptive protocol for multihop wireless broadcast routing in VANET. IEEE Transactions on Mobile Computing, 12(4), 722–734.
Alshaer, H., & Horlait, E. (2005). An optimized adaptive broadcast scheme for inter-vehicle communication. In Proceedings of the IEEE 61st vehicular technology conference (VTC) (pp. 2840–2844). doi:10.1109/VETECS.2005.1543865.
Nekovee, M., & BjamiBogason, B. (2007). Reliable and efficient information dissemination in intermittently connected vehicular ad hoc networks. In IEEE the 65th VTC’07 spring, Dublin, Ireland (pp. 2486–2490). doi:10.1109/VETECS.2007.512.
Lima, D. S., Paula, M. R. P., Roberto, F. M., Cardoso, A. R., & Junior, J. C. (2015). ProbT: A temporal probabilistic protocol to mitigate the broadcast storm problem in VANETs. In 2015 international conference on information networking (ICOIN) (pp. 7–12). doi:10.1109/ICOIN.2015.7057848.
Lima, S., Larces, D., Junior, C., & Larces, J. (2016). E-ProbT: A new approach to mitigate the broadcast storm problem in VANETs (pp. 709–715). doi:10.1145/2851613.2851855.
Al-Dubai, A. Y., Khalaf, M. B., Gharibi, W., & Ouenniche, J. (2016). A new adaptive probabilistic broadcast protocol for vehicular networks. In 2015 IEEE 81st vehicular technology conference (VTC Spring) (pp 1–5). IEEE. doi:10.1109/VTCSpring.2015.7145627.
Naja, A., Essaaidi, M., & Boulmalf, M. (2016). CPROB: A dynamic hybrid broadcasting protocol for vehicular ad hoc networks. In 2016 international conference on electrical and information technologies (ICEIT) (pp. 355–361). IEEE. doi:10.1109/EITech.2016.7519620.
Chaqfeh, M., & Lakas, A. (2014). Speed adaptive probabilistic broadcast for scalable data dissemination in vehicular ad hoc networks. In 10th international wireless communications and mobile computing (IWCMC 2014) (pp. 207–712). doi:10.1109/IWCMC.2014.6906358.
Tahmasbi-Sarvestani, A., Fallah, Y. P., & Kulathumani, V. (2015). Network-aware double-layer distance-dependent broadcast protocol for VANETs. IEEE Transactions on Vehicular Technology, 64(12), 5536–5546.
Wu, C., Chen, X., Ji, Y., Ohzahata, S., & Kato, T. (2015). Efficient broadcasting in VANETs using dynamic backbone and network coding. IEEE Transactions on Wireless Communications, 14(11), 6057–6071.
Choi, J. I., Nam, J. C., & Cho, Y. Z. J. (2014). Robust broadcast scheme regardless of vehicle distribution in vehicular ad hoc networks. Wireless Com Network, 133, 1–8. doi:10.1186/1687-1499-2014-133.
Yang, J., & Fei, Z. (2013). Broadcasting with prediction and selective forwarding in vehicular networks. International Journal of Distributed Sensor Networks, 9(12), 1–9.
Gonzalez, S., & Ramos, V. (2016). Preset delay broadcast: A protocol for fast information dissemination in vehicular ad hoc networks (VANETs). EURASIP Journal on Wireless Communications and Networking, 117, 1–13.
Bi, Y., Shan, H., Shen, X. S., Wang, N., & Zhao, H. (2016). A multi-hop broadcast protocol for emergency message dissemination in urban vehicular ad hoc networks. IEEE Transactions on Intelligent Transportation Systems, 17(3), 736–750.
Chang, B.-J., Liang, Y.-H., & Huang, Y.-D. (2015). Adaptive message forwarding for avoiding broadcast storm and guaranteeing delay in active safe driving VANET. Wireless Networks, 21(3), 739–756.
Wu, X., Zheng, J., Tong, H., & Mitton, N. (2014). DAYcast: A dynamic transmission delay based broadcast protocol for vehicular ad hoc networks. In 2014 IEEE international conference on communications (ICC) (pp. 563–567). IEEE. doi:10.1109/ICC.2014.6883378.
Wu, C., Ji, Y., Chen, X., Ohzahata, S., & Kato, T. (2015). An intelligent broadcast protocol for VANETs based on transfer learning. In 2015 IEEE 81st vehicular technology conference (VTC Spring) (pp. 1–6). IEEE. doi:10.1109/VTCSpring.2015.7145689.
Celimuge, W. U., Ohzahata, S., & Toshohiko, K. A. T. O. (2012). Vanet broadcast protocol based on fuzzy logic and lightweight retransmission mechanism. The Institute of Electronics, Information and Communication Engineers (IEICE) Transactions on Communications, E95.B(2), 415–425.
Slavik, M., Mahgoub, I., & Alwakeel, M. (2015). Efficient multi-hop wireless broadcast protocol in vehicular networks using automated threshold function design. International Journal of Communication Systems, 28(12), 1829–1846.
Wu, C., Ohzahata, S., Ji, Y., & Kato, T. (2015). Joint fuzzy relays and network-coding-based forwarding for multihop broadcasting in VANETs. IEEE Transactions on Intelligent Transportation Systems, 16(3), 1415–1427.
Akabane, A. T., Villas, L. A., & Madeira, E. R. M. (2014). GTO: a broadcast protocol for highway environments over diverse traffic conditions. In 2014 IEEE 13th international symposium on network computing and applications (pp. 37–40). doi:10.1109/NCA.2014.10.
Taha, M. M. I., & Hasan, Y. M. Y. (2007). VANET-DSRC protocol for reliable broadcasting of life safety messages. In Proceedings of the IEEE international symposium on signal processing and information technology, Giza, Egypt (pp. 104–109). doi:10.1109/ISSPIT.2007.4458046.
Sun, W., Xia, F., Ma, J., Fu, T., & Sun, Y. (2012). An optimal ODAM-based broadcast algorithm for vehicular ad-hoc networks. Transactions on Internet and Information Systems, 06(12), 3257–3274.
Sung, Y., & Lee, M. (2012). Light-weight reliable broadcast message delivery for vehicular ad-hoc networks. In Proceeding of the 75th IEEE vehicular technology conference, Yokohama, Japan (pp. 1–6). doi:10.1109/VETECS.2012.6240315.
Yang, Q., & Shen, L. (2010). A multi-hop broadcast scheme for propagation of emergency messages in VANET. In IEEE IEEE 12th international conference on communication technology (pp. 1072–1075). doi:10.1109/ICCT.2010.5688509.
Durresi, M., Durresi, A., & Barolli, L. (2005). Emergency broadcast protocol for inter-vehicle communications. In Proceedings of the 2005 11th international conference on parallel and distributed systems (ICPADS’05) (pp. 1–5). doi:10.1109/ICPADS.2005.147.
Rojviboonchai, K., & Nakorn, N. N. (2010). POCA : Position-aware reliable broadcasting in VANET. In Proceedings of the 2nd Asia-Pacific conference of information processing APCIP20IO, Nanchang, China (pp. 420–428). doi:10.1155/2014/969076.
Sun, M. (2000). GPS-based message broadcasting for adaptive inter-vehicle communications. In Proceedings of vehicular technology conference, IEEE-VTS Fall VTC 52nd (pp. 2685–2692). doi:10.1109/VETECF.2000.886811.
Maia, G., Aquino, A. L. L., Viana, A., Boukerche, A., & Loureiro, A. A. F. (2012). HyDi: A hybrid data dissemination protocol for highway scenarios in vehicular ad hoc networks. In ACM international symposium on design and analysis of intelligent vehicular networks and applications (DIVANet’12) (pp. 115–122). doi:10.1145/2386958.2386976.
Maia, G., Rezende, C., Villas, L. A., Boukerche, A., Viana, A. C., Aquino, A. L., et al. (2013). Traffic aware video dissemination over vehicular ad hoc networks. In ACM international conference on modeling, analysis and simulation of wireless and mobile systems (MSWiM 13) (pp. 419–426). doi:10.1145/2507924.2507962.
Korkmaz, G., Ekici, E., Özgüner, F., & Özgüner, Ü. (2004). Urban multi-hop broadcast protocol for inter-vehicle communication systems. In Proceedings of the 1st ACM international workshop on vehicular ad hoc networks (VANET ’04), New York, USA (pp. 76–85). doi:10.1145/1023875.1023887.
Altintas, O., Dressler, F., Hartenstein, H., & Tonguz, O. K., (2014). Inter-vehicular communication Quo Vadis. Karlsruhe Institute of Technology (KIT) Dagstuhl Reports (Vol. 52, no. 06., pp. 170–177).
Liang, W., Li, Z., Zhang, H., Wang, S., & Bie, R. (2015). Vehicular ad hoc networks: Architectures, research issues, methodologies, challenges, and trends. International Journal of Distributed Sensor Networks, 2015(1), 1–11.
Memon, I., Hussain, I., Akhtar, R., & Chen, G. (2015). Enhanced privacy and authentication: An efficient and secure anonymous communication for location based service using asymmetric cryptography scheme. Wireless Personal Communications, 84(2), 1487–1508.
Faezipour, M., Nourani, M., Saeed, A., & Addepalli, S. (2012). Progress and challenges in intelligent vehicle area networks. Communications of the ACM, 55(02), 90–100.
Humayun, K. M. (2013). Research issues on vehicular ad hoc network. International Journal of Engineering Trends and Technology (IJETT), 06(04), 174–179.
Guleria, A., Singh, K., & Chand, N. (2015). QoS aware service scheduling scheme for VANETs. International Journal of Distributed Sensor Networks. Article ID 282978, 11 pages.
Singh, K. D., Rawat, P., & Bonnin, J.-M. (2014). Cognitive radio for vehicular ad hoc networks (CR-VANETs): Approaches and challenges. EURASIP Journal on Wireless Communications and Networking, 01(49), 1–22.
Vegni, A. M., & Loscr, V. (2015). A survey on vehicular social networks. IEEE Communications Society, 17(4), 2397–2419.
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Mchergui, A., Moulahi, T., Alaya, B. et al. A survey and comparative study of QoS aware broadcasting techniques in VANET. Telecommun Syst 66, 253–281 (2017). https://doi.org/10.1007/s11235-017-0280-9
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DOI: https://doi.org/10.1007/s11235-017-0280-9