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Articles

Operational risk assessment of railway remote driving system

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Pages 143-164 | Received 29 Apr 2022, Accepted 25 May 2023, Published online: 12 Jul 2023

References

  • Abdulkhaleq, A., Lammering, D., Wagner, S., Röder, J., Balbierer, N., Ramsauer, L., Raste, T., & Boehmert, H. (2017). A systematic approach based on STPA for developing a dependable architecture for fully automated driving vehicles. Procedia Engineering, 179, 41–51. https://doi.org/10.1016/j.proeng.2017.03.094
  • Aziz, A., Ahmed, S., Khan, F., Stack, C., & Lind, A. (2019). Operational risk assessment model for marine vessels. Reliability Engineering & System Safety, 185, 348–361. https://doi.org/10.1016/j.ress.2019.01.002
  • Bagloee, S. A., Tavana, M., Asadi, M., & Oliver, T. (2016). Autonomous vehicles: Challenges, opportunities, and future implications for transportation policies. Journal of Modern Transportation, 24(4), 284–303. https://doi.org/10.1007/s40534-016-0117-3
  • Banks, V. A., Plant, K. L., & Stanton, N. A. (2018). Driver error or designer error: Using the perceptual cycle model to explore the circumstances surrounding the fatal tesla crash on 7th may 2016. Safety Science, 108, 278–285. https://doi.org/10.1016/j.ssci.2017.12.023
  • Boussif, A., Collart-Dutilleul, S., Baranowski, F., Beugin, J., & Schön, W. (2020). Operational safety demonstration of train remote driving: Context, methodology and challenges. In Congrès lambda mu 22.
  • Côte, T., Rigaud, E., & Garbolino, E. (2014). Diversity and complexity the implementation of the principle “globally at least also equivalent” (GAME). In 19e congrès de maîtrise des risques et de sûreté de fonctionnement.
  • CSM-RA (2017). Guide for the application of the commission regulation on the adoption of common safety method on risk evaluation and assessment. European Railway Agency.
  • EN50126-1 (2017). Railway applications–The specification and demonstration of reliability, availability, maintainability and safety (RAMS)–Part 1: Generic RAMS process.
  • EN50126-2 (2017). Railway applications–The specification and demonstration of reliability, availability, maintainability and safety (RAMS)–Part 2: Generic RAMS process.
  • Gadmer, Q., Pacaux-Lemoine, M.-P., & Richard, P. (2021). Human-automation-railway remote control: How to define shared information and functions?. In 16th IFAC Symposium on Control in Transportation Systems (Vol. 54, pp. 173–178). Elsevier. https://doi.org/10.1016/j.ifacol.2021.06.022
  • Hale, A., & Borys, D. (2013). Working to rule or working safely? Part 2: The management of safety rules and procedures. Safety Science, 55, 222–231. https://doi.org/10.1016/j.ssci.2012.05.013
  • Hancock, P. A., Nourbakhsh, I., & Stewart, J. (2019). On the future of transportation in an era of automated and autonomous vehicles. Proceedings of the National Academy of Sciences of the United States of America, 116(16), 7684–7691. https://doi.org/10.1073/pnas.1805770115
  • Koopman, P., Ferrell, U., Fratrik, F., & Wagner, M. (2019). A safety standard approach for fully autonomous vehicles. In Computer safety, reliability, and security (pp. 326–332). Springer International Publishing.
  • Liu, J., Schmid, F., Zheng, W., & Zhu, J. (2019). Understanding railway operational accidents using network theory. Reliability Engineering & System Safety, 189, 218–231. https://doi.org/10.1016/j.ress.2019.04.030
  • Masson, É., Richard, P., Gracia-Guillen, S., & Adel Morral, G. (2019). TC-Rail: Railways remote driving. In 12th World Congress Railway Research (pp. 1–7).
  • Pacaux-Lemoine, M.-P., Gadmer, Q., & Richard, P. (2020). Train remote driving: A human-machine cooperation point of view. In IEEE International Conference on Human–Machine Systems (pp. 1–4).
  • Parouty, R., Zhao, L., & Biechy, E. (2014). Safe approach for organizations in railway operation. In 19e congrès de maîtrise des risques et de sûreté de fonctionnement.
  • Read, G., Naweed, A., & Salmon, P. (2019). Complexity on the rails: A systems-based approach to understanding safety management in rail transport. Reliability Engineering & System Safety, 188, 352–365. https://doi.org/10.1016/j.ress.2019.03.038
  • Richard, P., Boussif, A., & Paglia, C. (2021). Rule-based and managed safety: A challenge for railway autonomous driving systems. In 31st European Safety and Reliability Conference ESREL 2021 (p. 8).
  • Ryan, B., Golightly, D., Pickup, L., Reinartz, S., Atkinson, S., & Dadashi, N. (2021). Human functions in safety-developing a framework of goals, human functions and safety relevant activities for railway socio-technical systems. Safety Science, 140, 105279. https://doi.org/10.1016/j.ssci.2021.105279
  • Singh, P., Dulebenets, M. A., Pasha, J., Gonzalez, E. D. S., Lau, Y.-Y., & Kampmann, R. (2021). Deployment of autonomous trains in rail transportation: Current trends and existing challenges. IEEE Access, 9, 91427–91461. https://doi.org/10.1109/ACCESS.2021.3091550
  • Tonk, A., Boussif, A., Beugin, J., & Collart-Dutilleul, S. (2021). Towards a specified operational design domain for a safe remote driving of trains. In 31st European Safety and Reliability Conference ESREL 2021 (p. 8).
  • Trentesaux, D., Dahyot, R., Ouedraogo, A., Arenas, D., Lefebvre, S., Schön, W., … Chéritel, H. (2018). The autonomous train. In 2018 13th Annual Conference on System of Systems Engineering (SOSE) (pp. 514–520). https://doi.org/10.1109/SYSOSE.2018.8428771
  • UL4600 (2019). Standard for safety for the evaluation of autonomous products. Underwriters Laboratories Standard.
  • Wang, J., Zhang, L., Huang, Y., Zhao, J., & Bella, F. (2020). Safety of autonomous vehicles. Journal of Advanced Transportation, 2020, e8867757. https://doi.org/10.1155/2020/8867757
  • Wang, Y., Miao, Z., Jiaqi, M., & Zhou, X. (2016). Survey on driverless train operation for urban rail transit systems. Urban Rail Transit, 2(3–4), 106–113. https://doi.org/10.1007/s40864-016-0047-8
  • Yang, X., Haugen, S., & Paltrinieri, N. (2018). Clarifying the concept of operational risk assessment in the oil and gas industry. Safety Science, 108, 259–268. https://doi.org/10.1016/j.ssci.2017.12.019

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