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Timing verification of component-based vehicle software with rubus-ICE: end-user's experience.

, , , , and . SQUADE@ICSE, page 37-38. ACM, (2018)

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Comparative Evaluation of Timing Model Extraction Methodologies at EAST-ADL Design Level., , , , and . HPCC/CSS/ICESS, page 1110-1115. IEEE, (2015)Message from the MASE 2019 Chair., , and . MoDELS (Companion), page 1. IEEE, (2019)Aligning Architecture with Business Goals in the Automotive Domain., , and . ICSA, page 126-137. IEEE, (2021)Enabling Blended Modelling of Timing and Variability in EAST-ADL., , and . SLE, page 169-180. ACM, (2023)Trustworthiness-Related Risks in Autonomous Cyber-Physical Production Systems - A Survey., , and . CSR, page 440-445. IEEE, (2023)Towards Model-Based Performability Evaluation of Production Systems., , and . ETFA, page 1085-1088. IEEE, (2020)Timing verification of component-based vehicle software with rubus-ICE: end-user's experience., , , , and . SQUADE@ICSE, page 37-38. ACM, (2018)MoVES Meets the Real World Automotive Benchmarks., and . ICIT, page 243-248. IEEE, (2020)Technology-Preserving Transition from Single-Core to Multi-core in Modelling Vehicular Systems., , , , and . ECMFA, volume 10376 of Lecture Notes in Computer Science, page 285-299. Springer, (2017)MoVES: A Model-Driven Methodology for Vehicular Embedded Systems., , , , , , and . IEEE Access, (2018)