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Automated resolution of connector architectures using constraint solving (ARCAS method).

, , , and . Software and Systems Modeling, 13 (2): 843-872 (2014)

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JavaCompExt: Extracting Architectural Elements from Java Source Code., , , , , , , and . WCRE, page 317-318. IEEE Computer Society, (2009)An Architecture Framework for Experimentations with Self-Adaptive Cyber-physical Systems., , , , and . SEAMS@ICSE, page 93-96. IEEE Computer Society, (2015)Towards an Automated Requirements-driven Development of Smart Cyber-Physical Systems., and . FESCA@ETAPS, volume 205 of EPTCS, page 59-68. (2016)A Virtual Playground for Testing Smart Cyber-Physical Systems., , and . ICSA Companion, page 85-88. IEEE Computer Society, (2018)SOFA 2 Component Framework and Its Ecosystem., , and . Electron. Notes Theor. Comput. Sci., (2013)Strengthening Adaptation in Cyber-Physical Systems via Meta-Adaptation Strategies., , , , , and . ACM Trans. Cyber Phys. Syst., 1 (3): 13:1-13:25 (2017)Comparison of component frameworks for real-time embedded systems., , , , and . Knowl. Inf. Syst., 40 (1): 127-170 (2014)Self-adaptation in software-intensive cyber-physical systems: From system goals to architecture configurations., , , , , , and . Journal of Systems and Software, (2016)Introducing Support for Embedded and Real-Time Devices into Existing Hierarchical Component System: Lessons Learned., , , , , and . SERA, page 3-11. IEEE Computer Society, (2011)SOFA 2.0: Balancing Advanced Features in a Hierarchical Component Model., , and . SERA, page 40-48. IEEE Computer Society, (2006)