A Probabilistic Data Structures-Based Anomaly Detection Scheme for Software-Defined Internet of Vehicles
暂无分享,去创建一个
Neeraj Kumar | Shalini Batra | Sahil Garg | Gagangeet Singh Aujla | Sukhdeep Kaur | Amritpal Singh | Neeraj Kumar | S. Garg | Shalini Batra | Sukhdeep Kaur | G. Aujla | Amritpal Singh
[1] Julie A. McCann,et al. UbiFlow: Mobility management in urban-scale software defined IoT , 2015, 2015 IEEE Conference on Computer Communications (INFOCOM).
[2] Zhiyang Li,et al. An Efficient DDoS Detection with Bloom Filter in SDN , 2016, 2016 IEEE Trustcom/BigDataSE/ISPA.
[3] Hongke Zhang,et al. Defending Against New-Flow Attack in SDN-Based Internet of Things , 2017, IEEE Access.
[4] Shahram Sarkani,et al. MARK-ELM: Application of a novel Multiple Kernel Learning framework for improving the robustness of Network Intrusion Detection , 2015, Expert Syst. Appl..
[5] Shalini Batra,et al. Fuzzified Cuckoo based Clustering Technique for Network Anomaly Detection , 2017, Comput. Electr. Eng..
[6] Wei Liu,et al. Energy Efficient Routing Algorithm with Mobile Sink Support for Wireless Sensor Networks , 2019, Sensors.
[7] Albert Y. Zomaya,et al. Optimal Decision Making for Big Data Processing at Edge-Cloud Environment: An SDN Perspective , 2018, IEEE Transactions on Industrial Informatics.
[8] Francisco Herrera,et al. On the combination of genetic fuzzy systems and pairwise learning for improving detection rates on Intrusion Detection Systems , 2015, Expert Syst. Appl..
[9] Yan Zhang,et al. Software Defined Networking for Energy Harvesting Internet of Things , 2018, IEEE Internet of Things Journal.
[10] Athanasios V. Vasilakos,et al. Software-Defined Industrial Internet of Things in the Context of Industry 4.0 , 2016, IEEE Sensors Journal.
[11] Mohsen Guizani,et al. Edge Computing in the Industrial Internet of Things Environment: Software-Defined-Networks-Based Edge-Cloud Interplay , 2018, IEEE Communications Magazine.
[12] Dushantha Nalin K. Jayakody,et al. SDN-Based Secure and Privacy-Preserving Scheme for Vehicular Networks: A 5G Perspective , 2019, IEEE Transactions on Vehicular Technology.
[13] Vignesh Sridharan,et al. A Survey on Controller Placement in SDN , 2020, IEEE Communications Surveys & Tutorials.
[14] Izzat Alsmadi,et al. Identifying cyber-attacks on software defined networks: An inference-based intrusion detection approach , 2017, J. Netw. Comput. Appl..
[15] Basil S. Maglaris,et al. Combining OpenFlow and sFlow for an effective and scalable anomaly detection and mitigation mechanism on SDN environments , 2014, Comput. Networks.
[16] Graham Cormode,et al. An improved data stream summary: the count-min sketch and its applications , 2004, J. Algorithms.
[17] XingHuanlai,et al. SD-Anti-DDoS , 2016 .
[18] Neeraj Kumar,et al. EVaaS: Electric vehicle-as-a-service for energy trading in SDN-enabled smart transportation system , 2018, Comput. Networks.
[19] Syed Hassan Ahmed,et al. MobQoS: Mobility-Aware and QoS-Driven SDN Framework for Autonomous Vehicles , 2019, IEEE Wireless Communications.
[20] Dijiang Huang,et al. NICE: Network Intrusion Detection and Countermeasure Selection in Virtual Network Systems , 2013, IEEE Transactions on Dependable and Secure Computing.
[21] Keqin Li,et al. Robust dynamic network traffic partitioning against malicious attacks , 2017, J. Netw. Comput. Appl..
[22] Yao Zheng,et al. DDoS Attack Protection in the Era of Cloud Computing and Software-Defined Networking , 2014, 2014 IEEE 22nd International Conference on Network Protocols.
[23] Mohammad S. Obaidat,et al. SeDaTiVe: SDN-Enabled Deep Learning Architecture for Network Traffic Control in Vehicular Cyber-Physical Systems , 2018, IEEE Network.
[24] Joel J. P. C. Rodrigues,et al. An Ensembled Scheme for QoS-Aware Traffic Flow Management in Software Defined Networks , 2018, 2018 IEEE International Conference on Communications (ICC).
[25] Mohammad S. Obaidat,et al. Edge Computing-Based Security Framework for Big Data Analytics in VANETs , 2019, IEEE Network.
[26] François Gagnon,et al. An Energy-driven Network Function Virtualization for Multi-domain Software Defined Networks , 2019, IEEE INFOCOM 2019 - IEEE Conference on Computer Communications Workshops (INFOCOM WKSHPS).
[27] JongWon Kim,et al. Suspicious traffic sampling for intrusion detection in software-defined networks , 2016, Comput. Networks.
[28] Amritpal Singh,et al. AdaptFlow: Adaptive Flow Forwarding Scheme for Software-Defined Industrial Networks , 2020, IEEE Internet of Things Journal.
[29] Jin Wang,et al. An improved method in deep packet inspection based on regular expression , 2018, The Journal of Supercomputing.
[30] Joel J. P. C. Rodrigues,et al. Data Offloading in 5G-Enabled Software-Defined Vehicular Networks: A Stackelberg-Game-Based Approach , 2017, IEEE Communications Magazine.
[31] Wolfgang Kellerer,et al. Flexibility in Softwarized Networks: Classifications and Research Challenges , 2019, IEEE Communications Surveys & Tutorials.
[32] Sasu Tarkoma,et al. Theory and Practice of Bloom Filters for Distributed Systems , 2012, IEEE Communications Surveys & Tutorials.
[33] Joel J. P. C. Rodrigues,et al. Hybrid Deep-Learning-Based Anomaly Detection Scheme for Suspicious Flow Detection in SDN: A Social Multimedia Perspective , 2019, IEEE Transactions on Multimedia.
[34] Mauro Conti,et al. LineSwitch: Tackling Control Plane Saturation Attacks in Software-Defined Networking , 2017, IEEE/ACM Transactions on Networking.
[35] Keqiu Li,et al. Detection of Superpoints Using a Vector Bloom Filter , 2016, IEEE Transactions on Information Forensics and Security.