Have a personal or library account? Click to login
Trends and Open Research Issues in Intelligent Internet of Vehicles Cover

Trends and Open Research Issues in Intelligent Internet of Vehicles

Open Access
|Apr 2023

References

  1. Mundhenk, Philipp, Andrew Paverd, Artur Mrowca, Sebastian Steinhorst, Martin Lukasiewycz, Suhaib A. Fahmy, and Samarjit Chakraborty. (2017) Security in automotive networks: Lightweight authentication and authorization. ACM Transactions on Design Automation of Electronic Systems (TODAES) 22, DOI: 25. 10.1145/0000000.0000000
  2. Kamble, Shridevi Jeevan, Kounte, Manjunath R. (2019) Routing and Scheduling Issues in Vehicular Ad-hoc Networks. IJRTE, 8(3), 4272-4283. ISSN: 2277-3878, DOI: 10.35940/ijrte.C5168.098319.
  3. Raw, Ram Shringar, Kumar, Manish, and Nanhay Singh.(2013) Security challenges, issues and their solutions for VANET. International journal of network security & its applications, 5(5): 95. DOI: 10.5121/ijnsa.2013.5508.
  4. Hossain, Md Mahmud, Ragib Hasan, and Shams Zawoad (2017) Trust-IoV: A Trustworthy Forensic Investigation Framework for the Internet of Vehicles (IoV). ICIOT, 25-32. DOI: 10.1109/IEEE.ICIOT.2017.13.
  5. Abdelhamid, Sherin, Hossam S. Hassanein, and Glen Takahara. (2015) Vehicle as a resource (VaaR). IEEE Network, 29(1), 12-17. DOI:10.1109/MNET.2015.7018198.
  6. Dudu, TS Shamin, SG Shivaprasad Yadav, M. Arun Kumar, and Nisha C. Rani (2009) In-Vehicle Automotive Network Gateway Electronic Control Unit for Low Price Vehicle. SASTECH J, 8(2), 79-88.
  7. Cheng, Xiaolu, and Baohua, Huang. (2019) A center-based secure and stable clustering algorithm for VANETs on highways. Wireless Communications and Mobile Computing, 2019. DOI.org/10.1155/2019/8415234.
  8. Ning, Zhaolong, Xiping Hu, Zhikui Chen, MengChu Zhou, Bin Hu, Jun Cheng, and Mohammad S. Obaidat. (2017) A cooperative quality-aware service access system for social Internet of vehicles. IEEE Internet of Things Journal, 5(4), 2506-2517. DOI: 10.1109/JIOT.2017.2764259.
  9. Bilal, Muhammad. (2017) A review of internet of things architecture, technologies and analysis smartphone-based attacks against 3D printers. arXiv preprint arXiv:1708.04560 . DOI: 10.48550/arXiv.1708.04560.
  10. Sakthipriya, N. and Sathyanarayanan, P. (2014) A reliable communication scheme for VANET communication environments. Indian Journal of Science and Technology, 7, 31. DOI: 10.17485/ijst/2014/v7sp5.11.
  11. Al Junaid, Mohammed Ali Hezam, A. A. Syed, Mohd Nazri Mohd Warip, Ku Nurul Fazira Ku Azir, and Nurul Hidayah Romli (2018) Classification of security attacks in VANET: a review of requirements and perspectives. In: MATEC Web of Conferences, 150, 06038. EDP Sciences. DOI: 10.1051/matecconf/201815006038.
  12. Pete, Bhagyashri, and Prachi Jaini. (2015) Continuous connectivity aware routing in VANET using hybrid protocol”. In: 2015 2nd International Conference on Electronics and Communication Systems (ICECS), 223-226. IEEE.
  13. Ashraf, Mohsin, Harris Bilal, Imran Ahmad Khan, and Farooq Ahmad (2016) Vanet Challenges of Availability and Scalability. VFAST Transactions on Software Engineering, 10(2), 1-8. DOI: 10.21015/vtse.v10i2.423.
  14. Ding, Zhiguo, and Kin K. Leung.(2011). Cross-layer routing using cooperative transmission in vehicular ad-hoc networks. IEEE Journal on Selected Areas in Communications, 29, 571-581. DOI:10.1109/JSAC.2011.110307.
  15. Joy, Joshua, Vince Rabsatt, and Mario Gerla. (2017) Internet of Vehicles: Enabling safe, secure, and private vehicular crowdsourcing. DOI:10.1002/itl2.16.
  16. Kamble, Shridevi Jeevan, and Manjunath R. Kounte (2018) Enabling Technologies for Internet of Vehicles. International conference on Computer Networks, Big data and IoT. Springer, Cham. DOI: 10.1007/978-3-030-24643-3_31.
  17. Contreras-Castillo, Juan, Sherali Zeadally, and Juan Antonio Guerrero Ibáñez. (2017) A seven-layered model architecture for Internet of Vehicles. Journal of Information and Telecommunication, 1(1), 4-22. DOI: 10.1080/24751839.2017.1295601
  18. Ahmed, Syed Hassan, Safdar Hussain Bouk, Muhammad Azfar Yaqub, Dongkyun Kim, Houbing Song, and Jaime Lloret. (2016) CODIE: Controlled data and interest evaluation in vehicular named data networks”. IEEE Transactions on Vehicular Technology, 65(6), 3954-3963. DOI: 10.1109/TVT.2016.2558650.
  19. Shrestha, Rakesh, Rojeena Bajracharya, and Seung Yeob Nam. (2018). Challenges of Future VANET and Cloud-Based Approaches. Wireless Communications and Mobile Computing. DOI:10.1155/2018/5603518.
  20. Yang, Qiong, Lin Wang, Weiwei Xia, Yi Wu, and Lianfeng Shen. (2014). Development of on-board unit in vehicular ad-hoc network for highways. In: 2014 International Conference on Connected Vehicles and Expo (ICCVE), 457-462. IEEE. DOI: 10.1109/ICCVE.2014.7297589.
  21. Mehmood, Amjad, M. Nouman, Muhammad Muneer Umar, and Houbing Song. (2016) ESBL: An Energy-Efficient Scheme by Balancing Load in Group Based WSNs. KSII Transactions on Internet & Information Systems 10(10).
  22. Hasrouny, Hamssa, Abed Ellatif Samhat, Carole Bassil, and Anis Laouiti. (2018) A security solution for V2V communication within VANETs. In: 2018 Wireless Days (WD), 181-183. IEEE. DOI: 10.1109/WD.2018.8361716.
  23. Ahmed, Sheeraz, Mujeeb Ur Rehman, Atif Ishtiaq, Sarmadullah Khan, Armughan Ali, and Shabana Begum. (2018) VANSec: Attack-resistant VANET security algorithm in terms of trust computation error and normalized routing overhead. Journal of Sensors. DOI:10.1155/2018/6576841.
  24. Kosch, Timo, Christian J. Adler, Stephan Eichler, Christoph Schroth, and Markus Strassberger (2006) The scalability problem of vehicular ad hoc networks and how to solve it. IEEE Wireless Communications, 13(5), 22-28. DOI: 10.1109/WC-M.2006.250354.
  25. Whaiduzzaman, Md, Mehdi Sookhak, Abdullah Gani, and Rajkumar Buyya. (2014) A survey on vehicular cloud computing. Journal of Network and Computer applications, 40, 325-344. DOI: 10.1016/j.jnca.2013.08.004.
  26. Dang, Duc Ngoc Minh, Choong Seon Hong, Sungwon Lee, and Eui-Nam Huh. (2014) An efficient and reliable MAC in VANETs. IEEE Communications Letters, 18(4), 616-619. DOI: 10.1109/LCOMM.2014.030114.132504.
  27. Hou, Xueshi, Yong Li, Min Chen, Di Wu, Depeng Jin, and Sheng Chen. (2016) Vehicular fog computing: A viewpoint of vehicles as the infrastructures. IEEE Transactions on Vehicular Technology, 65(6), 3860-3873. DOI: 10.1109/TVT.2016.2532863.
  28. Shridevi Jeevan Kamble, Manjunath R Kounte. (2020) Machine Learning Approach on Traffic Congestion Monitoring System in Internet of Vehicles. Elsevier Journal of Procedia Computer Science, 171, Special Issue on CoCoNet, June, 2235-2241. DOI:10.1016/j.procs.2020.04.241.
  29. Al-Rabayah, Mohammad, and Robert Malaney. (2012) A new scalable hybrid routing protocol for VANETs. IEEE Transactions on Vehicular Technology, 61(6), 2625-2635. DOI: 10.1109/TVT.2012.2198837.
  30. Hasrouny, Hamssa, Carole Bassil, Abed Ellatif Samhat, and Anis Laouiti. (2017). Security Risk Analysis of a Trust model for Secure Group Leader-based communication in VANET. In: Vehicular Ad-Hoc Networks for Smart Cities, 71-83. Springer, Singapore. DOI: 10.1007/978-981-10-3503-6_6.
  31. Bo, Wang, Huang Chuanhe, Li Layuan, and Yang Wenzhong. (2011). Trust-based minimum cost opportunistic routing for Ad hoc networks. Journal of Systems and Software, 84(12), 2107-2122. DOI: 10.1016/j.jss.2011.05.043.
  32. Rawashdeh, Zaydoun Y., and Syed Masud Mahmud. (2012) A novel algorithm to form stable clusters in vehicular ad hoc networks on highways. EURASIP Journal on Wireless Communications and Networking, 1, 15. DOI:10.1186/1687-1499-2012-15.
  33. Taleb, Tarik, Ehssan Sakhaee, Abbas Jamalipour, Kazuo Hashimoto, Nei Kato, and Yoshiaki Nemoto. (2007). A stable routing protocol to support ITS services in VANET networks. IEEE Transactions on Vehicular technology, 56(6), 3337-3347. DOI: 10.1109/TVT.2007.906873.
  34. Joshi, Anshu, and Ranjeet Kaur. (2015) A novel multi-cast routing protocol for VANET. IEEE International Advance Computing Conference (IACC), 41-45. IEEE. DOI: 10.1109/IADCC.2015.7154665.
  35. Balico, Leandro N., Horacio ABF Oliveira, Raimundo S. Barreto, Antonio AF Loureiro, and Richard W. Pazzi. (2015) A prediction-based routing algorithm for vehicular ad hoc networks. In 2015 IEEE symposium on computers and communication (ISCC), 365-370. IEEE. DOI: 10.1109/ISCC.2015.7405542.
  36. Sethi, Vivek, and Narottam Chand. (2017) A destination based routing protocol for context based clusters in VANET. Communications and Network, 9(03), 179. DOI: 10.4236/cn.2017.93013.
  37. Santoso, Ganis Zulfa, and Moonsoo Kang. (2012) Performance analysis of AODV, DSDV and OLSR in a VANETs safety application scenario. In: 2012 14th International Conference on Advanced Communication Technology (ICACT), 57-60. IEEE. DOI: 10.1109/ITST.2018.8566825.
  38. Fan, Xiying, Chuanhe Huang, Bin Fu, Shaojie Wen, and Xi Chen. (2018). UAV-Assisted Data Dissemination in Delay-Constrained VANETs. Mobile Information Systems. DOI: 10.1155/2018/8548301.
  39. Begriche, Youcef, Rida Khatoun, Lyes Khoukhi, and Chen Xiuzhen. (2015) Bayesian-based model for a reputation system in vehicular networks. International Conference on Cyber Security of Smart Cities, Industrial Control System and Communications (SSIC), 1-6. IEEE. DOI: 10.1109/SSIC.2015.7245332.
  40. Sugumar, Rajendran, Alwar Rengarajan, and Chinnappan Jayakumar. (2018) Trust based authentication technique for cluster based vehicular ad hoc networks (VANET). Wireless Networks, 24(2), 373-382. DOI:10.1007/s11276-016-1336-6.
  41. Fadhil, J. A., & Sarhan, Q. I. (2020) Internet of Vehicles (IoV): A Survey of Challenges and Solutions. 21st International Arab Conference on Information Technology (ACIT), 1-10. IEEE. DOI: 10.1109/ACIT50332.2020.9300095.
  42. Hussain, R., & Zeadally, S. (2018) Autonomous cars: Research results, issues, and future challenges. IEEE Communications Surveys & Tutorials, 21(2), 1275-1313. DOI: 10.1109/COMST.2018.2869360.
  43. Zhou, H., Xu, W., Chen, J., & Wang, W. (2020) Evolutionary V2X technologies toward the Internet of vehicles: Challenges and opportunities. Proceedings of the IEEE, 108(2), 308-323. DOI: 10.1109/JPROC.2019.2961937.
  44. Kaiwartya, O., Abdullah, A. H.Cao, Y. Altameem, A. Prasad, M.Lin, C. T,& Liu, X. (2016) Internet of vehicles: Motivation, layered architecture, network model, challenges, and future aspects. IEEE access, 4, 5356-5373. DOI: 10.1109/ACCESS.2016.2603219.
  45. Sharma, S., & Kaushik, B. (2019) A survey on internet of vehicles: Applications, security issues & solutions. Vehicular Communications, 20, 100182. DOI: 10.1016/j.vehcom.2019.100182.
  46. Abbasi, Shirin, et al. (2021) Internet of Vehicles: Architecture, services, and applications. International Journal of Communication Systems, 34(10), e4793. DOI: 10.1002/dac.4793.
  47. Tuyisenge, Livinus, et al. (2018) Network architectures in internet of vehicles (IoV): review, protocols analysis, challenges and issues. International Conference on Internet of Vehicles. Springer, Cham. DOI: 10.1007/978-3-030-05081-8_1.
  48. Damaj, Issam W., Jibran K. Yousafzai, and Hussein T. Mouftah. (2022) Future Trends in Connected and Autonomous Vehicles: Enabling Communications and Processing Technologies. IEEE Access 10: 42334-42345. DOI: 10.1109/ACCESS.2022.3168320.
  49. Yang, Zhe, et al. (2018) A novel classifier exploiting mobility behaviors for sybil detection in connected vehicle systems. IEEE Internet of Things Journal, 6(2), 2626-2636. DOI: 10.1109/JIOT.2018.2872456
DOI: https://doi.org/10.2478/ttj-2023-0013 | Journal eISSN: 1407-6179 | Journal ISSN: 1407-6160
Language: English
Page range: 143 - 157
Published on: Apr 15, 2023
Published by: Transport and Telecommunication Institute
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2023 Shridevi Jeevan Kamble, Manjunath R Kounte, published by Transport and Telecommunication Institute
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.