SecRIP: Secure and reliable intercluster routing protocol for efficient data transmission in flying ad hoc networks
暂无分享,去创建一个
Sushma Jain | Navdeep Kaur | Vinay Bhardwaj | Sahil Vashisht | N. Kaur | Vinay Bhardwaj | Sahil Vashisht | Sushma Jain | Navdeep Kaur
[1] Joel J. P. C. Rodrigues,et al. SecSVA: Secure Storage, Verification, and Auditing of Big Data in the Cloud Environment , 2018, IEEE Communications Magazine.
[2] Jin Wang,et al. A PSO based Energy Efficient Coverage Control Algorithm for Wireless Sensor Networks , 2018 .
[3] Elena B. Aleksandrova. Methods of group authentication for low-resource vehicle and flying self-organizing networks , 2017, Automatic Control and Computer Sciences.
[4] Gongfa Li,et al. Enhancing network cluster synchronization capability based on artificial immune algorithm , 2019, Human-centric Computing and Information Sciences.
[5] Sushma Jain,et al. Software Defined UAV-Based Location Aware Deployment Scheme for Optimal Wireless Coverage , 2019, 2019 IEEE Intl Conf on Dependable, Autonomic and Secure Computing, Intl Conf on Pervasive Intelligence and Computing, Intl Conf on Cloud and Big Data Computing, Intl Conf on Cyber Science and Technology Congress (DASC/PiCom/CBDCom/CyberSciTech).
[6] Arun Kumar Sangaiah,et al. An Affinity Propagation-Based Self-Adaptive Clustering Method for Wireless Sensor Networks , 2019, Sensors.
[7] Daniel Gutiérrez-Reina,et al. A survey on unmanned aerial and aquatic vehicle multi-hop networks: Wireless communications, evaluation tools and applications , 2018, Comput. Commun..
[8] Neeraj Kumar,et al. DiLSe: Lattice-Based Secure and Dependable Data Dissemination Scheme for Social Internet of Vehicles , 2021, IEEE Transactions on Dependable and Secure Computing.
[9] Saadi Boudjit,et al. A Flocking-Based on Demand Routing Protocol for Unmanned Aerial Vehicles , 2018, Journal of Computer Science and Technology.
[10] Xiaojiang Du,et al. A Course-Aware Opportunistic Routing Protocol for FANETs , 2019, IEEE Access.
[11] Rajkumar Buyya,et al. BlockSDN: Blockchain-as-a-Service for Software Defined Networking in Smart City Applications , 2020, IEEE Network.
[12] Cong Pu,et al. Jamming-Resilient Multipath Routing Protocol for Flying Ad Hoc Networks , 2018, IEEE Access.
[13] Khalid A. Darabkh,et al. MDRMA: Multi-data rate mobility-aware AODV-based protocol for flying ad-hoc networks , 2019, Veh. Commun..
[14] Nitul Dutta,et al. Lattice based secure data transmission in MANETs , 2014, 2014 IEEE International Conference on Computational Intelligence and Computing Research.
[15] Sanmeet Kaur,et al. A comprehensive review on recent advancements in routing protocols for flying ad hoc networks , 2019, Trans. Emerg. Telecommun. Technol..
[16] Sushma Jain,et al. Location-Aware Network of Drones for Consumer Applications: Supporting Efficient Management Between Multiple Drones , 2019, IEEE Consumer Electronics Magazine.
[17] Wenbing Wu,et al. An Asynchronous Clustering and Mobile Data Gathering Schema Based on Timer Mechanism in Wireless Sensor Networks , 2019 .
[18] Prateek Sharma,et al. RoVAN: A Rough Set-based Scheme for Cluster Head Selection in Vehicular Ad-hoc Networks , 2018, 2018 IEEE Global Communications Conference (GLOBECOM).
[19] J. Sathiamoorthy,et al. A Trusted Waterfall Framework Based Peer to Peer Protocol for Reliable and Energy Efficient Data Transmission in MANETs , 2018, Wirel. Pers. Commun..
[20] Lei Guo,et al. A traffic-differentiated routing algorithm in Flying Ad Hoc Sensor Networks with SDN cluster controllers , 2017, J. Frankl. Inst..
[21] Christos Politis,et al. A selective multipath routing protocol for ubiquitous networks , 2018, Ad Hoc Networks.
[22] Sushma Jain,et al. An energy-efficient and location-aware Medium Access Control for quality of service enhancement in unmanned aerial vehicular networks , 2019, Comput. Electr. Eng..
[23] Shalini Batra,et al. Tree-Based Attack–Defense Model for Risk Assessment in Multi-UAV Networks , 2019, IEEE Consumer Electronics Magazine.
[24] Anil Kumar Verma,et al. Applying OLSR routing in FANETs , 2014, 2014 IEEE International Conference on Advanced Communications, Control and Computing Technologies.
[25] You-Ze Cho,et al. Adaptive Hello Interval in FANET Routing Protocols for Green UAVs , 2019, IEEE Access.
[26] Pascal Lorenz,et al. Routing in Flying Ad Hoc Networks: Survey, Constraints, and Future Challenge Perspectives , 2019, IEEE Access.
[27] Bruce L. Golden,et al. Optimization approaches for civil applications of unmanned aerial vehicles (UAVs) or aerial drones: A survey , 2018, Networks.
[28] Sushma Jain,et al. Software‐defined network‐enabled opportunistic offloading and charging scheme in multi‐unmanned aerial vehicle ecosystem , 2019, Int. J. Commun. Syst..
[29] Arun Kumar Sangaiah,et al. An empower hamilton loop based data collection algorithm with mobile agent for WSNs , 2019, Human-centric Computing and Information Sciences.
[30] J.Sathiamoorthy,et al. Design of A Competent Broadcast Algorithm for Reliable Transmission in CEAACK MANETs , 2015 .
[31] Ashok Kumar Das,et al. LSCSH: Lattice-Based Secure Cryptosystem for Smart Healthcare in Smart Cities Environment , 2018, IEEE Communications Magazine.
[32] Claudio E. Palazzi,et al. The Interference-aware Drone Ad-hoc Relay Network Configuration problem , 2018, Electron. Notes Discret. Math..
[33] Kathiravan Srinivasan,et al. Efficient cooperative relaying in flying ad hoc networks using fuzzy-bee colony optimization , 2017, The Journal of Supercomputing.
[34] Bin Li,et al. A task allocation strategy for complex applications in heterogeneous cluster–based wireless sensor networks , 2018, Int. J. Distributed Sens. Networks.
[35] Fadi Al-Turjman. A novel approach for drones positioning in mission critical applications , 2019 .
[36] Jin Wang,et al. Multimodel Framework for Indoor Localization Under Mobile Edge Computing Environment , 2019, IEEE Internet of Things Journal.
[37] R. Menaka,et al. Improving Performance Through Reputation Based Routing Protocol for Manet , 2017, Wirel. Pers. Commun..
[38] Sherali Zeadally,et al. Lattice-Based Public Key Cryptosystem for Internet of Things Environment: Challenges and Solutions , 2019, IEEE Internet of Things Journal.
[39] Mohammad S. Obaidat,et al. Deep Learning-Based Content Centric Data Dissemination Scheme for Internet of Vehicles , 2018, 2018 IEEE International Conference on Communications (ICC).
[40] Arun Kumar Sangaiah,et al. An Improved Routing Schema with Special Clustering Using PSO Algorithm for Heterogeneous Wireless Sensor Network , 2019, Sensors.
[41] Wei Liu,et al. Energy Efficient Routing Algorithm with Mobile Sink Support for Wireless Sensor Networks , 2019, Sensors.
[42] Mohamed Elhoseny,et al. An efficient hierarchical clustering protocol for multihop Internet of vehicles communication , 2019, Trans. Emerg. Telecommun. Technol..
[43] Mohammad S. Obaidat,et al. SeDaTiVe: SDN-Enabled Deep Learning Architecture for Network Traffic Control in Vehicular Cyber-Physical Systems , 2018, IEEE Network.
[44] Joel J. P. C. Rodrigues,et al. LaCSys: Lattice-Based Cryptosystem for Secure Communication in Smart Grid Environment , 2018, 2018 IEEE International Conference on Communications (ICC).
[45] J. Sathiamoorthy,et al. A Three Layered Peer-to-Peer Energy Efficient Protocol for Reliable and Secure Data Transmission in EAACK MANETs , 2018, Wirel. Pers. Commun..
[46] Sangman Moh,et al. Routing Protocols for Unmanned Aerial Vehicle Networks: A Survey , 2019, IEEE Access.
[47] Joel J. P. C. Rodrigues,et al. SDN-Enabled Multi-Attribute-Based Secure Communication for Smart Grid in IIoT Environment , 2018, IEEE Transactions on Industrial Informatics.
[48] K. Premkumar,et al. Multi Information Amount Movement Aware- Routing in FANET: Flying Ad-hoc Networks , 2019, Mobile Networks and Applications.
[49] Hye-Jin Kim,et al. An Enhanced PEGASIS Algorithm with Mobile Sink Support for Wireless Sensor Networks , 2018, Wirel. Commun. Mob. Comput..
[50] Fen Zhou,et al. A survey on position-based routing protocols for Flying Ad hoc Networks (FANETs) , 2017, Veh. Commun..
[51] William Whyte,et al. Choosing Parameter Sets forwithand , 2005, CT-RSA.