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Protocols and Design Structures for Vehicular Networks

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Connected Vehicles in the Internet of Things
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Abstract

With the ever-increasing demand for pervasive processing of big data from heterogeneous devices and networks, there is an increased demand for optimal networks in Vehicle-to-Vehicle (V2V) communication models. Effective communication of heterogeneous devices with non-identical communication consoles demands that the devices are connected with a well-marshalled software and hardware abstraction to facilitate seamless interaction and information interchange, between the technologies of different nature supplied by diverse vendors. In today’s information-intensive environments, processing of multi-dimensional data from heterogeneous smart devices in a networked environment can be a huge challenge. The type of network supporting V2V communication is critical to overall functionality of connected vehicle communication. Although there is a significant body of knowledge on different V2V networks, there is limited research on components for the topology and architectural arrangement for optimal vehicular networks. There is also a knowledge gap on what should influence topologies and routing mechanisms in vehicular networks. This chapter is as a result of research focusing on optimal designs for vehicular networks which culminate from a synthesis of knowledge in different contexts. This research brings to the fore the principles, protocols, topologies and storage options that underpin vehicular networks. The chapter proposes a conceptual framework articulating a basic architecture configuration that can be used in Mobile Ad hoc NETworks (MANET) with an emphasis on resource-constrained contexts.

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References

  1. Allen C, Overy LLP (2017) Autonomous and connected vehicles: navigating the legal issues. http://www.allenovery.com/SiteCollectionDocuments/Autonomous-and-connected-vehicles.pdf. Accessed 4 July 2019

  2. Balen J (2015) Spatio-temporal distributed background data storage and management system in VANETs. In: Proceeding of the 3rd GI/ITG KuVS Fachgespräch inter-vehicle communication (FG-IVC 2015), Ulm, Germany, vol 13(3), pp 22–25. https://bib.irb.hr/datoteka/787684.Balen-spatio-temp.pdf. Accessed 4 July 2019

  3. Bechler M, Schiller J, Wolf L (2014) In-car communication using wireless technology. https://www.researchgate.net/publication/242429992_IN-CAR_COMMUNICATION_USING_WIRELESS_TECHNOLOGY/download. Accessed 4 July 2019

  4. Chisalita L (2006) Communication and networking techniques for traffic safety systems. Unpublished dissertation, Linköpings universitet, Sweden

    Google Scholar 

  5. EU Report (2017) An assessment of LTE-V2X (PC5) and 802.11p direct communications technologies for improved road safety in the EU, 5 December 2017. http://5gaa.org/wp-content/uploads/2017/12/5GAA-Road-safety-FINAL2017-12-05.pdf. Accessed 4 July 2019

  6. Fan Y, Zhang N (2017) A survey on software-defined vehicular networks. J Comput 28(4):236–244. https://doi.org/10.3966/199115592017062803025

    Article  MathSciNet  Google Scholar 

  7. Feiri M, Petit J, Kargl F (2015) The case for announcing pseudonym changes. http://fg-ivc.car2x.org/proceedings-fg-ivc-2015.pdf. Accessed 4 July 2019

  8. Förster D, Bosch R (2015) Discussing different levels of privacy protection in vehicular ad-hoc networks. In: Proceeding of the 3rd GI/ITG KuVS Fachgespräch inter-vehicle communication (FG-IVC 2015), Ulm, Germany, vol 13(3), pp 29–31

    Google Scholar 

  9. Gehrsitz T, Kellerer W, Kellermann H (2014) In-car communication based on power line networks. http://mediatum.ub.tum.de/doc/1200475/702617.pdf. Accessed 4 July 2019

  10. Hajj HM, El-Hajj W, Kabalan KY, El Dana MM, Dakroub M, Fawaz F (2009) An efficient vehicle communication network topology with an extensible framework. https://pdfs.semanticscholar.org/8985/a4ee452f25bcd2d22451fbff3417f0870c53.pdf?_ga=2.92291477.942827893.1558614756-2097276758.1558614756. Accessed 4 July 2019

  11. Kim T (2015) Assessment of vehicle-to-vehicle communication based applications in an urban network. Unpublished PhD thesis, Virginia Polytechnic Institute and State University, USA

    Google Scholar 

  12. Kristiana A, Schmitt C, Stiller B (2015) Investigating a reliable inter-vehicle network in a three-dimensional environment. In: Proceeding of the 3rd GI/ITG KuVS Fachgespräch inter-vehicle communication (FG-IVC 2015), at Ulm, Germany, vol 13, issue 3, pp 16–20

    Google Scholar 

  13. Mai A, Schlesingerv D (2011) A business case for connecting vehicles. https://www.cisco.com/c/dam/en_us/about/ac79/docs/mfg/Connected-Vehicles_Exec_Summary.pdf. Accessed 4 July 2019

  14. Mishra KS, Chand N (2012) Applications of VANETs: present & future. Commun Netw 5:12–15. https://doi.org/10.4236/cn.2013.51B004)

    Article  Google Scholar 

  15. Raza S, Wang S, Ahmed M, Anwar MR (2019) A survey on vehicular edge computing: architecture, applications, technical issues, and future directions. Wirel Commun Mob Comput 1–19. https://doi.org/10.1155/2019/3159762, https://www.hindawi.com/journals/wcmc/2019/3159762/. Accessed 4 July 2019

    Google Scholar 

  16. Schmidt RK, Leinmüller T, Schoch E, Held A, Schäfer G (2008) Vehicle behavior analysis to enhance security in VANETs. In: Fourth workshop on vehicle to vehicle communications (V2VCOM 2008), Eindhoven, The Netherlands

    Google Scholar 

  17. Wang L, Afanasyev A, Kuntz R, Vuyyuru R, Wakikawa R, Zhang L (2012) Rapid traffic information dissemination using named data. In: Proceedings of the 1st ACM workshop on emerging name-oriented mobile networking design—architecture, algorithms, and applications, pp 7–12

    Google Scholar 

  18. Wu C, Liu Z, Zhang D, Yoshinaga T, Ji Y (2018) Spatial intelligence towards trustworthy vehicular IoT. IEEE Commun Mag 56(10):22–27. https://doi.org/10.1109/mcom.2018.1800089

    Article  Google Scholar 

  19. Yang X, Liu J, Zhao F, Vaidya NH (2004) Vehicle-to-vehicle communication protocol for cooperative collision warning. In: Proceedings of the first annual international conference on mobile and ubiquitous systems: networking and service (MobiQuitous’04), 22nd–26th August 2004, Boston, USA. ISBN 0-7695-2208-4

    Google Scholar 

  20. Ye H, Liang L, Li GY, Kim JB, Lu L, Wu M (2018) Machine learning for vehicular networks. IEEE Veh Technol Mag. https://arxiv.org/pdf/1712.07143.pdf. Accessed 4 July 2019

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Correspondence to Kelvin Joseph Bwalya .

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Bwalya, K.J. (2020). Protocols and Design Structures for Vehicular Networks. In: Mahmood, Z. (eds) Connected Vehicles in the Internet of Things. Springer, Cham. https://doi.org/10.1007/978-3-030-36167-9_5

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  • DOI: https://doi.org/10.1007/978-3-030-36167-9_5

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  • Publisher Name: Springer, Cham

  • Print ISBN: 978-3-030-36166-2

  • Online ISBN: 978-3-030-36167-9

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