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Dynamic System-Wide Reconfiguration of Grid Deployments in Response to Intrusion Detections.

, , , , , , , , and . HPCC, volume 4782 of Lecture Notes in Computer Science, page 260-272. Springer, (2007)

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N-variant systems: a secretless framework for security through diversity, , , , , , , , and . Proceedings of the 15th conference on USENIX Security Symposium - Volume 15, Berkeley, CA, USA, USENIX Association, (2006)Effectiveness of Moving Target Defenses., , and . Moving Target Defense, volume 54 of Advances in Information Security, Springer, (2011)Online control adaptation for safe and secure autonomous vehicle operations., , , , , , and . AHS, page 101-108. IEEE, (2017)Using Reflection for Incorporating Fault-Tolerance Techniques into Distributed Applications., and . Parallel Process. Lett., 9 (2): 291-301 (1999)Zipr: A High-Impact, Robust, Open-source, Multi-platform, Static Binary Rewriter., , and . CoRR, (2023)START: A Framework for Trusted and Resilient Autonomous Vehicles (Practical Experience Report)., , , , , , , , , and 3 other author(s). ISSRE, page 73-84. IEEE, (2022)Secure and practical defense against code-injection attacks using software dynamic translation., , , , , , , , and . VEE, page 2-12. ACM, (2006)Security through redundant data diversity., , , , and . DSN, page 187-196. IEEE Computer Society, (2008)Moving Target Defenses in the Helix Self-Regenerative Architecture., , , , , , , and . Moving Target Defense, volume 100 of Advances in Information Security, Springer, (2013)Automatically Hardening Web Applications Using Precise Tainting., , , , and . SEC, volume 181 of IFIP, page 295-308. Springer, (2005)