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Analytical review and study on multipath routing protocols

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Vehicular Ad Hoc Networks (VANET) constitute a promising technology for Intelligent Transport Systems (ITS). VANET are highly dynamic in their nature because of the movements of vehicles, which are acting as nodes. The routing protocol must be designed for dealing with multiple limiting conditions, like link failures, handoffs, and long congestion periods, which is very challenging. The survey of different routing protocols in VANET provides a significant information for building smart ITS. Accordingly, the present survey is devoted to the existing distinct multipath routing protocols. This review article provides a detailed account on 50 research papers, presenting the different kinds of multipath routing protocols, namely proactive routing protocols, ad-hoc-based routing protocols, Greedy Perimeter Stateless Routing (GPSR), hybrid routing protocols, as well as geographic routing protocols. Besides the classification and cursory description, the present study addresses also several of the important parameters, like evaluation metrics, implementation tool, publication year, datasets utilized, Peak Signal to Noise Ratio (PSNR), and packet end-to-end delay with respect to various techniques considered. Eventually, the research gaps and issues of various multipath routing protocols are presented with the intention of pointing out directions for future research.
Rocznik
Strony
369--391
Opis fizyczny
Bibliogr. 57 poz., rys., tab.
Twórcy
  • Computer Science and Engineering Department, Sanjay Ghodawat University, Kolhapur, Maharashtra, India
  • Electronic & Communication Engineering Department, KLE Dr. M.S. Sheshgiri College of Engineering & Technology, Belgavi, Karnataka, India
Bibliografia
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  • Aliyu, A., Abdullah, A.H., Budiyono, A., Raja, R.Z., Radzi, M and Joda, U.M. (2018b) VANETs Multipath Video Data Streaming Considering Road Features. International Journal of Integrated Engineering 10(6).
  • Aliyu, A., Abdullah, A.H., Sikandar, A., Joda, U.M., Sadiq, F.I and Ado, A. (2018c) Minimizing Route Coupling Effect in Multipath Video Streaming Over Vehicular Network. In: Proceedings of International Conference on Application of Computing and Communication Technologies, Springer, 139-151.
  • Asefi, M., Cespedes, S., Shen, X. and Mark, J.W. (2011) A Seamless Quality-Driven Multi-Hop Data Delivery Scheme for Video Streaming in Urban VANET Scenarios. In: Proceedings of IEEE International Conference on Communications (ICC), Kyoto, Japan 1-5.
  • Asefi, M., Mark, J.W. and Shen, X. (2011) An Application-Centric Inter-Vehicle Routing Protocol for Video Streaming over Multi–Hop Urban VANETs. In: Proceedings of IEEE International Conference on Communications (ICC), Kyoto, Japan, 1-5.
  • Asefi, M., Mark, J.W and Shen, X. (2012) A Mobility-Aware and Quality-Driven Retransmission Limit Adaptation Scheme for Video Streaming over VANETs. IEEE Transactions on Wireless Communications, 11(5): 1817–1827.
  • Ayaida, M., Barhoumi, M., Fouchal, H., Ghamri-Doudane, Y. and Afilal, L. (2012) HHLS: A Hybrid Routing Technique for VANETs. IEEE Global Communications Conference (GLOBECOM), Anaheim, CA, USA. IEEE, 44-48.
  • Bisht, A.K., Kumar, B., Mishra, S. (2012) Efficiency Evaluation of Routing Protocols for Vehicular Ad-Hoc Networks Using City Scenario. In: Proceedings of International Conference on Computer Communication and Informatics (ICCCI), Coimbatore, India. IEEE.
  • Biswas, S., Tatchikou, R. and Dion, F. (2006) Vehicle-to-vehicle wireless communication protocols for enhancing highway traffic safety. IEEE Communications Magazine 44, 74-82.
  • Chen, Y-S., Lin, Y-W., Lee, S-L. (2010) A Mobicast Routing Protocol in Vehicular Ad-Hoc Networks. Mobile Networks and Applications 15(1): 20-35
  • Eiza, M.H., Owens, T., Ni, Q. and Shi, Q. (2015) Situation-Aware QoS Routing Algorithm for Vehicular Ad hoc Networks. IEEE Transactions on Vehicular Technology 64(12): 5520-5535.
  • Fekair, M.E.A., Lakas, A. and Korichi, A. (2016) CBQoS-VANET: Cluster-based Artificial Bee Colony Algorithm for QoS Routing Protocol in VANET. In: Proceedings of International Conference on Selected Topics in Mobile and Wireless Networking (MoWNeT), Cairo, Egypt. IEEE.
  • Felice, M.D., Cerqueira, E., Melo, A., Gerla, M., Cuomo, F., Baiocchi, A. (2014) A distributed beaconless routing protocol for real-time video dissemination in multimedia VANETs. Computer Communications 58, 40-52.
  • George, A. and Rajakumar, B.R. (2013) Fuzzy Aided Ant Colony Optimization Algorithm to solve Optimization Problem. Intelligent Informatics, Advances in Intelligent Systems and Computing, 182, 207-215.
  • Hammood, O.A., Nizam, N., Nafaa, M., Hammood, W.A. (2019) RESP: Relay Suitability-based Routing Protocol for Video Streaming in Vehicular Ad Hoc Networks. International Journal of Computers Communications and Control, 14(1): 21-38.
  • Huang, C-M., Lin, T-H. and Tseng, K-C. (2012) Bandwidth Aggregation over VANET Using the Geographic Member-Centric Routing Protocol (GMR). In: Proceedings of 12th International Conference on ITS Telecommunications, Taipei, Taiwan. IEEE, 737-742.
  • Husain, K., Awang, A., Kamel, N. and A¨ıssa, S. (2019) Intersection-Based Link-Adaptive Beaconless Forwarding in Urban Vehicular. Ad-Hoc Networks 19(5): 1242.
  • Ikeda, M., Honda, T. and Barolli, L. (2015) Performance of optimized link state routing protocol for video streaming application in vehicular adhoc networks cloud computing. Concurrency and Computation: Practice and Experience 27(8): 2054-2063.
  • Labiod, M.A., Gharbia, M., Coudouxa, F.-X., Corlaya, P. and Doghmane, N. (2018) Enhanced adaptive cross-layer scheme for low latency HEVC streaming over Vehicular Ad-hoc Networks (VANETs). Vehicular Communications 15, 28-39.
  • Lai, W.K., Tai, C.K., Wu, T-Y., Anpalagan, A. and Chen, J.Z. (2016) PBMP: priority-based multi-path packet routing for vehicular ad hoc network system in city environment. Transactions on Emerging Telecommunications Technologies, 27(10): 1331-1344.
  • Lee, W.-I., Pyun, J-Y., Lee, Y.S. and Lee, S-W. (2013) Relative velocity based vehicle-to-vehicle routing protocol over Ad-Hoc networks. International Journal of Ad Hoc and Ubiquitous Computing 12(1): 14-22.
  • Machado, S., Ozon, J., Gonzalez, A.J. and Ghafoor, K.Z. (2013) Structured Peer-to-Peer Real Time Video Transmission over Vehicular Ad Hoc Networks. Mobile Network Applications 18: 896-907.
  • Manimozhi, D., Karthik, S., Sivasankaran, V., Arif, A.M. and Nithya, A. (2018) An Effective High Quality Video Streaming Protocol with Optimal Path Selection for VANET. International Conference on Communication and Signal Processing. IEEE.
  • Marfia, G. and Roccetti, M. (2010) TCP at last: reconsidering TCP’s role for wireless entertainment centers at home. IEEE Transactions on Consumer Electronics 56, 2233–2240.
  • Mathew, D.S. (2013) Streaming Urban Video in Vehicular Ad Hoc Networks. International Journal of Science. Engineering and Technology Research (IJSETR), 2(5): 1041-1046.
  • Mezher, A.M. and Igartua, M.A. (2015) Multimedia Multimetric Mapaware Routing protocol to send video-reporting messages over VANETs in smart cities. IEEE Transactions on Vehicular Technology 66(12): 10611–10625.
  • More, N.S. and Pawar, P.M. (2009) Simulation of S-MAC protocol for Wireless Sensor Network. In: Proceeding of National level conference, Kumbhakonam, India.
  • More, S. and Naik, U. (2018a) A Novel Technique in Multihop Environment for Efficient Emergency Message Dissemination and Lossless Video Transmission in VANETS. Journal of Communications and Information Networks, 3(4).
  • More, S. and Naik, U.L. (2018b) Optimization driven Multipath Routing for the video transmission in the VANET. In: Proceedings of 2nd IEEE Global Conference on Wireless Computing and Networking (GCWCN), Lonavala, India. 5, 16568–16575.
  • Mukhedkar, M.M. and Kolekar, U. (2019) Trust-Based Secure Routing in Mobile Ad Hoc Network Using Hybrid Optimization Algorithm. The Computer Journal 62(10): 1528-1545.
  • Patel, H.C. (2018) MCFS Enhanced Route Selection Approach Using Multipath Carry Forwarding and Searching in VANET. International Journal of Vehicular Telematics and Infotainment Systems 2(1).
  • Qadri, N.N., Fleury, M., Altaf, M. and Ghanbari, M. (2010) Multisource video streaming in a wireless vehicular ad hoc network. IET Communications 4(11): 1300–1311.
  • Quadros, C., Cerqueira, E., Santos, A. and Gerla, M. (2014) A Multiflow-driven Mechanism to Support Live Video Streaming on VANETs. In: Proceedings of Brazilian Symposium on Computer Networks and Distributed Systems, Florianopolis, Brazil. IEEE.
  • Quadros, C., Santos, A., Gerla, M. and Cerqueira, E. (2015) A QoE-Aware Mechanism to Improve the Dissemination of Live Videos over VANETs. In: Proceedings of XXXIII Brazilian Symposium on Computer Networks and Distributed Systems, Vitoria, Brazil. IEEE.
  • Quang, P.T.A., Piamrat, K. and Viho, C. (2014) QoE-aware Routing for Video Streaming over VANETs. In: Proceedings of 80th Vehicular Technology Conference. Vancouver, BC, Canada, 1-5. IEEE.
  • Razzaq, A. and Mehaoua, A. (2010) Video Transport over VANETs: Multi-Stream Coding with Multi-Path and Network Coding. In: Proceedings of 35th Annual IEEE Conference on Local Computer Networks, Denver, CO, USA. IEEE.
  • Rezende, C., Boukerche, A., Ramos, H.S. and Loureiro, A.A.F. (2015) A Reactive and Scalable Unicast Solution for Video Streaming over VANETs. IEEE Transactions on Computers 64(3): 614-626.
  • Salkuyeh, M.A. and Abolhassani, B. (2016) An Adaptive Multipath Geographic Routing for Video Transmission in Urban VANETs. IEEE Transactions on Intelligent Transportation Systems 17(10): 2822-2831.
  • Salkuyeh, M.A. and Abolhassani, B. (2018) Optimal Video Packet Distribution in Multipath Routing for Urban VANETs. Journal of Communications and Networks 20(2): 198–206.
  • Smida, E.B., Fantar, S.G. and Youssef, H. (2018) Video streaming forwarding in a smart city’s VANET. In: Proceedings of 11th International Conference on Service-Oriented Computing and Applications, Paris, France. IEEE.
  • Tamilselvi, R. and Kathiresan, V. (2017) Bandwidth aware multipath geographic routing protocol (Bamgrp) for reliable video transmission in multimedia vehicular. Ad-Hoc Networks, 9(4): 2779–2787.
  • Tamilselvi, R. and Kathiresan, V. (2018a) Effective Packet Loss Rate based Multipath Routing Technique (EPLR – MRT) for Video Transmission in Vehicular Ad hoc Networks. International Journal of Pure and Applied Mathematics 119(12): 15379-15393.
  • Tamilselvi, R. and Kathiresan, V. (2018b) Energy competent transmission mechanism based routing approach (ECTM-MRA) for reliable video transmission in multimedia vehicular ad-hoc networks. ARPN Journal of Engineering and Applied Sciences 13(5). 1791–1801.
  • Veeraiah, N. and Krishna, B.T. (2018) Intrusion Detection Based on Piecewise Fuzzy C-Means Clustering and Fuzzy Na¨ıve Bayes Rule. Multimedia Research 1(1), 27–32,
  • Venkatramana, D.K.N., Srikantaiah, S.B. and Moodabidri, J. (2017) SCGRP: SDN-enabled connectivity-aware geographical routing protocol of VANETs for urban environment. IET Networks, 6(5): 102-111.
  • Wang, M., Xu, C., Jia, S., Guan, J. and Grieco, L.A. (2017) Preferenceaware Fast Interest Forwarding for Video Streaming in Information-Centric VANETs. In: International Conference on Communications (ICC) Paris, France, 1-7. IEEE.
  • Wang, R. (2012) LIAITHON: A location-aware multipath video streaming scheme for urban vehicular networks. In: Proceeding of Symposium on Computers and Communications, Cappadocia, Turkey. IEEE.
  • Wang, R., Almulla, M., Rezende, C., Boukerche, A. (2014) Video Streaming Over Vehicular Networks by a Multiple Path Solution with Error Correction. In: Proceedings of IEEE International Conference on Communications (ICC), Sydney, NSW, Australia, 580–585.
  • Wu, H. and Ma, H. (2014) Opportunistic Routing for Live Video Streaming in Vehicular Ad Hoc Networks. In: Proceedings of IEEE International Symposium on a World of Wireless. Mobile and Multimedia Networks, Sydney, NSW, Australia, 1–3.
  • Xie, H., Boukerche, A. and Loureiro, A.A.F. (2015) A Multipath Video Streaming Solution for Vehicular Networks with Link Disjoint and Nodedisjoint. IEEE Transactions on Parallel and Distributed Systems 26(12): 3223-3235.
  • Xie, H., Boukerche, A. and Loureiro, A.A.F. (2016) MERVS: A Novel Multi-channel Error Recovery Video Streaming Protocol for Vehicle Adhoc Networks. IEEE Transactions on Vehicular Technology. 65(2): 923-935.
  • Xu, C., Quan, W., Zhang, H. and Grieco, L.A. (2018) GrIMS: Green Information-centric Multimedia Streaming Framework in Vehicular Ad Hoc Networks. IEEE Transactions on Circuits and Systems for Video Technology 28(2): 483-498.
  • Yousef, W.S.M., Rafie, M., Arshad, H.J., Zahary, A. (2017) Vehicle Rewarding for Video Transmission Over VANETs using Real Neighborhood and Relative Velocity (RNRV). Journal of Theoretical and Applied Information Technology 95(2), 242–258.
  • Zaidi, S., Bitam, S. and Mellouk, A. (2018) Hybrid Error Recovery Protocol for Video Streaming in Vehicle Ad hoc Networks. Vehicular Communications 12, 110-126.
  • Zaimi, I., Houssaini, Z.S., Boushaba, A. and Oumsis, M. (2016a) A New Improved GPSR (GPSR-kP) Routing Protocol for Multimedia Communication over Vehicular Ad hoc Network. In: Proceedings of the International Conference on Big Data and Advanced Wireless Technologies (14): 1-7, Association for Computing Machinery, New York, NY.
  • Zaimi, I., Houssainiy, Z.S., Boushabaz, A. and Oumsis, M. (2016b) An Improved GPSR Protocol to Enhance the Video Quality Transmission over Vehicular Ad hoc Networks. In: Proceedings of International Conference on Wireless Networks and Mobile Communications (WINCOM), Fez, Morocco 146-153. IEEE.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-fb3cd745-0b96-4580-9b8a-edb8d971dc6d
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