Journal of Guangdong University of Technology ›› 2024, Vol. 41 ›› Issue (04): 34-43.doi: 10.12052/gdutxb.230196
• Control Science and Engineering • Previous Articles Next Articles
Chen Si-yang, Lai Yue, Xue Xian-bin, Liang Hao-tao, Ren Jia-yi
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[1] National Transportation Safety Board. Collision between vehicle controlled by developmental automated driving system and pedestrian[R]. Washington D C: National Transportation Safety Board, 2019. [2] 邵文博, 李骏, 张玉新, 等. 智能汽车预期功能安全保障关键技术[J]. 汽车工程, 2022, 44(9): 1289-1304. SHAO W B, LI J, ZHANG Y X, et al. Key technologies to ensure the safety of the intended functionality for intelligent vehicles [J]. Automotive Engineering, 2022, 44(9): 1289-1304. [3] International Organization for Standardization. ISO/FDIS 21448 road vehicles — safety of the intended functionality: ISO 21448[S]. Geneva, Switzerland: ISO, 2022. [4] ZHAO Q D, ZHENG T, ZHANG Y S, et al. The research on the identification of ACC SOTIF triggering conditions based on scenario analysis[C]//2022 IEEE International Conference on Real-time Computing and Robotics (RCAR) . Guiyang: IEEE, 2022: 263-266. [5] LI J F, ZHANG Y S, ZHAO S, et al. A research on SOTIF of LKA based on STPA[C]//2022 IEEE International Conference on Real-time Computing and Robotics (RCAR) . Guiyang: IEEE, 2022: 396-400. [6] ZHU Z J, PHILIPP R, HUNGAR C, et al. Systematization and identification of triggering conditions: a preliminary step for efficient testing of autonomous vehicles[C]//2022 IEEE Intelligent Vehicles Symposium (IV) . Aachen: IEEE, 2022: 798-805. [7] XING X Y, ZHOU T, CHEN J Y, et al. A hazard analysis approach based on STPA and finite state machine for autonomous vehicles[C]//2021 IEEE Intelligent Vehicles Symposium (IV) . Nagoya: IEEE, 2021: 150-156. [8] GOERGES S L, HOMMES Q D V E. System theoretic approach for determining causal factors of quality loss in complex system design[C]//International Design Engineering Technical Conferences and Computers and Information in Engineering Conference. Buffalo: American Society of Mechanical Engineers, 2014, 46407: V007T07A006. [9] HOMMES Q D V E. Applying system theoretical hazard analysis method to complex automotive cyber physical systems[C]//International Design Engineering Technical Conferences and Computers and Information in Engineering Conference. Chicago: American Society of Mechanical Engineers, 2012, 45066: 705-717. [10] MAHAJAN H S, BRADLEY T, PASRICHA S. Application of systems theoretic process analysis to a lane keeping assist system [J]. Reliability Engineering & System Safety, 2017, 167: 177-183. [11] LEE D, YANNAKAKIS M. Principles and methods of testing finite state machines-a survey [J]. Proceedings of the IEEE, 1996, 84(8): 1090-1123. [12] LEE D, YANNAKAKIS M. Testing finite-state machines: state identification and verification [J]. IEEE Transactions on Computers, 1994, 43(3): 306-320. [13] DASH N P, DASGUPTA R, CHEPADA J, et al. Event driven programming for embedded systems-a finite state machine based approach[C]//The Sixth International Conference on Systems. Mumbai: IARIA Journals, 2011: 23-28. [14] 熊璐, 贾通, 陈君毅, 等. 基于有限状态机的预期功能安全危害识别方法[J]. 同济大学学报(自然科学版) , 2023, 51(4): 616-622. XIONG L, JIA T, CHEN J Y, et al. Hazard tdentification method for safety of the intended functionality based on finite state machine [J]. Journal of Tongji University(Natural Science) , 2023, 51(4): 616-622. [15] SCHOLTES M, WESTHOFEN L, TURNER L R, et al. 6-layer model for a structured description and categorization of urban traffic and environment [J]. IEEE Access, 2021, 9: 59131-59147. [16] WU S, WANG H, YU W, et al. A new SOTIF scenario hierarchy and its critical test case generation based on potential risk assessment[C]//2021 IEEE 1st International Conference on Digital Twins and Parallel Intelligence (DTPI) . Beijing: IEEE, 2021: 399-409. [17] AMERSBACH C. Functional decomposition approach-reducing the safety validation effort for highly automated driving[D]. Darmstadt: Technische Universität Darmstadt, 2020. [18] International Organization for Standardization. Road vehicles-functional Safety: ISO 26262[S]. Geneva, Switzerland: ISO, 2011. |
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