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ANCHOR: Logically Centralized Security for Software-Defined Networks.

, , , and . ACM Trans. Priv. Secur., 22 (2): 8:1-8:36 (2019)

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The KISS Principle in Software-Defined Networking: A Framework for Secure Communications., , , , and . IEEE Secur. Priv., 16 (5): 60-70 (2018)An Integrated and Automated Network Management and Operation System., and . LANOMS, page 89-100. UFRGS, (2005)Towards secure and dependable software-defined networks, , and . Proceedings of the second ACM SIGCOMM workshop on Hot topics in software defined networking, page 55--60. New York, NY, USA, ACM, (2013)Regenerating Networked Systems' Monitoring Traces Using Neural Networks., , , , and . J. Netw. Syst. Manag., 32 (1): 16 (March 2024)Experiences with Fault-Injection in a Byzantine Fault-Tolerant Protocol., , , , , , and . Middleware, volume 8275 of Lecture Notes in Computer Science, page 41-61. Springer, (2013)Towards secure and dependable software-defined networks., , and . HotSDN, page 55-60. ACM, (2013)ISM-AC: an immune security model based on alert correlation and software-defined networking., , , , and . Int. J. Inf. Sec., 21 (2): 191-205 (2022)On the use of emerging decentralised technologies for supporting software factories coopetition., , , and . Int. J. Comput. Appl. Technol., 69 (2): 123-138 (2022)Towards Scalable Cross-Chain Messaging., , and . Blockchain, page 348-355. IEEE, (2023)Fix Me If You Can: Using Neural Networks to Regenerate Networked Systems' Monitoring Traces., , , , and . NOMS, page 1-9. IEEE, (2022)