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Systematic Derivation of Functional Safety Requirements for Automotive Systems.

, , , , and . SAFECOMP, volume 8666 of Lecture Notes in Computer Science, page 65-80. Springer, (2014)

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Architectural patterns for problem frames., , and . IEE Proceedings - Software, 152 (4): 198-208 (2005)Testing Against Requirements Using UML Environment Models., , , and . Softwaretechnik-Trends, (2008)Specifying embedded systems with statecharts and Z: an agenda for cyclic software components., , and . Sci. Comput. Program., 40 (1): 31-57 (2001)A Model-Based Development Process for Embedded System., and . MBEES, volume 2005-1 of Informatik-Bericht, page 191-202. TU Braunschweig, Institut für Software Systems Engineering, (2005)A UML Profile and Tool Support for Evolutionary Requirements Engineering., and . CSMR, page 161-170. IEEE Computer Society, (2011)A method for guiding software evolution., and . IASTED Conf. on Software Engineering, page 462-468. IASTED/ACTA Press, (2004)From Problems to Laws in Requirements Engineering - Using Model-Transformation., and . ICSOFT, page 447-458. SciTePress, (2013)Supporting the Systematic Goal Refinement in KAOS using the Six-Variable Model., , and . ICSOFT, page 136-145. SciTePress, (2018)A Dynamic Logic for Program Verification., , and . Logic at Botik, volume 363 of Lecture Notes in Computer Science, page 134-145. Springer, (1989)A structured and systematic model-based development method for automotive systems, considering the OEM/supplier interface., , , , and . Rel. Eng. & Sys. Safety, (2017)