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Articles

Energy-efficient coverage and connectivity of wireless sensor network in the framework of hybrid sensor and vehicular network

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Pages 444-454 | Received 01 Apr 2020, Accepted 06 Aug 2020, Published online: 18 Aug 2020

References

  • World Health Organization. Global status report on road safety; 2018. ISBN 978-92-4-156568-4.
  • Kalupová B, Hlavoň I. Intelligent transport systems in the management of road transportation. Open Eng. 2016;6(1):492–497.
  • Sjoberg K, Andres P, Buburuzan T, et al. Cooperative intelligent transport systems in Europe: current deployment status and outlook. IEEE Veh Technol Mag. 2017;12(2):89–97.
  • Baras S, Saeed I, Tabaza HA, et al. VANETs-based intelligent transportation systems: an overview. In: Park J, Loia V, Yi G, editors. Advances in computer science and ubiquitous computing, lecture notes in electrical engineering. Taichung: Springer; 2018. p. 265–273.
  • Cunha F, Maia G, Ramos HS, et al. Vehicular networks to intelligent transportation systems. In: Arya K, Bhadoria R, Chaudhari N, editors. Emerging wireless communication and network technologies. Singapore: Springer; 2018. p. 297–315.
  • Nellore K, Hancke GP. A survey on urban traffic management system using wireless sensor networks. Sensors. 2016;16(2):157.
  • Jing N. Application of wireless sensor network in urban intelligent traffic information acquisition. Autom Control Comput Sci. 2018;52(5):431–438.
  • Kakkasageri MS, Manvi SS. Information management in vehicular ad hoc networks: a review. J Netw Comput Appl. 2014;39:334–350.
  • Kandris D, Nakas C, et al. Applications of wireless sensor networks: an up-to-date survey. Appl Syst Innov. 2020;3(1):14.
  • Weingärtner E, Kargl F. A prototype study on hybrid sensor-vehicular networks. Proceedings of the 6th GI/ITG KuVS Fachgesprach Sensornetzwerke “Wireless Sensor Networks”; Aachen, Germany; 2007.
  • Qin H, Li Z, Wang Y, et al. An integrated network of roadside sensors and vehicles for driving safety: concept, design and experiments. Proceedings of IEEE international conference on Pervasive Computing and Communications (PerCom); Mannheim, Germany; 2010. p. 79–87.
  • Djahel S, Ghamri-doudane Y. A framework for efficient communication in hybrid sensor and vehicular networks. Proceedings of IEEE CCNC; Las Vegas, NV; 2012.
  • Singh P, Ashthana A, Pandey MC. A hybrid VANET-WSN system for driving safety using efficient communication protocol. Int J Adv Res Sci Eng. 2013;2(5):27–39.
  • Bensiradj T, Moussaoui S. Strategy efficient to extend the lifetime of wireless sensor networks in a framework of hybrid sensors and vehicular networks for road safety. IET Wireless Sens Syst. 2019;9(6):416–423.
  • Alduraibi F, Lasla N, Younis M. Coverage-based node placement optimization in wireless sensor network with linear topology. Proceedings of IEEE International Conference on Communications (ICC); Kuala Lumpur; 2016. p. 1–6.
  • Hammoudeh M, Al-Fayez F, Lloyd H, et al. A wireless sensor network border monitoring system: deployment issues and routing protocols. IEEE Sens J. 2017;17(8):2572–2582.
  • Sharma A, Chauhan S. Target coverage computation protocols in wireless sensor networks: a comprehensive review. Int J Comput Appl. 2019. doi: https://doi.org/10.1080/1206212X.2019.1663382
  • Ma C, Liang W, Zheng M, et al. Relay node placement in wireless sensor networks with respect to delay and reliability requirements. IEEE Syst J. 2019;13(3):2570–2581.
  • Dandekar DR, Deshmukh PR. Relay node placement for multi-path connectivity in heterogeneous wireless sensor networks. Proc Technol. 2012;4:732–736.
  • Skulic J, Gkelias A, Leung KK. Node placement in linear wireless sensor networks. 21st European Signal Processing Conference (EUSIPCO 2013); Marrakech; 2013. p. 1–5.
  • Al-Karaki JN, Gawanmeh A. The optimal deployment, coverage, and connectivity problems in wireless sensor networks: revisited. IEEE Access. 2017;5:18051–18065.
  • Wang Y, Zhang Y, Liu J, et al. Coverage, connectivity, and deployment in wireless sensor networks. In: Patnaik S, Li X, Yang YM, editors. Recent development in wireless sensor and ad-hoc networks, signals and communication technology. New Delhi: Springer; 2015. p. 25–44.
  • Sun P, Boukerche A. Integrated connectivity and coverage techniques for wireless sensor networks. Proceedings of the 14th ACM International Symposium on Mobility Management and Wireless Access (MobiWac ‘16); 2016. p. 75–82.
  • Kundaliya BL, Hadia SK. Routing algorithms for wireless sensor networks: analysed and compared. Wireless Pers Commun. 2020;110(1):85–107.
  • Maratha P, Gupta K. A comprehensive and systematized review of energy-efficient routing protocols in wireless sensor networks. Int J Comput Appl. 2019. doi: https://doi.org/10.1080/1206212X.2019.1697513
  • Al Aghbari Z, Khedr AM, Osamy W, et al. Routing in wireless sensor networks using optimization techniques: a survey. Wirel Pers Commun. 2020;111:2407–2434.
  • Jafari H, Nazari M, Shamshirband S. Optimization of energy consumption in wireless sensor networks using density-based clustering algorithm. Int J Comput Appl. 2018. doi: https://doi.org/10.1080/1206212X.2018.1497117
  • Chugh A, Panda S. Energy efficient techniques in wireless sensor networks. Recent Pat Eng. 2019;13(1):13–19.
  • Alghamdi TA. Energy efficient protocol in wireless sensor network: optimized cluster head selection model. Telecommun Syst. 2020;74:331–345.
  • Barba CT, Ornelas K, Igartua MA. Performance evaluation of a hybrid sensor and vehicular network to improve road safety. Proceedings of the 7th ACM workshop on Performance Evaluation of Wireless ad hoc, Sensor, and Ubiquitous Networks (PE-WASUN ’10); Bodrum, Turkey; 2010.
  • Dias JAFF, Rodrigues JJPC, Soares VNGJ, et al. Network management and monitoring solutions for vehicular networks: a survey. Electronics. 2020;9(5):853.
  • Malik S, Sahu PK. A comparative study on routing protocols for VANETs. Heliyon. 2019;5(8):e02340.
  • Taleb AA. VANET routing protocols and architectures: an overview. J Comput Sci. 2018;14(3):423–434.
  • Ghori MR, Sadiq AS, Ghani A. VANET routing protocols: review, implementation and analysis. J Phys Conf Ser. 2018;1049(1):012064.
  • Ogundoyin SO. An autonomous lightweight conditional privacy-preserving authentication scheme with provable security for vehicular ad-hoc networks. Int J Comput Appl. 2020;42(2):196–211.
  • Hasrouny H, Samhat AE, Bassil C. VANet security challenges and solutions: a survey. Veh Commun. 2017;7:7–20.
  • Afzal Z, Kumar M. Security of Vehicular Ad-Hoc Networks (VANET): a survey. J Phys Conf Ser. 2020;1427:012015.
  • Priyadarshi R, Gupta B, Anurag A. Wireless sensor networks deployment: a result oriented analysis. Wireless Personal Communications. 2020;113(2):843–866.
  • Bensiradj T, Moussaoui S. Deployment model of wireless sensors networks in the framework of hybrid sensors and vehicular networks for road safety. Int J Rec Technol Eng. 2018;7(4):129–134.
  • Senouci A, Harous S, Aliouat Z. Survey on vehicular ad hoc networks clustering algorithms: overview, taxonomy, challenges, and open research issues. Int J Commun Syst. 2020;33(11):e4402.
  • Cooper C, Franklin D, Ros M, et al. A comparative survey of VANET clustering techniques. IEEE Commun Surv Tutorials. 2017;19(1):657–681.
  • Peng R, Sichitiu ML. Angle of arrival localization for wireless sensor networks. 3rd Annual IEEE Communications Society on Sensor and Ad Hoc Communications and Networks; Reston, VA; 2006. p. 374–382.
  • Varga A. The OMNeT++ discrete event simulation system. Proceedings of the European Simulation Multiconference (ESM’2001); Prague, Czech Republic; 2001. p.319–324.

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