AUTOSAR: Specification of Update and Configuration Management. AUTOSAR (October 2018), final document
Google Scholar
Bucaioni, A., Pelliccione, P.: Technical architectures for automotive systems. In: 2020 IEEE International Conference on Software Architecture (ICSA). S. 46–57 (2020). 10.1109/ICSA47634.2020.00013
Google Scholar
Bösch, P.M., Becker, F., Becker, H., Axhausen, K.W.: Cost-based analysis of autonomous mobility services. Transp. Policy 64, 76–91 (2018). https://doi.org/10.1016/j.tranpol.2017.09.005
CrossRef
Google Scholar
Erl, T.: Service-Oriented Architecture: Concepts, Technology, and Design. Prentice Hall Professional Technical Reference, Upper Saddle River, NJ (2005)
Google Scholar
Freiwald, A., Hwang, G.: Safe and secure software updates over the air for electronic brake control systems (sep 2016). https://doi.org/10.4271/2016-01-1948
Friedrich, H.E., Ulrich, C., Schmid, S.: New vehicle concepts for future business model. In: 19. Internationales Stuttgarter Symposium. S. 815–829. Springer Fachmedien, Wiesbaden (2019)
Google Scholar
Goodall, W., Dovey, T., Bornstein, J., Bonthron, B.: The rise of mobility as a service. Deloitte Rev 20, 112–129 (2017)
Google Scholar
Gopu, G.L., Kavitha, K.V., Joy, J.: Service oriented architecture based connectivity of automotive ecus. In: 2016 ICCPCT. S. 1–4. IEEE (18032016–19032016). 10.1109/ICCPCT.2016.7530358
Google Scholar
Guissouma, H., Klare, H., Sax, E., Burger, E.: An empirical study on the current and future challenges of automotive software release and configuration management. In: 2018 44th Euromicro Conference SEAA. S. 298–305 (Aug 2018). 10.1109/SEAA.2018.00056
Google Scholar
Hansen: The hansen report. ATZelektronik 15(1-2), 36–39 (Jan 2020). https://doi.org/10.1007/s35658-020-0169-3
International, S.: Taxonomy and Definitions for Terms Related to Driving Automation Systems for On-Road Motor Vehicles (jun 2018). 10.4271/J3016\_201806
Google Scholar
Jung, C.: Power up with 800-v systems: The benefits of upgrading voltage power for battery-electric passenger vehicles 5(1), 53–58 (2017). 10.1109/MELE.2016.2644560
Google Scholar
Kampmann, A., Alrifaee, B., Kohout, M., Wüstenberg, A., Woopen, T., Nolte, M., Eckstein, L., Kowalewski, S.: A dynamic service-oriented software architecture for highly automated vehicles. In: 2019 IEEE Intelligent Transportation Systems Conference (ITSC). S. 2101–2108. IEEE (2019)
Google Scholar
Keilhoff, D., Niedballa, D., Reuss, H.C., Buchholz, M., Gies, F., Dietmayer, K., Lauer, M., Stiller, C., Ackermann, S., Winner, H., Kampmann, A., Alrifaee, B., Kowalewski, S., Klein, F., Struth, M., Woopen, T., Eckstein, L.: Unicaragil – new architectures for disruptive vehicle concepts. In: 19. Internationales Stuttgarter Symposium. S. 830–842 (2019)
Google Scholar
Kraftfahrt-Bundesamt: Bestand an pkw in den jahren 2011 bis 2020 nach ausgewählten kraftstoffarten, https://www.kba.de/DE/Statistik/Fahrzeuge/Bestand/Umwelt/fz_b_umwelt_archiv/2020/2020_b_umwelt_z.html Accessed 12 Jan 2021
Lequesne, B.: Automotive electrification: The nonhybrid story. IEEE Trans. Transp. Electrification 1(1), 40–53 (2015). https://doi.org/10.1109/TTE.2015.2426573
CrossRef
Google Scholar
Litman, T.: Current mobility trends–implications for sustainability. Keep moving, towards sustainability S. 23–44 (2012)
Google Scholar
Mallozzi, P., Pelliccione, P., Knauss, A., Berger, C., Mohammadiha, N.: Autonomous Vehicles: State of the Art, Future Trends, and Challenges, S. 347–367. Springer International Publishing, Cham (2019). 10.1007/978-3-030-12157-0\_16
Google Scholar
for Mobility, E.C.D.G., Transport: White paper on transport: roadmap to a single European transport area: towards a competitive and resource efficient transport system. Publications Office (2011). 10.2832/30955
Google Scholar
Rumez, M., Grimm, D., Kriesten, R., Sax, E.: An overview of automotive service-oriented architectures and implications for security countermeasures. IEEE Access S. 1–1 (2020). 10.1109/ACCESS.2020.3043070
Google Scholar
Sabadka, D., Molnár, V., Fedorko, G.: Shortening of Life Cycle and Complexity Impact on the Automotive Industry. 10.18421/TEM84-27
Google Scholar
Staron, M.: Automotive software architectures. Automot. Softw. Archit S. 33–39 (2017)
Google Scholar
Streichert, T., Traub, M.: Elektrik/Elektronik-Architekturen im Kraftfahrzeug: Modellierung und Bewertung von Echtzeitsystemen. Springer (2012)
Google Scholar
Zheng, B., Liang, H., Zhu, Q., Yu, H., Lin, C.W.: Next generation automotive architecture modeling and exploration for autonomous driving. In: 2016 IEEE Computer Society Annual Symposium on VLSI (ISVLSI). IEEE (Jul 2016). 10.1109/isvlsi.2016.126
Google Scholar