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Considering Reliability of Deep Learning Function to Boost Data Suitability and Anomaly Detection.

, , , and . ISSRE Workshops, page 249-254. IEEE, (2020)

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Herausforderungen und Erfahrungen eines OEM bei der Gestaltung Sicherheitsgerechter Prozesse., and . GI Jahrestagung (2), volume P-110 of LNI, page 536-540. GI, (2007)Considering Reliability of Deep Learning Function to Boost Data Suitability and Anomaly Detection., , , and . ISSRE Workshops, page 249-254. IEEE, (2020)WAP: Digital Dependability Identities., , , , , and . CoRR, (2021)Fuzzy Interpretation of Operational Design Domains in Autonomous Driving., , , , and . IV, page 1261-1267. IEEE, (2022)WG7: Safety-Engineering für eingebettete Softwaresysteme., , and . Software Engineering, volume P-105 of LNI, page 287-292. GI, (2007)Dependable and Efficient Cloud-Based Safety-Critical Applications by Example of Automated Valet Parking., , , , , , and . INTSYS, volume 364 of Lecture Notes of the Institute for Computer Sciences, Social Informatics and Telecommunications Engineering, page 90-109. Springer, (2020)Assuring Functional Safety in Open Systems of Systems. (2016)base-search.net (ftunivkaisers:oai:kluedo.ub.rptu.de:4422).Concept-Guided LLM Agents for Human-AI Safety Codesign., , and . AAAI Spring Symposia, page 100-104. AAAI Press, (2024)Adaptively Managing Reliability of Machine Learning Perception under Changing Operating Conditions., , and . SEAMS, page 79-85. IEEE, (2023)A Safety Roadmap to Cyber-Physical Systems., , and . Perspectives on the Future of Software Engineering, page 81-94. Springer, (2013)