A comprehensive review on recent advancements in routing protocols for flying ad hoc networks
暂无分享,去创建一个
[1] Paolo Santi,et al. The Node Distribution of the Random Waypoint Mobility Model for Wireless Ad Hoc Networks , 2003, IEEE Trans. Mob. Comput..
[2] Mohammed Atiquzzaman,et al. On the routing in Flying Ad Hoc Networks , 2015, 2015 Federated Conference on Computer Science and Information Systems (FedCSIS).
[3] Bruce L. Golden,et al. Optimization approaches for civil applications of unmanned aerial vehicles (UAVs) or aerial drones: A survey , 2018, Networks.
[4] Pengcheng Xie. An Enhanced OLSR Routing Protocol based on Node Link Expiration Time and Residual Energy in Ocean FANETS , 2018, 2018 24th Asia-Pacific Conference on Communications (APCC).
[5] Dan Wang,et al. Link availability estimation based reliable routing for aeronautical ad hoc networks , 2014, Ad Hoc Networks.
[6] Saadi Boudjit,et al. Bio-Inspired on Demand Routing Protocol for Unmanned Aerial Vehicles , 2017, 2017 26th International Conference on Computer Communication and Networks (ICCCN).
[7] Xiaoyan Hong,et al. A group mobility model for ad hoc wireless networks , 1999, MSWiM '99.
[8] Lei Wang,et al. NC-OLSR: A network coding based OLSR multipath transmission scheme for FANETs , 2017, 2017 4th International Conference on Systems and Informatics (ICSAI).
[9] Lav Gupta,et al. Survey of Important Issues in UAV Communication Networks , 2016, IEEE Communications Surveys & Tutorials.
[10] Brian Gallagher,et al. MaxProp: Routing for Vehicle-Based Disruption-Tolerant Networks , 2006, Proceedings IEEE INFOCOM 2006. 25TH IEEE International Conference on Computer Communications.
[11] Cauligi S. Raghavendra,et al. Spray and wait: an efficient routing scheme for intermittently connected mobile networks , 2005, WDTN '05.
[12] Won-Joo Hwang,et al. Network Utility Maximization-Based Congestion Control Over Wireless Networks: A Survey and Potential Directives , 2017, IEEE Communications Surveys & Tutorials.
[13] Evsen Yanmaz,et al. Survey on Unmanned Aerial Vehicle Networks for Civil Applications: A Communications Viewpoint , 2016, IEEE Communications Surveys & Tutorials.
[14] Ki-Il Kim,et al. A new geographical routing protocol for heterogeneous aircraft Ad Hoc Networks , 2012, 2012 IEEE/AIAA 31st Digital Avionics Systems Conference (DASC).
[15] Zygmunt J. Haas,et al. Predictive distance-based mobility management for multidimensional PCS networks , 2003, TNET.
[16] Choong Seon Hong,et al. Decentralized Computation Offloading and Resource Allocation for Mobile-Edge Computing: A Matching Game Approach , 2018, IEEE Access.
[17] Bixio Rimoldi,et al. Speed-aware routing for UAV ad-hoc networks , 2013, 2013 IEEE Globecom Workshops (GC Wkshps).
[18] Zhang Jun,et al. The clustering algorithm of UAV Networking in Near-space , 2008, 2008 8th International Symposium on Antennas, Propagation and EM Theory.
[19] Marc St-Hilaire,et al. Routing in unmanned aerial ad hoc networks: A recovery strategy for Greedy geographic forwarding failure , 2014, 2014 IEEE Wireless Communications and Networking Conference (WCNC).
[20] Wenchao Xu,et al. Air-Ground Integrated Mobile Edge Networks: Architecture, Challenges, and Opportunities , 2018, IEEE Communications Magazine.
[21] Peng Yang,et al. Enhanced routing protocol for fast flying UAV network , 2016, 2016 IEEE International Conference on Communication Systems (ICCS).
[22] Horst F. Wedde,et al. BeeAdHoc: an energy efficient routing algorithm for mobile ad hoc networks inspired by bee behavior , 2005, GECCO '05.
[23] Li Zhi,et al. An adaptive forwarding protocol for three dimensional Flying Ad Hoc Networks , 2015, 2015 IEEE 5th International Conference on Electronics Information and Emergency Communication.
[24] Claudio E. Palazzi,et al. Comparing Routing Protocols over a 3D IoT , 2018, MobiHoc.
[25] Rostam Shirani,et al. Combined Reactive-Geographic routing for Unmanned Aeronautical Ad-hoc Networks , 2012, 2012 8th International Wireless Communications and Mobile Computing Conference (IWCMC).
[26] Fen Zhou,et al. A survey on position-based routing protocols for Flying Ad hoc Networks (FANETs) , 2017, Veh. Commun..
[27] Won-Joo Hwang,et al. Network utility maximization in multipath lossy wireless networks , 2017, Int. J. Commun. Syst..
[28] A. Laouiti,et al. Optimized link state routing protocol for ad hoc networks , 2001, Proceedings. IEEE International Multi Topic Conference, 2001. IEEE INMIC 2001. Technology for the 21st Century..
[29] Edward W. Knightly,et al. The IEEE 802.11s Extended Service Set Mesh Networking Standard , 2008, IEEE Communications Magazine.
[30] Dario Floreano,et al. Dynamic Routing for Flying Ad Hoc Networks , 2014, IEEE Transactions on Vehicular Technology.
[31] Ozgur Koray Sahingoz,et al. Networking Models in Flying Ad-Hoc Networks (FANETs): Concepts and Challenges , 2013, Journal of Intelligent & Robotic Systems.
[32] Laurence T. Yang,et al. Multipath Cooperative Routing with Efficient Acknowledgement for LEO Satellite Networks , 2019, IEEE Transactions on Mobile Computing.
[33] Shangguang Wang,et al. A-GR: A novel geographical routing protocol for AANETs , 2013, J. Syst. Archit..
[34] Sang-Jo Yoo,et al. Robust and Reliable Predictive Routing Strategy for Flying Ad-Hoc Networks , 2017, IEEE Access.
[35] M. S. Corson,et al. A highly adaptive distributed routing algorithm for mobile wireless networks , 1997, Proceedings of INFOCOM '97.
[36] Guangjie Han,et al. Routing Protocols for Unmanned Aerial Vehicles , 2018, IEEE Communications Magazine.
[37] Ivan Stojmenovic,et al. On delivery guarantees of face and combined greedy-face routing in ad hoc and sensor networks , 2006, MobiCom '06.
[38] Hwangnam Kim,et al. Constructing a reliable and fast recoverable network for drones , 2016, 2016 IEEE International Conference on Communications (ICC).
[39] Berk Canberk,et al. SDNs in the Sky: Robust End-to-End Connectivity for Aerial Vehicular Networks , 2018, IEEE Communications Magazine.
[40] Geoffrey Ye Li,et al. Joint Offloading and Trajectory Design for UAV-Enabled Mobile Edge Computing Systems , 2019, IEEE Internet of Things Journal.
[41] Nitin H. Vaidya,et al. Location‐Aided Routing (LAR) in mobile ad hoc networks , 2000, Wirel. Networks.
[42] Sang-Jo Yoo,et al. A novel directional routing scheme for flying ad-hoc networks , 2016, 2016 International Conference on Information and Communication Technology Convergence (ICTC).
[43] Claudio E. Palazzi,et al. A Comparison of Stateless Position-based Packet Routing Algorithms for FANETs , 2018, IEEE Transactions on Mobile Computing.
[44] Atulya K. Nagar,et al. Conflicts in Routing and UAV Autonomy Algorithms for Ad-hoc & Infrastructure based UAV networks , 2018 .
[45] David A. Maltz,et al. Dynamic Source Routing in Ad Hoc Wireless Networks , 1994, Mobidata.
[46] K. B. Letaief,et al. A Survey on Mobile Edge Computing: The Communication Perspective , 2017, IEEE Communications Surveys & Tutorials.
[47] Jörg Ott,et al. The ONE simulator for DTN protocol evaluation , 2009, SIMUTools 2009.
[48] Eduardo Cerqueira,et al. Opportunistic routing for multi-flow video dissemination over Flying Ad-Hoc Networks , 2014, Proceeding of IEEE International Symposium on a World of Wireless, Mobile and Multimedia Networks 2014.
[49] Scott Moore,et al. A comparison of MANET routing protocols on airborne tactical networks , 2012, MILCOM 2012 - 2012 IEEE Military Communications Conference.
[50] Muhammad Nauman Bashir,et al. Green Mesh Network of UAVs: A Survey of Energy Efficient Protocols across Physical, Data Link and Network Layers , 2019, 2019 4th MEC International Conference on Big Data and Smart City (ICBDSC).
[51] Seungmin Rho,et al. Energy Aware Cluster-Based Routing in Flying Ad-Hoc Networks , 2018, Sensors.
[52] Danil S. Vasiliev,et al. Simulation-Based Comparison of AODV, OLSR and HWMP Protocols for Flying Ad Hoc Networks , 2014, NEW2AN.
[53] Michael Bahr,et al. Proposed routing for IEEE 802.11s WLAN mesh networks , 2006, WICON '06.
[54] Anil Kumar Verma,et al. Experimental analysis of AODV, DSDV and OLSR routing protocol for flying adhoc networks (FANETs) , 2015, 2015 IEEE International Conference on Electrical, Computer and Communication Technologies (ICECCT).
[55] Junfeng Wang,et al. Multiple QoS Parameters-Based Routing for Civil Aeronautical Ad Hoc Networks , 2017, IEEE Internet of Things Journal.
[56] Jaeho Kim,et al. Geolocation-Based Routing Protocol for Flying Ad Hoc Networks (FANETs) , 2018, 2018 Tenth International Conference on Ubiquitous and Future Networks (ICUFN).
[57] Ivan Stojmenovic,et al. Depth first search and location based localized routing and QoS routing in wireless networks , 2000, Proceedings 2000 International Conference on Parallel Processing.
[58] Jean-Aimé Maxa,et al. Emulation-Based Performance Evaluation of Routing Protocols for Uaanets , 2015, Nets4Cars/Nets4Trains/Nets4Aircraft.
[59] Ilker Bekmezci,et al. Flying Ad-Hoc Networks (FANETs): A survey , 2013, Ad Hoc Networks.
[60] Wenye Wang,et al. WSN03-4: A Novel Semi-Markov Smooth Mobility Model for Mobile Ad Hoc Networks. , 2006, IEEE Globecom 2006.
[61] Fekher Khelifi,et al. Localization and Energy-Efficient Data Routing for Unmanned Aerial Vehicles: Fuzzy-Logic-Based Approach , 2018, IEEE Communications Magazine.
[62] Zhi Chen,et al. Improving Physical Layer Security Using UAV-Enabled Mobile Relaying , 2017, IEEE Wireless Communications Letters.
[63] Cong Pu,et al. Jamming-Resilient Multipath Routing Protocol for Flying Ad Hoc Networks , 2018, IEEE Access.
[64] Michael A. Temple,et al. Simulation-Based Performance Evaluation of Mobile Ad Hoc Routing Protocols in a Swarm of Unmanned Aerial Vehicles , 2007, 21st International Conference on Advanced Information Networking and Applications Workshops (AINAW'07).
[65] Juan-Carlos Cano,et al. A Location-Aware Waypoint-Based Routing Protocol for Airborne DTNs in Search and Rescue Scenarios , 2018, Sensors.
[66] Admela Jukan,et al. A Survey on Internet Multipath Routing and Provisioning , 2015, IEEE Communications Surveys & Tutorials.
[67] Qian Qi,et al. A Stable Ant-based Routing Protocol for Flying Ad Hoc Networks , 2018 .
[68] Houbing Song,et al. A shortest path routing algorithm for unmanned aerial systems based on grid position , 2018, J. Netw. Comput. Appl..
[69] Barry E. Mullins,et al. A novel communications protocol using geographic routing for swarming UAVs performing a Search Mission , 2012, 2009 IEEE International Conference on Pervasive Computing and Communications.
[70] Brad Karp,et al. GPSR: greedy perimeter stateless routing for wireless networks , 2000, MobiCom '00.
[71] Luca Maria Gambardella,et al. AntHocNet: an adaptive nature-inspired algorithm for routing in mobile ad hoc networks , 2005, Eur. Trans. Telecommun..
[72] Nilanjan Dey,et al. Flying Ad hoc Networks: A Comprehensive Survey , 2018 .
[73] Yi Zhou,et al. A Smooth-Turn Mobility Model for Airborne Networks , 2013, IEEE Trans. Veh. Technol..
[74] Sangman Moh,et al. A Survey on Cluster-Based Routing Protocols for Unmanned Aerial Vehicle Networks , 2019, IEEE Access.
[75] Klaus Wehrle,et al. Modeling and Tools for Network Simulation , 2010, Modeling and Tools for Network Simulation.
[76] Qian Qi,et al. An adaptive density-based routing protocol for flying Ad Hoc networks , 2017 .
[77] Charles E. Perkins,et al. Highly Dynamic Destination-Sequenced Distance-Vector Routing (DSDV) for mobile computers , 1994, SIGCOMM.
[78] Bin Li,et al. UAV Communications for 5G and Beyond: Recent Advances and Future Trends , 2019, IEEE Internet of Things Journal.
[79] Rabin K. Patra,et al. Routing in a delay tolerant network , 2004, SIGCOMM '04.
[80] Tanapat Anusas-amornkul,et al. The Study of Routing Protocols for UAVs using Paparazzi Mobility Model with Different Altitudes , 2016, ICCIS '16.
[81] Zhongshan Zhang,et al. BICSF: Bio-Inspired Clustering Scheme for FANETs , 2019, IEEE Access.
[82] Chunhua Zang,et al. Mobility prediction clustering algorithm for UAV networking , 2011, 2011 IEEE GLOBECOM Workshops (GC Wkshps).