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End-to-End Timing Analysis of Black-Box Models in Legacy Vehicular Distributed Embedded Systems.

, , , , , and . RTCSA, page 149-158. IEEE Computer Society, (2015)

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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)Provisioning of Predictable Embedded Software in the Vehicle Industry: The Rubus Approach., , , , and . SER&IP@ICSE, page 3-9. IEEE, (2017)Transferring a model-based development methodology to the automotive industry., , , , and . ICIT, page 762-767. IEEE, (2021)End-to-End Timing Analysis of Black-Box Models in Legacy Vehicular Distributed Embedded Systems., , , , , and . RTCSA, page 149-158. IEEE Computer Society, (2015)Modeling of End-to-End Resource Reservations in Component-Based Vehicular Embedded Systems., , , , , and . SEAA, page 283-292. IEEE Computer Society, (2016)Provisioning of Predictable Embedded Software in the Vehicle Industry: The Rubus Approach., , , , and . SER&IP@ICSE, page 3-9. IEEE, (2017)Modeling and timing analysis of vehicle functions distributed over switched ethernet., , , , , and . IECON, page 8419-8424. IEEE, (2017)Modeling of Legacy Distributed Embedded Systems at Vehicle Abstraction Level., , , , , and . CBSE, page 7-12. IEEE Computer Society, (2016)