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A pattern-based requirement specification language: Mapping automotive specific timing requirements.

, , , и . Software Engineering (Workshops), том P-184 из LNI, стр. 99-108. GI, (2011)

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4. Workshop zur Zukunft der Entwicklung softwareintensiver eingebetteter Systeme (ENVISON2020)., , , , , и . Software Engineering, том P-227 из LNI, стр. 213-214. GI, (2014)A pattern-based requirement specification language: Mapping automotive specific timing requirements., , , и . Software Engineering (Workshops), том P-184 из LNI, стр. 99-108. GI, (2011)Combining Formal Verification and Testing for Correct Legacy Component Integration in Mechatronic UML, , и . Architecting Dependable Systems V, (2008)3. Workshop zur Zukunft der Entwicklung softwareintensiver eingebetteter Systeme (ENVISON2020)., , , , , и . Software Engineering, том P-213 из LNI, стр. 361-362. GI, (2013)Analysing the Characteristics of Neural Networks for the Recognition of Sugar Beets., , и . IESS, том 669 из IFIP Advances in Information and Communication Technology, стр. 115-126. Springer, (2022)Synthetic Data for Machine Learning on Embedded Systems in Precision Agriculture., , и . IESS, том 669 из IFIP Advances in Information and Communication Technology, стр. 127-138. Springer, (2022)Introducing a group-based remote laboratory for embedded education., , , , , и . INDIN, стр. 1-6. IEEE, (2023)SPES XT Systems Engineering Extensions, , , , и . Springer International Publishing, (2016)Automata-Based Refinement Checking for Real-Time Systems., , , и . Software Engineering, том P-213 из LNI, стр. 99-112. GI, (2013)Bridging the Gap between Systems and Software Engineering by Using the SPES Modeling Framework as a General Systems Engineering Philosophy, , , , и . Conference on Systems Engineering Research (CSER), том 28 из Procedia Computer Science, стр. 187--194. Elsevier, (2014)