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Hierarchical composition of memristive networks for real-time computing.

, , , and . NANOARCH, page 33-38. IEEE Computer Society, (2015)

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A Framework for Semi-Automated Co-Evolution of Security Knowledge and System Models (Summary)., , , , , and . SE/SWM, volume P-292 of LNI, page 179-180. GI, (2019)Towards Maintaining Long-Living Information Systems by Incorporating Security Knowledge., , , , and . Software Engineering & Management, volume P-239 of LNI, page 83-84. GI, (2015)Volatile memristive devices as short-term memory in a neuromorphic learning architecture., and . NANOARCH, page 104-109. IEEE Computer Society/ACM, (2014)Memristor panic - A survey of different device models in crossbar architectures., , , , and . NANOARCH, page 106-111. IEEE Computer Society, (2015)Ontology Evolution in the Context of Model-Based Secure Software Engineering., , and . RCIS, volume 385 of Lecture Notes in Business Information Processing, page 437-454. Springer, (2020)Variation-tolerant Computing with Memristive Reservoirs., and . NANOARCH, page 1-6. IEEE Computer Society, (2013)Model-based Security Engineering with UML: Managed Co-Evolution of Security Knowledge and Software Models, , , , and . Foundations of Security Analysis and Desing VII: FOSAD Tutorial Lectures, volume 8604 of Lecture Notes in Computer Science, page 34--53. (2014)Elektronische Steuerung und Diagnostik für Leitungsschalter, and . Elektrizitatswirtschaft, 95 (23): 1562-1566 (1996)Recovering Security in Model-Based Software Engineering by Context-Driven Co-Evolution.. University of Koblenz and Landau, Germany, (2019)Hierarchical composition of memristive networks for real-time computing., , , and . NANOARCH, page 33-38. IEEE Computer Society, (2015)