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Anti-evasion Technique for the Botnets Detection Based on the Passive DNS Monitoring and Active DNS Probing.

, , , , and . CN, volume 608 of Communications in Computer and Information Science, page 83-95. Springer, (2016)

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Anti-evasion Technique for the Botnets Detection Based on the Passive DNS Monitoring and Active DNS Probing., , , , and . CN, volume 608 of Communications in Computer and Information Science, page 83-95. Springer, (2016)Self-adaptive System for the Corporate Area Network Resilience in the Presence of Botnet Cyberattacks., , , and . CN, volume 860 of Communications in Computer and Information Science, page 385-401. Springer, (2018)Multi-agent Based Approach for Botnet Detection in a Corporate Area Network Using Fuzzy Logic., , , and . CN, volume 370 of Communications in Computer and Information Science, page 146-156. Springer, (2013)A Technique for the Botnet Detection Based on DNS-Traffic Analysis., , , , and . CN, volume 522 of Communications in Computer and Information Science, page 127-138. Springer, (2015)BotGRABBER: SVM-Based Self-Adaptive System for the Network Resilience Against the Botnets' Cyberattacks., , , and . CN, volume 1039 of Communications in Computer and Information Science, page 127-143. Springer, (2019)DNS-based anti-evasion technique for botnets detection., , , , and . IDAACS, page 453-458. IEEE, (2015)Information Technology for Botnets Detection Based on Their Behaviour in the Corporate Area Network., , , , and . CN, volume 718 of Communications in Computer and Information Science, page 166-181. Springer, (2017)A Technique for Detection of Bots Which Are Using Polymorphic Code., , , , and . CN, volume 431 of Communications in Computer and Information Science, page 265-276. Springer, (2014)Botnet detection technique for corporate area network., , , and . IDAACS, page 363-368. IEEE, (2013)