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Iterative Analysis to Improve Key Properties of Critical Human-Intensive Processes: An Election Security Example.

, , , , , , , and . ACM Trans. Priv. Secur., 20 (2): 5:1-5:31 (2017)

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Categorizing and modeling variation in families of systems: a position paper., and . ECSA Companion Volume, page 316-323. ACM, (2010)Generation, composition, and verification of families of human-intensive systems., and . SPLC, page 207-216. ACM, (2014)Specifying and verifying requirements for election processes., , , and . DG.O, volume 289 of ACM International Conference Proceeding Series, page 63-72. Digital Government Research Center, (2008)Using Ontologies to Quantify Attack Surfaces., , , , , and . STIDS, volume 1788 of CEUR Workshop Proceedings, page 10-18. CEUR-WS.org, (2016)An Autonomous Resiliency Toolkit for Cyber Defense Platforms., , , , , , , and . ICAART (2), page 240-248. SCITEPRESS, (2020)Using process definitions to drive user interactions with digital government systems., , , , , , , , , and . DG.O, volume 228 of ACM International Conference Proceeding Series, page 310-311. Digital Government Research Center, (2007)An autonomous resiliency toolkit - needs, challenges, and concepts for next generation cyber defense platforms., , , and . MILCOM, page 1-6. IEEE, (2016)Structural Considerations in Defining Executable Process Models., , and . ICSP, volume 5543 of Lecture Notes in Computer Science, page 366-376. Springer, (2009)Experimentation Support for Cyber Security Evaluations., , , and . CISRC, page 5:1-5:7. ACM, (2016)Ergodic Specifications for Flexible Swarm Control: From User Commands to Persistent Adaptation., , , , , , , , , and . Robotics: Science and Systems, (2020)