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Automated formalization of structured natural language requirements., , , and . Inf. Softw. Technol., (2021)Statistical Prediction of Failures in Aircraft Collision Avoidance Systems., , and . Models, Mindsets, Meta, volume 11200 of Lecture Notes in Computer Science, page 249-267. Springer, (2018)From Partial to Global Assume-Guarantee Contracts: Compositional Realizability Analysis in FRET., , , , , and . FM, volume 13047 of Lecture Notes in Computer Science, page 503-523. Springer, (2021)Automated Translation of Natural Language Requirements to Runtime Monitors., , , , and . TACAS (1), volume 13243 of Lecture Notes in Computer Science, page 387-395. Springer, (2022)Automated Assume-Guarantee Reasoning by Abstraction Refinement, , and . CAV '08: Proceedings of the 20th international conference on Computer Aided Verification, page 135--148. Berlin, Heidelberg, Springer-Verlag, (2008)Capture, Analyze, Diagnose: Realizability Checking Of Requirements in FRET., , , , and . CAV (2), volume 13372 of Lecture Notes in Computer Science, page 490-504. Springer, (2022)Bridging the Gap Between Requirements and Simulink Model Analysis., , , , , and . REFSQ Workshops, volume 2584 of CEUR Workshop Proceedings, CEUR-WS.org, (2020)The Ten Lockheed Martin Cyber-Physical Challenges: Formalized, Analyzed, and Explained., , , , , , and . RE, page 300-310. IEEE, (2020)From Requirements to Autonomous Flight: An Overview of the Monitoring ICAROUS Project., , , , , , , , , and . FMAS, volume 329 of EPTCS, page 23-30. (2020)Assume-guarantee testing., , and . SAVCBS@ESEC/FSE, page 1. ACM, (2005)