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[해외논문] Analysis of E2E Delay and Wiring Harness in In-Vehicle Network with Zonal Architecture

Sensors, v.24 no.10, 2024년, pp.3248 -   

Park, Chulsun (Department of Electronic and Computer Engineering, Hanyang University, Seoul 04763, Republic of Korea) ,  Cui, Chengyu (Department of Electronic and Computer Engineering, Hanyang University, Seoul 04763, Republic of Korea) ,  Park, Sungkwon (Department of Electronic and Computer Engineering, Hanyang University, Seoul 04763, Republic of Korea)

Abstract AI-Helper 아이콘AI-Helper

With recent advances in vehicle technologies, in-vehicle networks (IVNs) and wiring harnesses are becoming increasingly complex. To solve these challenges, the automotive industry has adopted a new zonal-based IVN architecture (ZIA) that connects electronic control units (ECUs) according to their ph...

참고문헌 (28)

  1. Leigh Designing autonomous vehicles for a future of unknowns ATZelectronics Worldw. 2021 10.1007/s38314-020-0578-3 16 44 

  2. (2024, April 02). Delphi: Industry Must Go Digital or Die. Available online: https://www.wardsauto.com/technology/delphi-industry-must-go-digital-or-die. 

  3. Van Rensburg, P.J., and Ferreira, H.C. (2003, January 26-28). Automotive power-line communications: Favourable topology for future automotive electronic trends. Proceedings of the 7th International Symposium on Power-Line Communications and Its Applications (ISPLC’03), Kyoto, Japan. 

  4. 10.3390/s22176679 Rathore, R.S., Hewage, C., Kaiwartya, O., and Lloret, J. (2022). In-vehicle communication cyber security: Challenges and solutions. Sensors, 22. 

  5. 10.3390/electronics11040518 Askaripoor, H., Hashemi Farzaneh, M., and Knoll, A. (2022). E/E architecture synthesis: Challenges and technologies. Electronics, 11. 

  6. 10.1109/WISES.2017.7986925 Brunner, S., Roder, J., Kucera, M., and Waas, T. (2017, January 12-13). Automotive E/E-architecture enhancements by usage of ethernet TSN. Proceedings of the 2017 13th Workshop on Intelligent Solutions in Embedded Systems (WISES), Hamburg, Germany. 

  7. Wang Review of in-vehicle optical fiber communication technology Automot. Innov. 2022 10.1007/s42154-022-00184-2 5 272 

  8. 10.1109/ITC-CSCC58803.2023.10212902 Oh, S.B., Do, Y.S., and Jeon, J.W. (2023, January 25-28). The Time Synchronization of CAN-FD and Ethernet for Zonal E/E Architecture. Proceedings of the 2023 International Technical Conference on Circuits/Systems, Computers, and Communications (ITC-CSCC), Jeju, Republic of Korea. 

  9. 10.3390/s23020669 Park, C., and Park, S. (2023). Performance evaluation of zone-based in-vehicle network architecture for autonomous vehicles. Sensors, 23. 

  10. 10.1109/VNC51378.2020.9318389 Haeberle, M., Heimgaertner, F., Loehr, H., Nayak, N., Grewe, D., Schildt, S., and Menth, M. (2020, January 16-18). Softwarization of automotive E/E architectures: A software-defined networking approach. Proceedings of the 2020 IEEE Vehicular Networking Conference (VNC), Virtual. 

  11. Frigerio Automotive architecture topologies: Analysis for safety-critical autonomous vehicle applications IEEE Access 2021 10.1109/ACCESS.2021.3074813 9 62837 

  12. 10.3390/app13031278 Lo Bello, L., Patti, G., and Leonardi, L. (2023). A perspective on ethernet in automotive communications-Current status and future trends. Applied Sciences, 13. 

  13. Pannell, D., Chen, L., Dorr, J., Lo, W., Potts, M., Zinner, H., and Zu, A. (2024, April 02). Use Cases-IEEE P802.1DG V0. 4. Available online: https://www.ieee802.org/1/files/public/docs2019/dg-pannell-automotive-use-cases-0919-v04.pdf. 

  14. Bandur Making the case for centralized automotive E/E architectures IEEE Trans. Veh. Technol. 2021 10.1109/TVT.2021.3054934 70 1230 

  15. (2020). Zonal Architecture: The Foundation for Next Generation Vehicles, GUARDKNOX. 

  16. (2024, April 02). IEEE802. Available online: https://www.ieee802.org/. 

  17. 10.4018/978-1-60566-338-8 Guo, H. (2009). Automotive Informatics and Communicative Systems: Principles in Vehicular Networks and Data Exchange: Principles in Vehicular Networks and Data Exchange, IGI Global. 

  18. Avatefipour, O. (2017). Physical-Fingerprinting of Electronic Control Unit (ECU) Based on Machine Learning Algorithm for In-Vehicle Network Communication Protocol “CAN-BUS”. [Master’s Thesis, University of Michigan]. 

  19. Ignatious An overview of sensors in Autonomous Vehicles Procedia Comput. Sci. 2022 10.1016/j.procs.2021.12.315 198 736 

  20. (2024, April 02). OMNeT++. Available online: https://omnetpp.org/. 

  21. (2024, April 02). Core4INET-Real-Time Ethernet Protocols for INET. Available online: https://omnetpp.org/download-items/Core4INET.html. 

  22. 10.3390/s19051111 Lee, J., and Park, S. (2019). Time-sensitive network (TSN) experiment in sensor-based integrated environment for autonomous driving. Sensors, 19. 

  23. Zhou Simulating TSN traffic scheduling and shaping for future automotive Ethernet J. Commun. Netw. 2021 10.23919/JCN.2021.000001 23 53 

  24. Gopal, A. (2024, April 02). Traffic categories & overall performance goals. In Proceedings of IEEE P802.1DG Interim Meeting. February 2022. Available online: https://www.ieee802.org/1/files/public/docs2022/dg-gopal-TrafficClassification-0222-v01.pdf. 

  25. 10.7873/DATE.2015.0045 Thangamuthu, S., Concer, N., Cuijpers, P.J., and Lukkien, J.J. (2015, January 9-13). Analysis of ethernet-switch traffic shapers for in-vehicle networking applications. Proceedings of the 2015 Design, Automation & Test in Europe Conference & Exhibition (DATE), Grenoble, France. 

  26. Thangamuthu, S. (2014). Analysis of Automotive Traffic Shapers in Ethernet In-Vehicular Networks. [Master’s Thesis, Eindhoven University of Technology]. 

  27. Kurose, J.F., Ross, K.W., and Anand, B. (2008). Computer Networking: A Top-Down Approach, Pearson. 

  28. Stillig Novel infrastructure platform for a flexible and convertible manufacturing Adv. Sci. Technol. Eng. Syst. J. 2021 10.25046/aj060141 6 356 

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