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Automatika
Journal for Control, Measurement, Electronics, Computing and Communications
Volume 65, 2024 - Issue 3
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Regular Paper

Prioritization and scheduling in the vehicle-to-infrastructure (V2I) scheme for vanets using enhanced congestion control source based ant colony optimization

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Pages 778-792 | Received 26 Sep 2023, Accepted 02 Jan 2024, Published online: 26 Feb 2024

References

  • Ghafari A. Hybrid opportunistic and position-based routing protocol in vehicular ad hoc networks. J Ambient Intel Human Computer. 2020;11(4):1593–1160. doi:10.1007/s12652-019-01316-z
  • Abassi R, Ben Chehida Douss A, Sauveron D. TSME: a trust-based security scheme for message exchange in vehicular Ad hoc networks. Hum Cent Computer Inf Sci. 2020;10(1):1–19. doi:10.1186/s13673-020-00248-4
  • Kumar DNSR, Barani S. (2020). Epidemic and transmission priority-based data dissemination model in vehichular adhoc networks (VANETs). Peer-to-Peer Netw Appl.
  • Taleb T, Benslimane A, Letaief KB. Toward an effective risk-conscious and collaborative vehicular collision avoidance system. IEEE Trans Veh Technol. 2010;59:1474–1486. doi:10.1109/TVT.2010.2040639
  • Saraereh OA, Ali A, Khan I, et al. Interference Analysis for Vehicle-to-Vehicle Communications at 28 GHz. Electronics (Basel). 2020;9:262), doi:10.3390/electronics9020262
  • Harding J, Powell G, Yoon R, et al. Vehicle-to-vehicle communications: readiness of V2 V technology for application; technical report; United States National Highway Traffic Safety Administration: Washington, DC, USA, 2014.
  • Nyerges Á, Tihanyi V.. Trajectory planning for automated vehicles– A basic approach. In Proceedings of the vehicle and automotive engineering (VAE 2018), Miskolc, Hungary, 23–25 May 2018; pp. 403–412.
  • Cooper C, Franklin D, Ros M, et al. A comparative survey of VANET clustering techniques. IEEE Commun Surv Tutor. 2016;19:657–681. doi:10.1109/COMST.2016.2611524
  • Haider S, Abbas G, Abbas ZH. VLCS: A novel clock synchronization technique for TDMA-based MAC protocols in VANETs. In Proceedings of the 4th International Conference on Emerging Trends in Engineering, Sciences and Technology (ICEEST 2019), Karachi, Pakistan, 10–11 December 2019; pp. 1–6.
  • Mohammad SA, Rasheed A, Qayyum A. VANET architectures and protocol stacks: A survey. In Proceedings of the International Workshop on Communication Technologies for Vehicles, Berlin, Germany, 23–24 March 2011; pp. 95–105.
  • Group IW. IEEE guide for wireless access in vehicular environments (WAVE)-Architecture; 1609.0-2013; IEEE: Piscataway, NJ, USA, 2014.
  • Haider S, Abbas G, Abbas ZH, et al. P-DACCA: A probabilistic direction-aware cooperative collision avoidance scheme for VANETs. Future Gener Comput Syst. 2020;103:1–17. doi:10.1016/j.future.2019.09.054
  • Haider S, Abbas G, Abbas ZH, et al. LWE-CPPA: A scheme for secure delivery of warning messages in VANETs. Int J Ad Hoc Ubiquitous Comput. 2019;34:17–185.
  • Haider S, Abbas G, Abbas ZH, et al. DABFS: A robust routing protocol for warning messages dissemination in VANETs. Comput Commun. 2019;147:21–34. doi:10.1016/j.comcom.2019.08.011
  • Abbas G, Abbas ZH, Haider S, et al. PDMAC: A priority-based enhanced TDMA protocol for warning message dissemination in VANETs. Sensors. 2020;20:45), doi:10.3390/s20010045
  • Khaliq KA, Chughtai O, Shahwani A, et al. Road accidents detection, data collection and data analysis using V2X communication and edge/cloud computing. Electronics (Basel). 2019;8:896), doi:10.3390/electronics8080896
  • Farooq SM, Hussain S, Kiran S, et al. Certificate based security mechanisms in vehicular ad-hoc networks based on IEC 61850 and IEEE WAVE standards. Electronics (Basel). 2019;8(96):21), Khan, U.A.; Lee, S.S. Multi-Layer Problems and Solutions in VANETs: A Review. Electronics 2019, 8, 204.
  • M. Adnan et al., “On the design of efficient hierarchic architecture for software defined vehicular networks,” Sensors 2021, 21, 1400, pp. 1–18, 2021, doi:10.3390/s21041400
  • Bai S, Oh J, Jung J-I. Context awareness beacon scheduling scheme for congestion control in vehicle-to-vehicle safety communication. Ad Hoc Network. 2013;11:2049–2058. doi:10.1016/j.adhoc.2012.02.014
  • Taherkhani, N., & Pierre, S. (2012). Congestion control in vehicular ad hoc networks using meta-heuristic techniques. In Proceedings of the Second ACM International Symposium on Design and Analysis of Intelligent Vehicular Networks and Applications (pp. 47–54). doi:10.1145/2386958.2386966
  • Bouassida MS, Shawky M. (2008). On the congestion control within VANET. In 1st IFIP Wireless Days, WD’08 (pp. 1–5).
  • Guan B, Zhao Y, Li Y. An improved ant colony optimization with an automatic updating mechanism for constraint satisfaction problems. Expert Syst Appl. 2021;164:114021), doi:10.1016/j.eswa.2020.114021
  • Maheshwari P, Sharma AK, Verma K. Energy efficient cluster-based routing protocol for WSN using butterfly optimization algorithm and ant colony optimization. Ad Hoc Netw. 2021;110:102317), doi:10.1016/j.adhoc.2020.102317
  • Sales Mendes A, Jiménez-Bravo DM, Navarro-Cáceres M, et al. Multiagent approach using lorawan devices: an airport case study. Electronics (Basel). 2020;9(9):1430), doi:10.3390/electronics9091430
  • Ramamoorthy R, Thangavelu M. An improved distance-based ant colony optimization routing for vehicular ad hoc networks. Int J Commun Syst. 2020;33(14):e4502), doi:10.1002/dac.4502
  • Sinwar D, Sharma N, Maakar SK, et al. Analysis and comparison of ant colony optimization algorithm with DSDV, AODV, and AOMDV based on shortest path in MANET. J Inf Optim Sci. 2020;41(2):621–632.