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A Machine Learning Framework for Studying Domain Generation Algorithm (DGA)-Based Malware., , , и . SecureComm (1), том 254 из Lecture Notes of the Institute for Computer Sciences, Social Informatics and Telecommunications Engineering, стр. 433-448. Springer, (2018)Cost-efficient and attack-resilient approaches for state estimation in power grids., и . SAC, стр. 2192-2197. ACM, (2015)Necessary and sufficient conditions for the existence of a G-type Lyapunov function.. Autom., 31 (5): 787-791 (1995)LatencySmasher: A Software-Defined Networking-Based Framework for End-to-End Latency Optimization., , , и . LCN, стр. 202-209. IEEE, (2019)Active Learning Under Malicious Mislabeling and Poisoning Attacks., , и . GLOBECOM, стр. 1-6. IEEE, (2021)A Preemption-Based Timely Software Defined Networking Framework for Emergency Response Traffic Delivery., , , , и . HPCC/SmartCity/DSS, стр. 452-459. IEEE, (2019)Enhancing ML-Based DoS Attack Detection with Feature Engineering : IEEE CNS 23 Poster., , , , , и . CNS, стр. 1-2. IEEE, (2023)A Priority-Based Queueing Mechanism in Software-Defined Networking Environments., , , и . CCNC, стр. 1-2. IEEE, (2021)Quality of Service (QoS)-Guaranteed Network Resource Allocation via Software Defined Networking (SDN)., и . DASC, стр. 7-13. IEEE Computer Society, (2014)Understanding ProtoGENI in Networking Courses for Research and Education., и . GREE, стр. 119-123. IEEE Computer Society, (2013)