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Finite Memory: A Vulnerability of Intrusion-Tolerant Systems.

, , , and . NCA, page 37-44. IEEE Computer Society, (2008)

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PoTR: Accurate and Efficient Proof of Timely-Retrievability for Storage Systems., , , and . PRDC, page 111-122. IEEE, (2023)Consistency of surface electromyography assessment at lower limb selected muscles during vertical countermovement., , , , and . EMBC, page 402-405. IEEE, (2017)MACHETE: Multi-path communication for security., , , and . NCA, page 60-67. IEEE Computer Society, (2016)DARSHANA: Detecting route hijacking for communication confidentiality., , and . NCA, page 52-59. IEEE Computer Society, (2016)vtTLS: A vulnerability-tolerant communication protocol., , and . NCA, page 212-215. IEEE Computer Society, (2016)Securing Electronic Health Records in the Cloud., , , , and . P2DS@EuroSys, page 1:1-1:6. ACM, (2018)On the Effects of Finite Memory on Intrusion-Tolerant Systems., , , and . PRDC, page 401-404. IEEE Computer Society, (2007)Resilient Intrusion Tolerance through Proactive and Reactive Recovery., , , , and . PRDC, page 373-380. IEEE Computer Society, (2007)A Systematic Approach for the Application of Restricted Boltzmann Machines in Network Intrusion Detection., and . IWANN (1), volume 10305 of Lecture Notes in Computer Science, page 432-446. Springer, (2017)CRUTIAL: The Blueprint of a Reference Critical Information Infrastructure Architecture., , and . CRITIS, volume 4347 of Lecture Notes in Computer Science, page 1-14. Springer, (2006)