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Fully Virtual Rapid ADAS Prototyping via a Joined Multi-domain Co-simulation Ecosystem., , , , , and . VEHITS, page 59-69. SciTePress, (2018)Multi-Scale Code Generation for Simulation-Driven Rapid ADAS Prototyping: the SMELT Approach., , , and . ICVES, page 1-8. IEEE, (2018)Multi-level vehicle dynamics modeling and export for ADAS prototyping in a 3D driving environment., , , and . ITSC, page 1-8. IEEE, (2017)MPSoC Software Debugging on Virtual Platforms via Execution Control with Event Graphs., , , and . ACM Trans. Embed. Comput. Syst., 16 (1): 7:1-7:25 (2016)A Multi-domain Co-simulation Ecosystem for Fully Virtual Rapid ADAS Prototyping., , , , , and . SMARTGREENS/VEHITS (Selected Papers), volume 992 of Communications in Computer and Information Science, page 181-201. Springer, (2018)Dynamic many-process applications on many-tile embedded systems and HPC clusters: The EURETILE programming environment and execution platforms., , , , , , , , , and 11 other author(s). J. Syst. Archit., (2016)Deterministic event-based control of Virtual Platforms for MPSoC software debugging., , , and . SAMOS, page 348-353. IEEE, (2015)Multi-Scale Multi-Domain Co-Simulation for Rapid ADAS Prototyping., , and . APCCAS, page 532-535. IEEE, (2018)OHEX: OS-aware hybridization techniques for accelerating MPSoC full-system simulation., , , , , and . DATE, page 281-284. IEEE, (2018)SWAT: Assertion-based debugging of concurrency issues at system level., , , , and . ASP-DAC, page 600-605. IEEE, (2015)