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How Close are We to Realizing a Pragmatic VANET Solution? A Meta-Survey

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Published:03 November 2015Publication History
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Abstract

Vehicular Ad-hoc Networks (VANETs) are seen as the key enabling technology of Intelligent Transportation Systems (ITS). In addition to safety, VANETs also provide a cost-effective platform for numerous comfort and entertainment applications. A pragmatic solution of VANETs requires synergistic efforts in multidisciplinary areas of communication standards, routings, security and trust. Furthermore, a realistic VANET simulator is required for performance evaluation. There have been many research efforts in these areas, and consequently, a number of surveys have been published on various aspects. In this article, we first explain the key characteristics of VANETs, then provide a meta-survey of research works. We take a tutorial approach to introducing VANETs and gradually discuss intricate details. Extensive listings of existing surveys and research projects have been provided to assess development efforts. The article is useful for researchers to look at the big picture and channel their efforts in an effective way.

References

  1. Mohamed A. Abdel-Aty, Mohamed M. Ahmed, Jaeyoung Lee, Qi Shi, and Muamer Abuzwidah. 2012. Synthesis of Visibility Detection Systems. Technical Report. Department of Civil, Environmental and Construction Engineering, University of Central Florida, Orlando, FL.Google ScholarGoogle Scholar
  2. Atef Abdrabou and Weihua Zhuang. 2011. Probabilistic delay control and road side unit placement for vehicular ad hoc networks with disrupted connectivity. IEEE Journal on Selected Areas in Communications 29, 1, 129--139. Google ScholarGoogle ScholarDigital LibraryDigital Library
  3. Sana Ajmal, Asim Rasheed, Amir Qayyum, and Aamir Hasan. 2014. Classification of VANET MAC, routing and approaches: A detailed survey. Journal of Universal Computer Science 20, 4, 462--487.Google ScholarGoogle Scholar
  4. H. Al Falasi and E. Barka. 2011. Revocation in VANETs: A survey. In IEEE International Conference on Innovations in Information Technology. 214--219.Google ScholarGoogle Scholar
  5. Saif Al-Sultan, Moath M. Al-Doori, Ali H. Al-Bayatti, and Hussien Zedan. 2014. A comprehensive survey on vehicular Ad Hoc network. Journal of Network and Computer Applications 37, 380--392. Google ScholarGoogle ScholarDigital LibraryDigital Library
  6. Kazi Masudul Alam, Mukesh Saini, Dewan T. Ahmed, and Abdulmotaleb El Saddik. 2014. VeDi: A vehicular crowd-sourced video social network for VANETs. In IEEE Conference on Local Computer Networks Workshops. 738--745.Google ScholarGoogle ScholarCross RefCross Ref
  7. Kazi Masudul Alam, Mukesh Saini, and A. El Saddik. 2015. Toward social Internet of vehicles: Concept, architecture, and applications. Access, IEEE 3, 343--357.Google ScholarGoogle ScholarCross RefCross Ref
  8. Salim Allal and Saadi Boudjit. 2013. Geocast routing protocols for VANETs: Survey and geometry-driven scheme proposal. Journal of Internet Services and Information Security 3, 1/2, 20--36.Google ScholarGoogle Scholar
  9. Mazen Alsliety and Daniel Aloi. 2006. A low profile microstrip Yagi dipole antenna for wireless communications in the 5 GHz band. In IEEE International Conference on Electro/information Technology. 525--528.Google ScholarGoogle ScholarCross RefCross Ref
  10. Marwa Altayeb and Imad Mahgoub. 2013. A survey of vehicular ad hoc networks routing protocols. International Journal of Innovation and Applied Studies 3, 3, 829--846.Google ScholarGoogle Scholar
  11. Marica Amadeo, Claudia Campolo, and Antonella Molinaro. 2012. Enhancing IEEE 802.11 p/WAVE to provide infotainment applications in VANETs. Ad Hoc Networks 10, 2, 253--269. Google ScholarGoogle ScholarDigital LibraryDigital Library
  12. Giuseppe Araniti, Claudia Campolo, Massimo Condoluci, Antonio Iera, and Antonella Molinaro. 2013. LTE for vehicular networking: A survey. IEEE Communications Magazine 51, 5, 148--157.Google ScholarGoogle ScholarCross RefCross Ref
  13. Baber Aslam and Cliff C. Zou. 2011. Optimal roadside units placement along highways. In IEEE Consumer Communications and Networking Conference. 814--815.Google ScholarGoogle Scholar
  14. Orville Asper. 1972. The detectability of two slow vehicle warning devices. Journal of Safety Research 4, 2, 85--89.Google ScholarGoogle Scholar
  15. ASTM. 2010. Standard specification for telecommunications and information exchange between roadside and vehicle systems-5 GHz band Dedicated Short Range Communications (DSRC) Medium Access Control (MAC) and Physical Layer (PHY) Specifications. ASTM E2213-03 Book of Standards 4, 3, 1--26.Google ScholarGoogle Scholar
  16. Ihn-Han Bae and Stephan Olariu. 2010. A tolerant context-aware driver assistance system for {VANETs}-based smart cars. In IEEE Global Telecommunications Conference. 1--5.Google ScholarGoogle ScholarCross RefCross Ref
  17. Amit M. Bajare and A. S. Alvi. 2013. A survey on vehicular Ad hoc network models. International Journal of Emerging Technology and Advanced Engineering 3, 3, 372--378.Google ScholarGoogle Scholar
  18. Rimon Barr. 2004. SWANS-scalable wireless ad hoc network simulator: User Guide. http://jist.ece.cornell.edu/docs/040319-swans-user.pdf.Google ScholarGoogle Scholar
  19. Stefano Basagni, Marco Conti, Silvia Giordano, and Ivan Stojmenovic. 2004. Mobile ad hoc networking. John Wiley & Sons, Hoboken, NJ. Google ScholarGoogle ScholarDigital LibraryDigital Library
  20. R. Baumann. 2004. Vehicular Ad hoc Networks. Master’s Thesis. ETH Zurich, Zurich, Switzerland.Google ScholarGoogle Scholar
  21. Marc Bechler, Sven Jaap, and Lars Wolf. 2005. An optimized TCP for Internet access of vehicular ad hoc networks. In Networking. Springer, 869--880. Google ScholarGoogle ScholarDigital LibraryDigital Library
  22. Abderrahim Benslimane. 2004. Optimized dissemination of alarm messages in vehicular ad-hoc networks (VANET). In High Speed Networks and Multimedia Communications, Lecture Notes in Computer Science, Zoubir Mammeri and Pascal Lorenz (Eds). Springer, 655--666.Google ScholarGoogle Scholar
  23. Marcin Bernaś. 2012. VANETs as a part of weather warning systems. In Computer Networks. Springer, 459--466.Google ScholarGoogle Scholar
  24. James Bernsen and D. Manivannan. 2009. Unicast routing protocols for vehicular ad hoc networks: A critical comparison and classification. Pervasive and Mobile Computing 5, 1, 1--18. Google ScholarGoogle ScholarDigital LibraryDigital Library
  25. Christian Bettstetter, Giovanni Resta, and Paolo Santi. 2003. The node distribution of the random waypoint mobility model for wireless ad hoc networks. IEEE Transactions on Mobile Computing 2, 3, 257--269. Google ScholarGoogle ScholarDigital LibraryDigital Library
  26. Vimal Bibhu and Dhirendra Kumar Singh. 2012. Survey of MAC layer protocols for vehicular Ad Hoc network. International Journal of Information Technology and Computer Science 4, 2, 286--295.Google ScholarGoogle ScholarCross RefCross Ref
  27. Sardar Muhammad Bilal, Carlos Jesus Bernardos, and Carmen Guerrero. 2013. Position-based routing in vehicular networks: A survey. Journal of Network and Computer Applications 36, 2, 685--697. Google ScholarGoogle ScholarDigital LibraryDigital Library
  28. Katrin Bilstrup, Elisabeth Uhlemann, Erik G. Strom, and Urban Bilstrup. 2008. Evaluation of the IEEE 802.11 p MAC method for vehicle-to-vehicle communication. In IEEE Vehicular Technology Conference. 1--5.Google ScholarGoogle Scholar
  29. Christopher M. Bishop. 2006. Pattern recognition and machine learning. Springer, New York, NY. Google ScholarGoogle ScholarDigital LibraryDigital Library
  30. Matt Blaze, Joan Feigenbaum, and Angelos D. Keromytis. 1999. KeyNote: Trust management for public-key infrastructures. In Security Protocols. Springer, 59--63. Google ScholarGoogle ScholarDigital LibraryDigital Library
  31. Matt Blaze, Joan Feigenbaum, and Martin Strauss. 1998. Compliance checking in the policymaker trust management system. In Financial cryptography. Springer, 254--274. Google ScholarGoogle ScholarDigital LibraryDigital Library
  32. Jeremy J. Blum, Azim Eskandarian, and Lance J. Hoffman. 2004. Challenges of intervehicle ad hoc networks. IEEE Transactions on Intelligent Transportation Systems 5, 4, 347--351. Google ScholarGoogle ScholarDigital LibraryDigital Library
  33. Manuel Blum, Paul Feldman, and Silvio Micali. 1988. Non-interactive zero-knowledge and its applications. In Annual ACM Symposium on Theory of Computing. 103--112. Google ScholarGoogle ScholarDigital LibraryDigital Library
  34. Hervé Boeglen, Benoît Hilt, Pascal Lorenz, Jonathan Ledy, A.-M. Poussard, and Rodolphe Vauzelle. 2011. A survey of V2V channel modeling for VANET simulations. In IEEE International Conference on Wireless On-Demand Network Systems and Services. 117--123.Google ScholarGoogle ScholarCross RefCross Ref
  35. Luciano Bononi, Marco Di Felice, Gabriele DAngelo, Michele Bracuto, and Lorenzo Donatiello. 2008. MoVES: A framework for parallel and distributed simulation of wireless vehicular ad hoc networks. Computer Networks 52, 1, 155--179. Google ScholarGoogle ScholarDigital LibraryDigital Library
  36. M. J. Booysen, S. Zeadally, and G.-J. van Rooyen. 2011. Survey of media access control protocols for vehicular ad hoc networks. IET Communications 5, 11, 1619--1631.Google ScholarGoogle ScholarCross RefCross Ref
  37. Stefan Brands. 2002. A technical overview of digital credentials. Retrieved September 27, 2015 from http://www.credentica.com/overview.pdf.Google ScholarGoogle Scholar
  38. Tom Brijs, Dimitris Karlis, Filip Van den Bossche, and Geert Wets. 2007. A Bayesian model for ranking hazardous road sites. Journal of the Royal Statistical Society: Series A (Statistics in Society) 170, 4, 1001--1017.Google ScholarGoogle ScholarCross RefCross Ref
  39. Sonja Buchegger and Jean-Yves Le Boudec. 2002. Performance analysis of the CONFIDANT protocol. In ACM International Symposium on Mobile Ad hoc Networking & Computing. 226--236. Google ScholarGoogle ScholarDigital LibraryDigital Library
  40. Andreas Buchenscheit, Florian Schaub, Frank Kargl, and Michael Weber. 2009. A VANET-based emergency vehicle warning system. In IEEE Vehicular Networking Conference. 1--8.Google ScholarGoogle ScholarCross RefCross Ref
  41. Levente Buttyan and Jean-Pierre Hubaux. 2001. Nuglets: A Virtual Currency to Stimulate Cooperation in Self-Organized Mobile Ad Hoc Networks. Technical Report. EPFL, Lausanne, Switzerland.Google ScholarGoogle Scholar
  42. Giorgio Calandriello, Panos Papadimitratos, Jean-Pierre Hubaux, and Antonio Lioy. 2007. Efficient and robust pseudonymous authentication in VANET. In ACM International Workshop on Vehicular Ad Hoc Networks. 19--28. Google ScholarGoogle ScholarDigital LibraryDigital Library
  43. California-PATH. 2015. Partners for Advanced Transportation TecHsnology. Retrieved September 27, 2015 from http://www.path.berkeley.edu/.Google ScholarGoogle Scholar
  44. Gordon D. B. Cameron and Gordon I. D. Duncan. 1996. PARAMICSparallel microscopic simulation of road traffic. The Journal of Supercomputing 10, 1, 25--53.Google ScholarGoogle ScholarCross RefCross Ref
  45. Srdjan Capkun, Levente Buttyán, and J.-P. Hubaux. 2003. Self-organized public-key management for mobile ad hoc networks. IEEE Transactions on Mobile Computing 2, 1, 52--64. Google ScholarGoogle ScholarDigital LibraryDigital Library
  46. Derek Caveney. 2010. Cooperative vehicular safety applications. IEEE Control Systems 30, 4, 38--53.Google ScholarGoogle ScholarCross RefCross Ref
  47. Ing-Chau Chang, Hung-Ta Tai, Dung-Lin Hsieh, Feng-Han Yeh, and Siao-Hui Chang. 2013. Design and implementation of the travelling time- and energy-efficient Android GPS navigation app with the VANET-based A* route planning algorithm. In IEEE International Symposium on Biometrics and Security Technologies. 85--92. Google ScholarGoogle ScholarDigital LibraryDigital Library
  48. Moumena Chaqfeh, Abderrahmane Lakas, and Imad Jawhar. 2014. A survey on data dissemination in vehicular ad hoc networks. Vehicular Communications 1, 4, 214--225.Google ScholarGoogle ScholarDigital LibraryDigital Library
  49. David Chaum. 1984. Blind signature system. In Advances in Cryptology. Springer, 153--153.Google ScholarGoogle ScholarDigital LibraryDigital Library
  50. David Chaum and Eugène Van Heyst. 1991. Group signatures. In Advances in Cryptology. Springer, 257--265. Google ScholarGoogle ScholarDigital LibraryDigital Library
  51. Chen Chen, Jie Zhang, Robin Cohen, and Pin-Han Ho. 2010. A trust-based message propagation and evaluation framework in VANETs. In International Conference on Information Technology Convergence and Services. 1--6.Google ScholarGoogle Scholar
  52. Lien-Wu Chen and Po-Chun Chou. 2013. A lane-level cooperative collision avoidance system based on vehicular sensor networks. In ACM International Conference on Mobile Computing and Networking. 131--134. Google ScholarGoogle ScholarDigital LibraryDigital Library
  53. Lien-Wu Chen, Pranay Sharma, and Yu-Chee Tseng. 2013a. Dynamic traffic control with fairness and throughput optimization using vehicular communications. IEEE Journal on Selected Areas in Communications 31, 9, 504--512.Google ScholarGoogle ScholarCross RefCross Ref
  54. Wai Chen, Ratul K. Guha, Taek Jin Kwon, John Lee, and Yuan-Ying Hsu. 2011. A survey and challenges in routing and data dissemination in vehicular ad hoc networks. Wireless Communications and Mobile Computing 11, 7, 787--795. Google ScholarGoogle ScholarDigital LibraryDigital Library
  55. Yuan-Lin Chen, Kun-Yuan Shen, and Shun-Chung Wang. 2013. Forward collision warning system considering both time--to--collision and safety braking distance. International Journal of Vehicle Safety 6, 4, 347--360.Google ScholarGoogle ScholarCross RefCross Ref
  56. Kuk-Hyun Cho and Min-Woo Ryu. 2012. A survey of greedy routing protocols for vehicular ad hoc networks. Smart Computing Review 2, 2, 125--137.Google ScholarGoogle Scholar
  57. David R. Choffnes and Fabián E. Bustamante. 2005. An integrated mobility and traffic model for vehicular wireless networks. In ACM International Workshop on Vehicular Ad Hoc Networks. 69--78. Google ScholarGoogle ScholarDigital LibraryDigital Library
  58. Ahmad Yusri Dak, Saadiah Yahya, and Murizah Kassim. 2012. A literature survey on security challenges in VANETs. International Journal of Computer Theory and Engineering 4, 6, 1007--1010.Google ScholarGoogle ScholarCross RefCross Ref
  59. Giuseppe De Marco, Masaharu Tadauchi, and Leonard Barolli. 2007. CAVENET: Description and analysis of a toolbox for vehicular networks simulation. In IEEE International Conference on Parallel and Distributed Systems, Vol. 2. 1--6. Google ScholarGoogle ScholarDigital LibraryDigital Library
  60. Hongmei Deng and Dharma P. Agrawal. 2004. TIDS: Threshold and identity-based security scheme for wireless ad hoc networks. Ad Hoc Networks 2, 3, 291--307.Google ScholarGoogle ScholarCross RefCross Ref
  61. Anup Dhamgaye and Nekita Chavhan. 2013. Survey on security challenges in VANET. International Journal of Computer Science and Network 2, 1, 88--96.Google ScholarGoogle Scholar
  62. J.-W. Ding, C.-F. Wang, F.-H. Meng, and T.-Y. Wu. 2010. Real-time vehicle route guidance using vehicle-to-vehicle communication. IET Communications 4, 7, 870--883.Google ScholarGoogle ScholarCross RefCross Ref
  63. Qing Ding, Xi Li, Ming Jiang, and XueHai Zhou. 2010. Reputation-based trust model in vehicular ad hoc networks. In IEEE International Conference on Wireless Communications and Signal Processing. 1--6.Google ScholarGoogle ScholarCross RefCross Ref
  64. Atakan Dogan, Gökhan Korkmaz, Yiting Liu, F. Ozguner, U. Ozguner, Keith Redmill, Oscar Takeshita, and K. Tokuda. 2004. Evaluation of intersection collision warning system using an inter-vehicle communication simulator. In IEEE International Conference on Intelligent Transportation Systems. 1103--1108.Google ScholarGoogle Scholar
  65. Yanchao Dong, Zhencheng Hu, Keiichi Uchimura, and Nobuki Murayama. 2011. Driver inattention monitoring system for intelligent vehicles: A review. IEEE Transactions on Intelligent Transportation Systems 12, 2, 596--614. Google ScholarGoogle ScholarDigital LibraryDigital Library
  66. Florian Dotzer, Lars Fischer, and Przemyslaw Magiera. 2005. Vars: A vehicle ad-hoc network reputation system. In IEEE International Symposium on a World of Wireless Mobile and Multimedia Networks. 454--456. Google ScholarGoogle ScholarDigital LibraryDigital Library
  67. Brij Bihari Dubey, Naveen Chauhan, and Prashant Kumar. 2010. A survey on data dissemination techniques used in VANETs. International Journal of Computer Applications 10, 7, 5--9.Google ScholarGoogle ScholarCross RefCross Ref
  68. Stephan Eichler. 2007. Performance evaluation of the IEEE 802.11 p WAVE communication standard. In IEEE Vehicular Technology Conference. 2199--2203.Google ScholarGoogle Scholar
  69. Carl Ellison, Bill Frantz, Butler Lampson, Ron Rivest, Brian Thomas, and Tatu Ylonen. 1999. SPKI certificate theory. Technical Report. IETF RFC 2693. Google ScholarGoogle ScholarDigital LibraryDigital Library
  70. Richard Gilles Engoulou, Martine Bellaïche, Samuel Pierre, and Alejandro Quintero. 2014. VANET security surveys. Computer Communications 44, 1--13.Google ScholarGoogle ScholarCross RefCross Ref
  71. Mohammed Erritali and Bouabid El Ouahidi. 2013. A survey on VANET intrusion detection systems. International Journal of Engineering and Technology 5, 2, 1985--1989.Google ScholarGoogle Scholar
  72. ETSITR102638. 2009. ETSI ITS Specification TR 102 638 V1.1.1. Intelligent Transport System (ITS); Vehicular Communications; Basic Set of Applications; Definition. Technical Report. ETSI - European Telecommunications Standards Institute, Sophia-Antipolis Cedex, France.Google ScholarGoogle Scholar
  73. Miad Faezipour, Mehrdad Nourani, Adnan Saeed, and Sateesh Addepalli. 2012. Progress and challenges in intelligent vehicle area networks. Communications of the ACM 55, 2, 90--100. Google ScholarGoogle ScholarDigital LibraryDigital Library
  74. Kevin Fall and Kannan Varadhan. 2007. The network simulator NS-2. Retrieved September 27, 2015 from http://www.isi.edu/nsnam/ns/.Google ScholarGoogle Scholar
  75. Martin Fellendorf and Peter Vortisch. 2001. Validation of the Microscopic Traffic Flow Model VISSIM in Different Real-World Situations. Technical Report. Transportation Research Board, Washington DC, USA.Google ScholarGoogle Scholar
  76. Michel Ferreira and Pedro M d’Orey. 2012. On the impact of virtual traffic lights on carbon emissions mitigation. IEEE Transactions on Intelligent Transportation Systems 13, 1, 284--295. Google ScholarGoogle ScholarDigital LibraryDigital Library
  77. Manuel Fogue, Piedad Garrido, Francisco J. Martinez, J.-C. Cano, Carlos T. Calafate, and Pietro Manzoni. 2012. Automatic accident detection: Assistance through communication technologies and vehicles. IEEE Vehicular Technology Magazine 7, 3, 90--100.Google ScholarGoogle ScholarCross RefCross Ref
  78. Manuel Fogue, Piedad Garrido, Francisco J. Martinez, J.-C. Cano, Carlos T. Calafate, Pietro Manzoni, and Miguel Sanchez. 2011. Prototyping an automatic notification scheme for traffic accidents in vehicular networks. In IEEE Wireless Days (WD). 1--5.Google ScholarGoogle Scholar
  79. Emanuel Fonseca and Andreas Festag. 2006. A survey of existing approaches for secure ad hoc routing and their applicability to VANETs. NEC Network Laboratories 28, 1--28.Google ScholarGoogle Scholar
  80. Garrick Forkenbrock, Mark Heitz, Richard L. Hoover, Bryan O’Harra, Scott Vasko, and Larry Smith. 2011. A Test Track Protocol for Assessing Forward Collision Warning Driver-Vehicle Interface Effectiveness. Technical Report. National Highway Traffic Safety Administration, Washington, DC.Google ScholarGoogle Scholar
  81. Richard M. Fujimoto, Kalyan Perumalla, Alfred Park, Hao Wu, Mostafa H. Ammar, and George F. Riley. 2003. Large-scale network simulation: How big? how fast?. In IEEE/ACM International Symposium on Modeling, Analysis and Simulation of Computer Telecommunications Systems. IEEE, 116--123.Google ScholarGoogle Scholar
  82. Masayuki Fujise, Akihito Kato, Katsuyoshi Sato, and Hiroshi Harada. 2002. Intelligent transport systems. In Wireless Communication Technologies: New Multimedia Systems. Springer, 171--200.Google ScholarGoogle Scholar
  83. Ana Gainaru, Ciprian Dobre, and Valentin Cristea. 2009. A realistic mobility model based on social networks for the simulation of VANETs. In IEEE Vehicular Technology Conference. 1--5.Google ScholarGoogle ScholarCross RefCross Ref
  84. Fernando Garcia, Pietro Cerri, Alberto Broggi, Arturo de la Escalera, and José María Armingol. 2012. Data fusion for overtaking vehicle detection based on radar and optical flow. In IEEE Intelligent Vehicles Symposium. 494--499.Google ScholarGoogle Scholar
  85. Esther L. George. 2013. The US Economy and Monetary Policy. Technical Report. Federal Reserve Bank of Kansas City, Kansas City, MO.Google ScholarGoogle Scholar
  86. Kayhan Zrar Ghafoor, Jaime Lloret, Kamalrulnizam Abu Bakar, Ali Safa Sadiq, and Sofian Ali Ben Mussa. 2013. Beaconing approaches in vehicular Ad Hoc networks: A survey. Wireless Personal Communications 73, 3, 1--28. Google ScholarGoogle ScholarDigital LibraryDigital Library
  87. Saeid Ghahremani, Mohammad Reza Jabbarpour Sattari, Sajad Khorsandroo, Mohamed Ahmed, and Rafidah Md Noor. 2013. A traffic control model on VANET environment for minimum road risk in a shortest way. In IEEE International Conference on Green High Performance Computing. 1--5.Google ScholarGoogle ScholarCross RefCross Ref
  88. Saira Gillani, Farrukh Shahzad, Amir Qayyum, and Rashid Mehmood. 2013. A survey on security in vehicular Ad Hoc networks. In Communication Technologies for Vehicles, Marion Berbineau, Magnus Jonsson, Jean-Marie Bonnin, Soumaya Cherkaoui, Marina Aguado, Cristina Rico-Garcia, Hassan Ghannoum, Rashid Mehmood, and Alexey Vinel (Eds.). Springer, 59--74.Google ScholarGoogle Scholar
  89. Eugenio Giordano, Raphael Frank, Giovanni Pau, and Mario Gerla. 2010. CORNER: A realistic urban propagation model for VANET. In IEEE International Conference on Wireless On-demand Network Systems and Services. 57--60. Google ScholarGoogle ScholarDigital LibraryDigital Library
  90. Philippe Golle, Dan Greene, and Jessica Staddon. 2004. Detecting and correcting malicious data in VANETs. In ACM International Workshop on Vehicular Ad Hoc Networks. 29--37. Google ScholarGoogle ScholarDigital LibraryDigital Library
  91. Félix Gómez Mármol and Gregorio Martínez Pérez. 2012. TRIP, a trust and reputation infrastructure-based proposal for vehicular ad hoc networks. Journal of Network and Computer Applications 35, 3, 934--941. Google ScholarGoogle ScholarDigital LibraryDigital Library
  92. Victor Gradinescu, Cristian Gorgorin, Raluca Diaconescu, Valentin Cristea, and Liviu Iftode. 2007. Adaptive traffic lights using car-to-car communication. In IEEE Vehicular Technology Conference. 21--25.Google ScholarGoogle ScholarCross RefCross Ref
  93. Sebastian Grafling, Petri Mahonen, and Janne Riihijarvi. 2010. Performance evaluation of IEEE 1609 WAVE and IEEE 802.11 p for vehicular communications. In Second International Conference on Ubiquitous and Future Networks. 344--348.Google ScholarGoogle Scholar
  94. Jyoti Grover, Manoj Singh Gaur, and Vijay Laxmi. 2013. Trust establishment techniques in VANET. In Wireless Networks and Security. Springer, 273--301.Google ScholarGoogle Scholar
  95. Zhang Guoqing, Mu Dejun, Xu Zhong, Yang Weili, and Cai Xiaoyan. 2008. A survey on the routing schemes of urban vehicular ad hoc networks. In Chinese Control Conference. 338--343.Google ScholarGoogle ScholarCross RefCross Ref
  96. Nitin Gupta, Ann M. Bisantz, and Tarunraj Singh. 2002. The effects of adverse condition warning system characteristics on driver performance: An investigation of alarm signal type and threshold level. Behaviour and Information Technology 21, 4, 235--248.Google ScholarGoogle ScholarCross RefCross Ref
  97. Abolhassan Halati, Henry Lieu, and Susan Walker. 1997. CORSIM-Corridor Traffic Simulation Model. Technical Report. American Society of Civil Engineers, New York, USA.Google ScholarGoogle Scholar
  98. Jerome Harri, Fethi Filali, and Christian Bonnet. 2009. Mobility models for vehicular ad hoc networks: A survey and taxonomy. IEEE Communications Surveys and Tutorials 11, 4, 19--41. Google ScholarGoogle ScholarDigital LibraryDigital Library
  99. Jérôme Härri, Marco Fiore, Fethi Filali, and Christian Bonnet. 2011. Vehicular mobility simulation with VanetMobiSim. Simulation 87, 4, 275--300. Google ScholarGoogle ScholarDigital LibraryDigital Library
  100. Hannes Hartenstein and Kenneth P. Laberteaux. 2008. A tutorial survey on vehicular ad hoc networks. IEEE Communications Magazine 46, 6, 164--171. Google ScholarGoogle ScholarDigital LibraryDigital Library
  101. Nicolas Hautière, Jérémie Bossu, Erwan Bigorgne, Nicolas Hiblot, Abderrahmane Boubezoul, Benoit Lusetti, and Didier Aubert. 2009. Sensing the Visibility Range at Low Cost in the SAFESPOT Road-side Unit. Technical Report. ITS World Congress, France.Google ScholarGoogle Scholar
  102. Roy Chaoming Hsu, Han-En Lin, and Andrew Wang. 2007. Mmb: A mobile music blogger system for inter-vehicle entertainment. In ACM Workshop on Wireless Multimedia Networking and Performance Modeling. 35--38. Google ScholarGoogle ScholarDigital LibraryDigital Library
  103. Wei-jen Hsu, Kashyap Merchant, Haw-wei Shu, Chih-hsin Hsu, and Ahmed Helmy. 2005. Weighted waypoint mobility model and its impact on ad hoc networks. ACM SIGMOBILE Mobile Computing and Communications Review 9, 1, 59--63. Google ScholarGoogle ScholarDigital LibraryDigital Library
  104. Colin I’Anson and Chris Mitchell. 1990. Security defects in CCITT recommendation X. 509: The directory authentication framework. Computer Communications Review 20, 2, 30--34. Google ScholarGoogle ScholarDigital LibraryDigital Library
  105. IEEE 1609.1. 2006. Trial-Use Standard for Wireless Access in Vehicular Environments (WAVE) - Resource Manager. Technical Report. IEEE Std. IEEE 1609.1, version 2006. IEEE, New York, NY.Google ScholarGoogle Scholar
  106. IEEE 1609.2. 2006. Trial-Use Standard for Wireless Access in Vehicular Environments (WAVE) Security Services for Applications and Management Messages. Technical Report. IEEE Std. IEEE 1609.2, version 2006. IEEE, New York, NY.Google ScholarGoogle Scholar
  107. IEEE 1609.3. 2006. IEEE Trial-Use Standard for Wireless Access in Vehicular Environments (WAVE)-Networking Services. Technical Report. IEEE Std. IEEE 1609.3, version 2007. IEEE, New York, NY.Google ScholarGoogle Scholar
  108. IEEE 1609.4. 2006. Trial-Use Standard for Wireless Access in Vehicular Environments (WAVE) Multi-Channel Operation. Technical Report. IEEE Std. IEEE 1609.4, version 2006. IEEE, New York, NY.Google ScholarGoogle Scholar
  109. Robert B. Isler and Nicola J. Starkey. 2010. Evaluation of a sudden brake warning system: Effect on the response time of the following driver. Applied Ergonomics 41, 4, 569--576.Google ScholarGoogle ScholarCross RefCross Ref
  110. IVI. 2005. Saving Lives through Advanced Vehicle Safety Technology. Technical Report. US Department of Transportation, Washington, DC.Google ScholarGoogle Scholar
  111. Boangoat Jarupan and Eylem Ekici. 2011. A survey of cross-layer design for VANETs. Ad Hoc Networks 9, 5, 966--983. Google ScholarGoogle ScholarDigital LibraryDigital Library
  112. M. S. Javadi, S. Habib, and M. A. Hannan. 2013. Survey on inter-vehicle communication applications: Current trends and challenges. Information Technology Journal 12, 2, 243--250.Google ScholarGoogle ScholarCross RefCross Ref
  113. Santhosh Jayachandran, Johnson Doraisami Jothi, and Siva Rama Krishnan. 2012. A case study on various routing strategies of VANETs. In Global Trends in Computing and Communication Systems. Springer, 353--362.Google ScholarGoogle Scholar
  114. Daniel Jiang and Luca Delgrossi. 2008. IEEE 802.11 p: Towards an international standard for wireless access in vehicular environments. In IEEE Vehicular Technology Conference. 2036--2040.Google ScholarGoogle Scholar
  115. Daniel Jiang, Vikas Taliwal, Andreas Meier, Wieland Holfelder, and Ralf Herrtwich. 2006. Design of 5.9 GHz DSRC-based vehicular safety communication. IEEE Wireless Communications 13, 5, 36--43. Google ScholarGoogle ScholarDigital LibraryDigital Library
  116. Jagadeesh Kakarla, S. Siva Sathya, B. Govinda Laxmi, and B. Ramesh Babu. 2011. A survey on routing protocols and its issues in VANET. International Journal of Computer Applications 28, 4, 38--44.Google ScholarGoogle ScholarCross RefCross Ref
  117. Georgios Karagiannis, Onur Altintas, Eylem Ekici, Geert Heijenk, Boangoat Jarupan, Kenneth Lin, and Timothy Weil. 2011. Vehicular networking: A survey and tutorial on requirements, architectures, challenges, standards and solutions. IEEE Communications Surveys and Tutorials 13, 4, 584--616.Google ScholarGoogle ScholarCross RefCross Ref
  118. Feliz K. Karnadi, Zhi Hai Mo, and Kun-chan Lan. 2007. Rapid generation of realistic mobility models for VANET. In IEEE Wireless Communications and Networking Conference. 2506--2511.Google ScholarGoogle ScholarDigital LibraryDigital Library
  119. Konstantinos Katsaros, Ralf Kernchen, Mehrdad Dianati, David Rieck, and Charalambos Zinoviou. 2011. Application of vehicular communications for improving the efficiency of traffic in urban areas. Wireless Communications and Mobile Computing 11, 12, 1657--1667. Google ScholarGoogle ScholarDigital LibraryDigital Library
  120. John B. Kenney. 2011. Dedicated short-range communications (DSRC) standards in the United States. Proceedings of the IEEE 99, 7, 1162--1182.Google ScholarGoogle ScholarCross RefCross Ref
  121. Aram Khalili, Jonathan Katz, and William A. Arbaugh. 2003. Toward secure key distribution in truly ad-hoc networks. In IEEE Symposium on Applications and the Internet Workshops. 342--346. Google ScholarGoogle ScholarDigital LibraryDigital Library
  122. Adnan Afsar Khan, Ivan Stojmenovic, and Nejib Zaguia. 2008. Parameterless broadcasting in static to highly mobile wireless ad hoc, sensor and actuator networks. In International Conference on Advanced Information Networking and Applications. 620--627. Google ScholarGoogle ScholarDigital LibraryDigital Library
  123. Jonghyun Kim, Vinay Sridhara, and Stephan Bohacek. 2009. Realistic mobility simulation of urban mesh networks. Ad Hoc Networks 7, 2, 411--430. Google ScholarGoogle ScholarDigital LibraryDigital Library
  124. Taewung Kim and Hyun-Yong Jeong. 2010. Crash probability and error rates for head-on collisions based on stochastic analyses. IEEE Transactions on Intelligent Transportation Systems 11, 4, 896--904. Google ScholarGoogle ScholarDigital LibraryDigital Library
  125. F. Knorr, D. Baselt, M. Schreckenberg, and M. Mauve. 2012. Reducing traffic jams via VANETs. IEEE Transactions on Vehicular Technology 61, 8, 3490--3498.Google ScholarGoogle ScholarCross RefCross Ref
  126. David Kotz and Tristan Henderson. 2005. Crawdad: A community resource for archiving wireless data at Dartmouth. IEEE Pervasive Computing 4, 4, 12--14. Google ScholarGoogle ScholarDigital LibraryDigital Library
  127. Emmanouil Koukoumidis, Li-Shiuan Peh, and Margaret Rose Martonosi. 2011. SignalGuru: Leveraging mobile phones for collaborative traffic signal schedule advisory. In Proceedings of the 9th International Conference on Mobile Systems, Applications, and Services. ACM, New York, NY, 127--140. Google ScholarGoogle ScholarDigital LibraryDigital Library
  128. Jan Kraaier and Ulrich Killat. 2005. The random waypoint city model: User distribution in a street-based mobility model for wireless network simulations. In ACM International Workshop on Wireless Mobile Applications and Services on WLAN Hotspots. 100--103. Google ScholarGoogle ScholarDigital LibraryDigital Library
  129. Jarek Krajewski, David Sommer, Udo Trutschel, Dave Edwards, and Martin Golz. 2009. Steering wheel behavior based estimation of fatigue. In International Driving Symposium on Human Factors in Driver Assessment, Training and Vehicle Design. 118--124.Google ScholarGoogle ScholarCross RefCross Ref
  130. Daniel Krajzewicz, Jakob Erdmann, Michael Behrisch, and Laura Bieker. 2012. Recent development and applications of SUMO—simulation of urban mobility. International Journal on Advances in Systems and Measurements 5, 3&4, 128--138.Google ScholarGoogle Scholar
  131. Prashant Krishnamurthy. 2008. Information dissemination and information assurance in vehicular networks: A survey. iConference 8, 1--6.Google ScholarGoogle Scholar
  132. Rakesh Kumar and Mayank Dave. 2011. A comparative study of various routing protocols in VANET. International Journal of Computer Science Issues 8, 4, 1--6.Google ScholarGoogle Scholar
  133. Rakesh Kumar, Mayank Dave, and others. 2012. A review of various VANET data dissemination protocols. International Journal of u- and e-Service, Science and Technology 5, 3, 27--44.Google ScholarGoogle Scholar
  134. Yugal Kumar, Pradeep Kumar, and Akash Kadian. 2011. A survey on routing mechanism and techniques in vehicle to vehicle communication (VANET). International Journal of Computer Science and Engineering Survey 2, 135--143.Google ScholarGoogle ScholarCross RefCross Ref
  135. Junghoon Lee and Cheol Min Kim. 2010. A roadside unit placement scheme for vehicular telematics networks. In Advances in Computer Science and Information Technology. Springer, 196--202. Google ScholarGoogle ScholarDigital LibraryDigital Library
  136. Kevin C. Lee, Uichin Lee, and Mario Gerla. 2010. Survey of routing protocols in vehicular ad hoc networks. IGI Global Advances in Vehicular Ad-Hoc Networks: Developments and Challenges 21, 149--170.Google ScholarGoogle ScholarCross RefCross Ref
  137. Fan Li and Yu Wang. 2007. Routing in vehicular ad hoc networks: A survey. IEEE Vehicular Technology Magazine 2, 2, 12--22.Google ScholarGoogle ScholarCross RefCross Ref
  138. Xiaoqing Li and Hui Li. 2014. A survey on data dissemination in VANETs. Chinese Science Bulletin 59, 32, 4190--4200.Google ScholarGoogle ScholarCross RefCross Ref
  139. Xiaoqing Li, Jicheng Liu, Xuejun Li, and Weiying Sun. 2013. RGTE: A reputation-based global trust establishment in VANETs. In International Conference on Intelligent Networking and Collaborative Systems. 210--214. Google ScholarGoogle ScholarDigital LibraryDigital Library
  140. Yun-Wei Lin, Yuh-Shyan Chen, and Sing-Ling Lee. 2010. Routing protocols in vehicular Ad Hoc networks: A survey and future perspectives. Journal of Information Science and Engineering 26, 3, 913--932.Google ScholarGoogle Scholar
  141. Thomas D. C. Little and Ashish Agarwal. 2005. An information propagation scheme for VANETs. In IEEE Intelligent Transportation Systems. 155--160.Google ScholarGoogle Scholar
  142. Jianqi Liu, Jiafu Wan, Qinruo Wang, Pan Deng, Keliang Zhou, and Yupeng Qiao. 2015. A survey on position-based routing for vehicular ad hoc networks. Telecommunication Systems, 1--16.Google ScholarGoogle Scholar
  143. Nai-Wei Lo and Hsiao-Chien Tsai. 2009. A reputation system for traffic safety event on vehicular ad hoc networks. EURASIP Journal on Wireless Communications and Networking 2009, 1--10. Google ScholarGoogle ScholarDigital LibraryDigital Library
  144. Christian Lochert, Andreas Barthels, Alfonso Cervantes, Martin Mauve, and Murat Caliskan. 2005. Multiple simulator interlinking environment for IVC. In ACM International Workshop on Vehicular Ad Hoc Networks. 87--88. Google ScholarGoogle ScholarDigital LibraryDigital Library
  145. Christian Lochert, Björn Scheuermann, Christian Wewetzer, Andreas Luebke, and Martin Mauve. 2008. Data aggregation and roadside unit placement for a VANET traffic information system. In ACM International Workshop on VehiculAr Inter-NETworking. 58--65. Google ScholarGoogle ScholarDigital LibraryDigital Library
  146. Rongxing Lu, Xiaodong Lin, Haojin Zhu, and Xuemin Shen. 2009. SPARK: A new VANET-based smart parking scheme for large parking lots. In IEEE INFOCOM. 1413--1421.Google ScholarGoogle Scholar
  147. Gilberto Flores Lucio, Marcos Paredes-Farrera, Emmanuel Jammeh, Martin Fleury, and Martin J. Reed. 2003. Opnet modeler and ns-2: Comparing the accuracy of network simulators for packet-level analysis using a network testbed. WSEAS Transactions on Computers 2, 3, 700--707.Google ScholarGoogle Scholar
  148. Jun Luo and Jean-Pierre Hubaux. 2006. A survey of research in inter-vehicle communications. In Embedded Security in Cars. Springer, 111--122.Google ScholarGoogle Scholar
  149. Gianpaolo Macario, Marco Torchiano, and Massimo Violante. 2009. An in-vehicle infotainment software architecture based on Google Android. In IEEE International Symposium on Industrial Embedded Systems. 257--260.Google ScholarGoogle ScholarCross RefCross Ref
  150. Joseph Macker and M. Scott Corson. January 1998. Mobile ad hoc networking (MANET): Routing protocol performance issues and evaluation considerations. Mobile Ad-hoc Network (MANET) Working Group, IETF RFC 2501.Google ScholarGoogle Scholar
  151. Thomas Mangel, Timo Kosch, and Hannes Hartenstein. 2010. A comparison of UMTS and LTE for vehicular safety communication at intersections. In IEEE Vehicular Networking Conference. 293--300.Google ScholarGoogle ScholarCross RefCross Ref
  152. Rahul Mangharam, Daniel Weller, Raj Rajkumar, Priyantha Mudalige, and Fan Bai. 2006. Groovenet: A hybrid simulator for vehicle-to-vehicle networks. In International Conference on Mobile and Ubiquitous Systems: Networking and Services. 1--8.Google ScholarGoogle Scholar
  153. Francisco J. Martinez, J.-C. Cano, Carlos T. Calafate, and Pietro Manzoni. 2008. CityMob: A mobility model pattern generator for VANETs. In IEEE International Conference on Communications Workshops. 370--374.Google ScholarGoogle ScholarCross RefCross Ref
  154. Francisco J. Martinez, Chai Keong Toh, Juan-Carlos Cano, Carlos T. Calafate, and Pietro Manzoni. 2009. A survey and comparative study of simulators for vehicular ad hoc networks (VANETs). Wireless Communications and Mobile Computing 99, 7, 1189--1212. Google ScholarGoogle ScholarDigital LibraryDigital Library
  155. Shinobu Matsumoto and Yuichi Mizushima. 2011. Development of the Device to Prevent Wrong-Way Driving. Technical Report. ITS Japan, Tokyo, Japan.Google ScholarGoogle Scholar
  156. Mohamed Nidhal Mejri, Jalel Ben-Othman, and Mohamed Hamdi. 2014. Survey on VANET security challenges and possible cryptographic solutions. Vehicular Communications 1, 2, 53--66.Google ScholarGoogle ScholarDigital LibraryDigital Library
  157. Hamid Menouar, Fethi Filali, and Massimiliano Lenardi. 2006. A survey and qualitative analysis of MAC protocols for vehicular ad hoc networks. IEEE Wireless Communications 13, 5, 30--35. Google ScholarGoogle ScholarDigital LibraryDigital Library
  158. Jeffrey Miller and Ellis Horowitz. 2007. FreeSim-a free real-time freeway traffic simulator. In IEEE Intelligent Transportation Systems Conference. 18--23.Google ScholarGoogle ScholarCross RefCross Ref
  159. Umar Farooq Minhas, Jie Zhang, Thomas Tran, and Robin Cohen. 2010. Towards expanded trust management for agents in vehicular ad-hoc networks. International Journal of Computational Intelligence Theory and Practice 5, 1, 3--15.Google ScholarGoogle Scholar
  160. James A. Misener, Raja Sengupta, and Hariharan Krishnan. 2005. Cooperative Collision Warning: Enabling Crash Avoidance with Wireless Technology. Technical Report. ITS America, Washington DC, USA.Google ScholarGoogle Scholar
  161. Bharati Mishra, Priyadarshini Nayak, Subhashree Behera, and Debasish Jena. 2011. Security in vehicular adhoc networks: A survey. In ACM International Conference on Communication, Computing and Security. 590--595. Google ScholarGoogle ScholarDigital LibraryDigital Library
  162. Jens Mittag, Florian Thomas, Jérôme Härri, and Hannes Hartenstein. 2009. A comparison of single- and multi-hop beaconing in VANETs. In ACM International Workshop on VehiculAr InterNETworking. 69--78. Google ScholarGoogle ScholarDigital LibraryDigital Library
  163. Meenakshi Mittal. 2010. A study of live video streaming over highway vehicular ad hoc networks. International Journal of Computer Applications 1, 21, 86--90.Google ScholarGoogle ScholarCross RefCross Ref
  164. Sajjad Akbar Mohammad, Asim Rasheed, and Amir Qayyum. 2011. VANET architectures and protocol stacks: A survey. In Communication Technologies for Vehicles. Springer, 95--105. Google ScholarGoogle ScholarDigital LibraryDigital Library
  165. Mohammed A. Moharrum, Ahmad A. Al Daraiseh, and others. 2012. Toward secure vehicular ad-hoc networks: A survey. IETE Technical Review 29, 1, 80.Google ScholarGoogle ScholarCross RefCross Ref
  166. Young-Jun Moon and Yukyung Park. 2010. Field Tests for Cooperative Intersection Signal Violation Warning Systems (CISVWS). Technical Report. ITS America, Washington DC, USA.Google ScholarGoogle Scholar
  167. Yasser L. Morgan. 2010. Notes on DSRC & WAVE standards suite: Its architecture, design, and characteristics. IEEE Communications Surveys and Tutorials 12, 4, 504--518. Google ScholarGoogle ScholarDigital LibraryDigital Library
  168. Gabriel Alejandro Galaviz Mosqueda, Raúl Aquino Santos, Luis A. Villaseñor González, Víctor Rangel Licea, and Arthur Edwards Block. 2011. Survey on multi-hop vehicular ad hoc networks under IEEE 802.16 technology. Intech Mobile Ad-Hoc Networks: Applications, 1--19.Google ScholarGoogle Scholar
  169. Lik Mui, Mojdeh Mohtashemi, and Ari Halberstadt. 2002. A computational model of trust and reputation. In Annual IEEE Hawaii International Conference on System Sciences. 2431--2439. Google ScholarGoogle ScholarDigital LibraryDigital Library
  170. Uma Nagaraj and Poonam Dhamal. 2012. Broadcasting routing protocols in VANET. Network and Complex Systems 1, 2, 13--19.Google ScholarGoogle Scholar
  171. Kai Nagel and Marcus Rickert. 2001. Parallel implementation of the TRANSIMS micro-simulation. Parallel Computing 27, 12, 1611--1639.Google ScholarGoogle ScholarCross RefCross Ref
  172. Kai Nagel and Michael Schreckenberg. 1992. A cellular automaton model for freeway traffic. Journal de Physique I 2, 12, 2221--2229.Google ScholarGoogle Scholar
  173. Valery Naumov, Rainer Baumann, and Thomas Gross. 2006. An evaluation of inter-vehicle ad hoc networks based on realistic vehicular traces. In ACM International Symposium on Mobile Ad Hoc Networking and Computing. 108--119. Google ScholarGoogle ScholarDigital LibraryDigital Library
  174. B. Clifford Neuman and Theodore Ts’o. 1994. Kerberos: An authentication service for computer networks. IEEE Communications Magazine 32, 9, 33--38. Google ScholarGoogle ScholarDigital LibraryDigital Library
  175. NHTSA. 2007. National Highway Traffic Safety Administration. USDOT. Technical Report. NHTSA Press, Washington, DC.Google ScholarGoogle Scholar
  176. P. S. Nithya Darisini and N. Santhiya Kumari. 2013. A survey of routing protocols for VANET in urban scenarios. In IEEE International Conference on Pattern Recognition, Informatics and Medical Engineering (PRIME). 464--467.Google ScholarGoogle Scholar
  177. Faiza Ouchene, Lila Boukhatem, and Mourad Gueroui. 2013. The involvement of RSUs in VANETs: Survey and perspectives. International Journal of Computational Engineering Research 3, 7, 1985--1989.Google ScholarGoogle Scholar
  178. Sooksan Panichpapiboon and Wasan Pattara-Atikom. 2012. A review of information dissemination protocols for vehicular ad hoc networks. IEEE Communications Surveys and Tutorials 14, 3, 784--798.Google ScholarGoogle Scholar
  179. Panagiotis Papadimitratos and Jean-Pierre Hubaux. 2008. Report on the secure vehicular communications: Results and challenges ahead workshop. ACM SIGMOBILE Mobile Computing and Communications Review 12, 2, 53--64. Google ScholarGoogle ScholarDigital LibraryDigital Library
  180. Anand Patwardhan, Anupam Joshi, Tim Finin, and Yelena Yesha. 2006. A data intensive reputation management scheme for vehicular ad hoc networks. In Annual IEEE International Conference on Mobile and Ubiquitous Systems: Networking and Services. 1--8.Google ScholarGoogle Scholar
  181. Bijan Paul and Mohammed J. Islam. 2012. Survey over VANET routing protocols for vehicle to vehicle communication. IOSR Journal of Computer Engineering 7, 5, 1--9.Google ScholarGoogle ScholarCross RefCross Ref
  182. Adrian Perrig, Ran Canetti, J. Doug Tygar, and Dawn Song. 2002. The TESLA Broadcast Authentication Protocol. Technical Report. Carnegie Mellon University, Pittsburgh, PA.Google ScholarGoogle Scholar
  183. Michal Piorkowski, Maxim Raya, A. Lezama Lugo, Panagiotis Papadimitratos, Matthias Grossglauser, and J.-P. Hubaux. 2008. TraNS: Realistic joint traffic and network simulator for VANETs. SIGMOBILE Mobile Computing and Communications Review 12, 1, 31--33. Google ScholarGoogle ScholarDigital LibraryDigital Library
  184. Steven Plotkin, Thomas Stephens, and Walter McManus. 2013. Vehicle Technology Deployment Pathways: An Examination of Timing and Investment Constraints. Technical Report. Transportation Energy Futures Series, U.S. Department of Energy, Washington, DC.Google ScholarGoogle Scholar
  185. Hua Qin, Xuejia Lu, Yanfei Wang, Guiling Wang, Wensheng Zhang, and Yaying Zhang. 2011. Heterogeneity-aware design for automatic detection of problematic road conditions. In IEEE International Conference on Mobile Ad Hoc and Sensor Systems (MASS). 252--261. Google ScholarGoogle ScholarDigital LibraryDigital Library
  186. Muhammad Ahsan Qureshi, Rafidah Md Noor, Shahaboddin Shamshirband, Sharmin Parveen, Muhammad Shiraz, and Abdullah Gani. 2015. A survey on obstacle modeling patterns in radio propagation models for vehicular Ad Hoc networks. Arabian Journal for Science and Engineering 40, 5, 1385--1407.Google ScholarGoogle ScholarCross RefCross Ref
  187. Sumair Ur Rahman and Urs Hengartner. 2007. Secure crash reporting in vehicular ad hoc networks. In IEEE International Conference on Security and Privacy in Communications Networks and the Workshops. 443--452.Google ScholarGoogle ScholarCross RefCross Ref
  188. Maxim Raya, Panagiotis Papadimitratos, Virgil D. Gligor, and J.-P. Hubaux. 2008. On data-centric trust establishment in ephemeral ad hoc networks. In IEEE Conference on Computer Communications. 1238--1246.Google ScholarGoogle ScholarCross RefCross Ref
  189. Maxim Raya, Panos Papadimitratos, and J.-P. Hubaux. 2006. Securing vehicular communications. IEEE Wireless Communications 13, 5, 8--15. Google ScholarGoogle ScholarDigital LibraryDigital Library
  190. M. A. Razzaque, Ahmad Salehi, and Seyed M. Cheraghi. 2013. Security and privacy in vehicular Ad-Hoc networks: Survey and the road ahead. In Wireless Networks and Security. Springer, 107--132.Google ScholarGoogle Scholar
  191. George F. Riley. 2003. The Georgia Tech network simulator. In ACM SIGCOMM Workshop on Models, Methods and Tools for Reproducible Network Research. 5--12. Google ScholarGoogle ScholarDigital LibraryDigital Library
  192. Marshall Riley, Kemal Akkaya, and Kenny Fong. 2011. A survey of authentication schemes for vehicular ad hoc networks. Security and Communication Networks 4, 10, 1137--1152.Google ScholarGoogle ScholarCross RefCross Ref
  193. Francisco J. Ros, Pedro M. Ruiz, and Ivan Stojmenovic. 2009. Reliable and efficient broadcasting in vehicular ad hoc networks. In IEEE Vehicular Technology Conference. 1--5.Google ScholarGoogle ScholarCross RefCross Ref
  194. Mickaël Royer, Alain Pirovano, and Fabien Garcia. 2013. Survey on context-aware publish/subscribe systems for VANET. In Communication Technologies for Vehicles. Springer, 46--58.Google ScholarGoogle Scholar
  195. Mandalapu Saradadevi and Preeti Bajaj. 2008. Driver fatigue detection using mouth and yawning analysis. International Journal of Computer Science and Network Security 8, 6, 183--188.Google ScholarGoogle Scholar
  196. Robert Karl Schmidt, Thomas Köllmer, Tim Leinmüller, Bert Böddeker, and Günter Schäfer. 2009. Degradation of transmission range in VANETs caused by interference. PIK-Praxis der Informationsverarbeitung und Kommunikation 32, 4, 224--234.Google ScholarGoogle ScholarCross RefCross Ref
  197. Elmar Schoch, Frank Kargl, Michael Weber, and Tim Leinmuller. 2008. Communication patterns in VANETs. IEEE Communications Magazine 46, 11, 119--125. Google ScholarGoogle ScholarDigital LibraryDigital Library
  198. Christoph Schroth, Florian Dötzer, Timo Kosch, Benedikt Ostermaier, and Markus Strassberger. 2005. Simulating the traffic effects of vehicle-to-vehicle messaging systems. In International Conference on ITS Telecommunications. 1--4.Google ScholarGoogle Scholar
  199. Markus Schütz and Klaus Dietmayer. 2013. A flexible environment perception framework for advanced driver assistance systems. In Advanced Microsystems for Automotive Applications. Springer, 21--29.Google ScholarGoogle Scholar
  200. Marcin Seredynski, Wojciech Mazurczyk, and Djamel Khadraoui. 2013. Multi-segment green light optimal speed advisory. In IEEE International Parallel and Distributed Processing Symposium Workshops and PhD Forum. 459--465. Google ScholarGoogle ScholarDigital LibraryDigital Library
  201. Adi Shamir. 1979. How to share a secret. Communications of the ACM 22, 11, 612--613. Google ScholarGoogle ScholarDigital LibraryDigital Library
  202. Baraa T. Sharef, Raed A. Alsaqour, and Mahamod Ismail. 2014. Vehicular communication ad hoc routing protocols: A survey. Journal of Network and Computer Applications 40, 363--396. Google ScholarGoogle ScholarDigital LibraryDigital Library
  203. Mihail L. Sichitiu and Maria Kihl. 2008. Inter-vehicle communication systems: A survey. IEEE Communications Surveys and Tutorials 10, 2, 88--105. Google ScholarGoogle ScholarDigital LibraryDigital Library
  204. Qualnet Network Simulator. 2011. Scalable Network Technologies. Retrieved September 27, 2015 from http://web.scalable-networks.com/content/qualnet.Google ScholarGoogle Scholar
  205. Christoph Sommer, Reinhard German, and Falko Dressler. 2011. Bidirectionally coupled network and road traffic simulation for improved IVC analysis. IEEE Transactions on Mobile Computing 10, 1, 3--15. Google ScholarGoogle ScholarDigital LibraryDigital Library
  206. Evjola Spaho, Leonard Barolli, Gjergji Mino, Fatos Xhafa, and Vladi Kolici. 2011. VANET simulators: A survey on mobility and routing protocols. In International Conference on Broadband and Wireless Computing, Communication and Applications. 1--10. Google ScholarGoogle ScholarDigital LibraryDigital Library
  207. Min-Te Sun, Wu-Chi Feng, Ten-Hwang Lai, Kentaro Yamada, Hiromi Okada, and Kikuo Fujimura. 2000. GPS-based message broadcasting for inter-vehicle communication. In IEEE International Conference on Parallel Processing. 279--286. Google ScholarGoogle ScholarDigital LibraryDigital Library
  208. Yipin Sun, Xiaodong Lin, Rongxing Lu, Xuemin Shen, and Jinshu Su. 2010. Roadside units deployment for efficient short-time certificate updating in VANETs. In IEEE International Conference on Communications. 1--5.Google ScholarGoogle ScholarCross RefCross Ref
  209. Chakkaphong Suthaputchakun and Zhili Sun. 2011. Routing protocol in intervehicle communication systems: A survey. IEEE Communications Magazine 49, 12, 150--156.Google ScholarGoogle ScholarCross RefCross Ref
  210. Yoshihiro Takei and Yoshimi Furukawa. 2005. Estimate of driver’s fatigue through steering motion. In IEEE International Conference on Systems, Man and Cybernetics, Vol. 2. 1765--1770.Google ScholarGoogle Scholar
  211. S. Tokoro, K. Moriizumi, T. Kawasaki, T. Nagao, K. Abe, and K. Fujita. 2004. Sensor fusion system for pre-crash safety system. In IEEE Intelligent Vehicles Symposium. 945--950.Google ScholarGoogle Scholar
  212. Ozan Tonguz, Nawaporn Wisitpongphan, Fan Bai, Priyantha Mudalige, and Varsha Sadekar. 2007. Broadcasting in VANET. In IEEE Mobile Networking for Vehicular Environments. 7--12.Google ScholarGoogle Scholar
  213. Ozan K. Tonguz and Mate Boban. 2010. Multiplayer games over vehicular ad hoc networks: A new application. Ad Hoc Networks 8, 5, 531--543. Google ScholarGoogle ScholarDigital LibraryDigital Library
  214. Yasser Toor, Paul Muhlethaler, and Anis Laouiti. 2008. Vehicle ad hoc networks: Applications and related technical issues. IEEE Communications Surveys and Tutorials 10, 3, 74--88. Google ScholarGoogle ScholarDigital LibraryDigital Library
  215. Martin Treiber and Arne Kesting. 2013. Model-based traffic flow optimization. In Traffic Flow Dynamics. Springer, 403--422.Google ScholarGoogle Scholar
  216. O. Trullols, Marco Fiore, Claudio Casetti, Carla-Fabiana Chiasserini, and José M. Barcelo Ordinas. 2010. Planning roadside infrastructure for information dissemination in intelligent transportation systems. Computer Communications 33, 4, 432--442. Google ScholarGoogle ScholarDigital LibraryDigital Library
  217. R. Uzcategui and Guillermo Acosta-Marum. 2009. WAVE: A tutorial. IEEE Communications Magazine 47, 5, 126--133. Google ScholarGoogle ScholarDigital LibraryDigital Library
  218. András Varga and others. 2001. The OMNeT++ discrete event simulation system. In European Simulation Multiconference, Vol. 9. 1--7.Google ScholarGoogle Scholar
  219. V. Vijayalakshmi, M. Sathya, S. Saranya, and C. Selvaroopini. 2014. Survey on various mechanisms for secure and efficient VANET communication. In IEEE International Conference on Information Communication and Embedded Systems. 1--5.Google ScholarGoogle Scholar
  220. Preetida Vinayakray-Jani and Sugata Sanyal. 2012. Routing protocols for mobile and vehicular Ad-Hoc networks: A comparative analysis. Computing Research Repository abs/1206.1918, 1--7.Google ScholarGoogle Scholar
  221. C. Visvikis, T. L. Smith, M. Pitcher, and R. Smith. 2008. Study on Lane Departure Warning and Lane Change Assistant Systems. Technical Report. Transport Research Laboratory, UK.Google ScholarGoogle Scholar
  222. VSC. 2005. Vehicle Safety Communications Project: Task 3 Final Report: Identify Intelligent Vehicle Safety Applications Enabled by DSRC. Technical Report. National Highway Traffic Safety Administration, US Department of Transportation, Washington, DC.Google ScholarGoogle Scholar
  223. Esra Vural, Mujdat Cetin, Aytul Ercil, Gwen Littlewort, Marian Bartlett, and Javier Movellan. 2007. Drowsy driver detection through facial movement analysis. In Human--Computer Interaction. Springer, 6--18. Google ScholarGoogle ScholarDigital LibraryDigital Library
  224. Esra Vural, Müjdat Çetin, Aytül Erçil, Gwen Littlewort, Marian Bartlett, and Javier Movellan. 2008. Automated drowsiness detection for improved driving safety. In International Conference on Automotive Technologies, Michael Lew, Nicu Sebe, Thomas S. Huang, and Erwin M. Bakker (Eds.). 1--15.Google ScholarGoogle Scholar
  225. Kevin Walsh and Emin Gün Sirer. 2004. Staged simulation: A general technique for improving simulation scale and performance. ACM Transactions on Modeling and Computer Simulation 14, 2, 170--195. Google ScholarGoogle ScholarDigital LibraryDigital Library
  226. Shie-Yuan Wang and Chih-Liang Chou. 2009. NCTUns simulator for wireless vehicular Ad Hoc network research. In Ad Hoc Networks: New Research. Nova Science Publishers, New York, USA. 97--124.Google ScholarGoogle Scholar
  227. Xiaofen Wang, Tang Liu, Guozhen Xiao, and others. 2012. Certificate-based anonymous authentication protocol for vehicular ad-hoc network. IETE Technical Review 29, 5, 388.Google ScholarGoogle ScholarCross RefCross Ref
  228. Yan-Bo Wang, Tin-Yu Wu, Wei-Tsong Lee, and Chih-Heng Ke. 2010a. A novel geographic routing strategy over VANET. In IEEE International Conference on Advanced Information Networking and Applications Workshops. 873--879. Google ScholarGoogle ScholarDigital LibraryDigital Library
  229. Yuhao Wang, Xing Xing, and Jiali Fan. 2010b. Statistical properties evaluation on Rayleigh VANET fading channels. In IEEE International Conference on Wireless Communications Networking and Mobile Computing. 1--6.Google ScholarGoogle ScholarCross RefCross Ref
  230. Melodie Warner. 2013. General Motors Sales Up in December. Technical Report. Fox Business, New York, NY.Google ScholarGoogle Scholar
  231. Axel Wegener, Michał Piórkowski, Maxim Raya, Horst Hellbrück, Stefan Fischer, and Jean-Pierre Hubaux. 2008. TraCI: An interface for coupling road traffic and network simulators. In ACM Communications and Networking Simulation Symposium. 155--163. Google ScholarGoogle ScholarDigital LibraryDigital Library
  232. Yu-Chih Wei and Yi-Ming Chen. 2012. An efficient trust management system for balancing the safety and location privacy in VANETs. In IEEE International Conference on Trust, Security and Privacy in Computing and Communications. 393--400. Google ScholarGoogle ScholarDigital LibraryDigital Library
  233. Galia Weidl, Gabi Breuel, and Virat Singhal. 2013. Collision risk prediction and warning at road intersections using an object oriented Bayesian network. In ACM International Conference on Automotive User Interfaces and Interactive Vehicular Applications. 270--277. Google ScholarGoogle ScholarDigital LibraryDigital Library
  234. Philipp Wex, Jochen Breuer, Albert Held, T. Leinmuller, and Luca Delgrossi. 2008. Trust issues for vehicular ad hoc networks. In IEEE Vehicular Technology Conference. 2800--2804.Google ScholarGoogle ScholarCross RefCross Ref
  235. Md Whaiduzzaman, Mehdi Sookhak, Abdullah Gani, and Rajkumar Buyya. 2014. A survey on vehicular cloud computing. Journal of Network and Computer Applications 40, 325--344. Google ScholarGoogle ScholarDigital LibraryDigital Library
  236. Theodore L. Willke, Patcharinee Tientrakool, and Nicholas F. Maxemchuk. 2009. A survey of inter-vehicle communication protocols and their applications. IEEE Communications Surveys & Tutorials 11, 2, 3--20. Google ScholarGoogle ScholarDigital LibraryDigital Library
  237. Sun Xi and Xia-Miao Li. 2008. Study of the feasibility of VANET and its routing protocols. In International Conference on Wireless Communications, Networking and Mobile Computing. 1--4.Google ScholarGoogle ScholarCross RefCross Ref
  238. Weidong Xiang. 2007. A vehicular ultra-wideband channel model for future wireless intra-vehicle communications (IVC) systems. In IEEE Vehicular Technology Conference. 2159--2163.Google ScholarGoogle ScholarCross RefCross Ref
  239. Gongjun Yan, Stephan Olariu, and Michele C. Weigle. 2008. Providing VANET security through active position detection. Computer Communications 31, 12, 2883--2897. Google ScholarGoogle ScholarDigital LibraryDigital Library
  240. Saleh Yousefi, Mahmoud Siadat Mousavi, and Mahmood Fathy. 2006. Vehicular ad hoc networks (VANETs): Challenges and perspectives. In IEEE International Conference on ITS Telecommunications Proceedings. 761--766.Google ScholarGoogle ScholarCross RefCross Ref
  241. Sherali Zeadally, Ray Hunt, Yuh-Shyan Chen, Angela Irwin, and Aamir Hassan. 2012. Vehicular ad hoc networks (VANETs): Status, results, and challenges. Telecommunication Systems 50, 4, 217--241. Google ScholarGoogle ScholarDigital LibraryDigital Library
  242. Xiang Zeng, Rajive Bagrodia, and Mario Gerla. 1998. GloMoSim: A library for parallel simulation of large-scale wireless networks. In IEEE Workshop on Parallel and Distributed Simulation. 154--161. Google ScholarGoogle ScholarDigital LibraryDigital Library
  243. Jie Zhang. 2011. A survey on trust management for VANETs. In IEEE International Conference on Advanced Information Networking and Applications. 105--112. Google ScholarGoogle ScholarDigital LibraryDigital Library
  244. Jie Zhang, Chen Chen, and Robin Cohen. 2010. A scalable and effective trust-based framework for vehicular ad-hoc networks. Journal of Wireless Mobile Networks, Ubiquitous Computing, and Dependable Applications 1, 4, 3--15.Google ScholarGoogle Scholar
  245. Qunwei Zheng, Xiaoyan Hong, and Jun Liu. 2006. An agenda based mobility Model21. In Annual IEEE Symposium on Simulation. 188--195. Google ScholarGoogle ScholarDigital LibraryDigital Library
  246. Sheng Zhong, Jiang Chen, and Yang Richard Yang. 2003. Sprite: A simple, cheat-proof, credit-based system for mobile ad-hoc networks. In Annual Joint Conference of the IEEE Computer and Communications Societies, Vol. 3. 1987--1997.Google ScholarGoogle ScholarCross RefCross Ref
  247. Kun Zhu, Dusit Niyato, Ping Wang, Ekram Hossain, and Dong In Kim. 2011. Mobility and handoff management in vehicular networks: a survey. Wireless Communications and Mobile Computing 11, 4, 459--476. Google ScholarGoogle ScholarDigital LibraryDigital Library
  248. Hubert Zimmermann. 1980. OSI reference model--The ISO model of architecture for open systems interconnection. IEEE Transactions on Communications 28, 4, 425--432.Google ScholarGoogle ScholarCross RefCross Ref

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  1. How Close are We to Realizing a Pragmatic VANET Solution? A Meta-Survey

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            cover image ACM Computing Surveys
            ACM Computing Surveys  Volume 48, Issue 2
            November 2015
            615 pages
            ISSN:0360-0300
            EISSN:1557-7341
            DOI:10.1145/2830539
            • Editor:
            • Sartaj Sahni
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            Publication History

            • Published: 3 November 2015
            • Revised: 1 August 2015
            • Accepted: 1 August 2015
            • Received: 1 May 2014
            Published in csur Volume 48, Issue 2

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