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Application of Model-Based Safety Assessment to the Validation of Avionic Electrical Power Systems.

, , , and . IMBSA, volume 10437 of Lecture Notes in Computer Science, page 243-254. Springer, (2017)

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Model-driven design and validation of embedded software., , , , , , and . AST, page 98-104. ACM, (2011)Correct-by-construction code generation from hybrid automata specification., , , and . IWCMC, page 1660-1665. IEEE, (2011)Vacuity analysis for property qualification by mutation of checkers., , and . DATE, page 478-483. IEEE Computer Society, (2010)On the integration of model-driven design and dynamic assertion-based verification for embedded software., , , , , , and . J. Syst. Softw., 86 (8): 2013-2033 (2013)Vacuity Analysis by Fault Simulation., , and . MEMOCODE, page 27-36. IEEE Computer Society, (2008)The role of mutation analysis for property qualification., , and . MEMOCODE, page 28-35. IEEE, (2009)Application of Model-Based Safety Assessment to the Validation of Avionic Electrical Power Systems., , , and . IMBSA, volume 10437 of Lecture Notes in Computer Science, page 243-254. Springer, (2017)On the use of assertions for embedded-software dynamic verification., , , and . DDECS, page 330-335. IEEE, (2012)Open Problems in Verification and Refinement of Autonomous Robotic Systems., , , , , and . DSD, page 469-476. IEEE Computer Society, (2012)Synthesis of Implementable Control Strategies for Lazy Linear Hybrid Automata., , and . FedCSIS, page 1369-1376. (2013)