Systems Engineering and Electronics ›› 2025, Vol. 47 ›› Issue (9): 3022-3030.doi: 10.12305/j.issn.1001-506X.2025.09.23
• Systems Engineering • Previous Articles
Jian CHU1(
), Xing PAN2, Lunhu HU3,*(
), Jinpeng WEI1, Zhenxiang LIU1
Received:2024-07-30
Online:2025-09-25
Published:2025-09-16
Contact:
Lunhu HU
E-mail:buaachujian@163.com;hulunhu@imut.edu.cn
CLC Number:
Jian CHU, Xing PAN, Lunhu HU, Jinpeng WEI, Zhenxiang LIU. Human-factor risk assessment of aviation support based on uncertain random Bow-tie model[J]. Systems Engineering and Electronics, 2025, 47(9): 3022-3030.
Table 2
Descriptions of basic events and their distribution information"
| 事件代码 | 事件描述 | 概率分布类型 | 参数值 |
| B1 | 座舱内人员误触关闭按钮 | 均匀分布 | (0, |
| B2 | 飞管计算机故障 | 指数分布 | |
| B3 | 舱门驱动装置锁定机构失效 | 指数分布 | |
| B4 | 舱门驱动装置故障 | 指数分布 | |
| B5 | 液压电磁阀故障 | 指数分布 | |
| B6 | 应急控制单元异常输出开锁信号 | 指数分布 | |
| B7 | 伺服阀液压锁故障 | 指数分布 | |
| B8 | 应急控制单元异常采集到指令信号 | 指数分布 | |
| B9 | 应急控制单元异常输出驱动信号 | 指数分布 |
| 1 | OBENG F, DOMEH D, KHAN F, et al. An operational risk management approach for small fishing vessel[J]. Reliability Engineering and System Safety, 2024, 247, 110104. |
| 2 | 康锐. 确信可靠性理论与方法[M]. 北京: 国防工业出版社, 2020. |
| KANG R. Belief reliability theory and methodology[M]. Beijing: National Defense Industry Press, 2020. | |
| 3 | LIU B. Uncertainty theory[M]. Berlin: Springer-Verlag, 2007. |
| 4 | KANG R, ZHANG Q Y, ZENG Z G, et al. Measuring reliability under epistemic uncertainty: review on non-probabilistic reliability metrics[J]. Chinese Journal of Aeronautics, 2016, 29 (3): 571- 579. |
| 5 | ZHANG Q Y, LI X Y, ZU T P, et al. Belief reliability: a scientific exploration of reliability engineering[J]. Journal of Systems Engineering and Electronics, 2024, 35 (3): 619- 643. |
| 6 | WANG Y, KANG R, GUO L H, et al. Uncertain process-based data integration and residual lifetime evaluation of PCB in airborne equipment with ADT and field data[J]. Chinese Journal of Aeronautics, 2024, 37 (8): 233- 245. |
| 7 | WANG Y J, KANG R, CHEN Y. Belief reliability modeling for the two-phase degradation system with a change point under small sample conditions[J]. Computers & Industrial Engineering, 2022, 173, 108697. |
| 8 | CHEN W B, LI X Y, WU J P, et al. Uncertain random accelerated degradation modelling and statistical analysis with aleatory and epistemic uncertainties from multiple dimensions[J]. Reliability Engineering and System Safety, 2024, 243, 109906. |
| 9 | HU L H, KANG R, PAN X, et al. Risk assessment of uncertain random system—level-1 and level-2 joint propagation of uncertainty and probability in fault tree analysis[J]. Reliability Engineering and System Safety, 2020, 198, 106874. |
| 10 | HU L H, KANG R, PAN X, et al. Uncertainty expression and propagation in the risk assessment of uncertain random system[J]. IEEE Systems Journal, 2021, 15 (2): 1604- 1615. |
| 11 | HU L H, PAN X, KANG R, et al. Dynamic risk assessment of uncertain random system considering operator’s simple emergency-stop action in short time window[J]. Reliability Engineering and System Safety, 2024, 252, 110479. |
| 12 | HU L H, PAN X, DING S, et al. A quantitative input for evaluating human error of visual neglection: prediction of operator’s detection time spent on perceiving critical visual signal[J]. Reliability Engineering and System Safety, 2022, 225, 108582. |
| 13 | HU L H, PAN X, DING S, et al. Human decision time in uncertain binary choice[J]. Symmetry, 2022, 14, 201. |
| 14 | 姚博清, 陈嘉宇, 谷长超, 等. 基于分层安全控制结构的导弹装备任务安全性动态评价方法[J]. 航空学报, 2024, 45 (6): 228858. |
| YAO B Q, CHEN J Y, GU C C, et al. A dynamic evaluation method for mission safety of missile equipment based on hierarchical safety control structure[J]. Acta Aeronautica et Astronautica Sinica, 2024, 45 (6): 228858. | |
| 15 | PORTHIN M, PODOFILLINI L, DANG V N. Task reliability index for operator performance and failure probability assessment in control room simulators[J]. Reliability Engineering and System Safety, 2024, 251, 110390. |
| 16 | WICKENS C D, MCCARLEY J S. Applied Attention Theory[M]. Boca Raton : CRC Press, 2007. |
| 17 | GRUNDGEIGER T, HOHM A, MICHALEK A, et al. The validity of the SEEV model as a process measure of situation awareness: the example of a simulated endotracheal intubation[J]. Human Factors, 2021, 64, :1181- 1194. |
| 18 | WICKENS C D. Noticing events in the visual workplace: the SEEV and NSEEV models[M]. New York: Cambridge University Press, 2015. |
| 19 | MORDKOFF J T. Effects of average uncertainty and trial-type frequency on choice response time: a hierarchical extension of Hick/Hyman law[J]. Psychonomic Bulletin and Review, 2017, 24, 2012- 2020. |
| 20 | 王华, 罗绍峰. 基于HAZOP与模糊扩展蝴蝶结模型的甲烷化装置系统风险分析[J]. 安全与环境学报, 2023, 30 (2): 27- 34. |
| WANG H, LUO S F. Risk analysis of methanation unit system based on HAZOP and fuzzy extended bow tie (FEBT) model[J]. Safety and Environmental Engineering, 2023, 30 (2): 27- 34. | |
| 21 | GARG V, VINOD G, PRASAD M, et al. Human reliability analysis studies from simulator experiments using Bayesian inference[J]. Reliability Engineering and System Safety, 2023, 229, 108846. |
| 22 | WU B, YIP T L, YAN X, et al. Review of techniques and challenges of human and organizational factors analysis in maritime transportation[J]. Reliability Engineering and System Safety, 2022, 219, 108249. |
| 23 | LIU Y H. Uncertain random programming with applications[J]. Fuzzy Optimization and Decision Making, 2013, 12, 153- 163. |
| 24 | LIU Y H. Uncertain random variables: a mixture of uncertainty and randomness[J]. Soft Computing, 2013, 17, 625- 634. |
| 25 | WEN M L, KANG R. Reliability analysis in uncertain random system[J]. Fuzzy Optimization and Decision Making, 2016, 15, 491- 506. |
| 26 | WICKENS C D, HOLLANDS J G, BANBURY S, et al. Engineering Psychology and Human Performance[M]. New Jersey: Pearson Education, 2012. |
| 27 | LIO W J, LIU B D. Residual and confidence interval for uncertain regression model with imprecise observations[J]. Journal of Intelligent and Fuzzy Systems, 2018, 35 (2): 2573- 2583. |
| 28 | YE T Q, LIU B D. Uncertain hypothesis test for uncertain differential equations[J]. Fuzzy Optimization and Decision Making, 2023, 22, 195- 211. |
| 29 | LI H X, YANG X F, NI Y D. Uncertain yield-density regression model with application to parsnips[J]. International Journal of General Systems, 2023, 52 (7): 777- 801. |
| 30 | ZU T P, KANG R, WEN M L, et al. Belief reliability distribution based on maximum entropy principle[J]. IEEE Access, 2017, 6, 1577- 1582. |
| 31 | RITA S M, TEMPRADO J J, BERTON E. Age-related dedifferentiation of cognitive and motor slowing: insight from the comparison of Hick-Hyman and Fitts’ laws[J]. Frontiers in Aging Neuroscience, 2013, 5, 62. |
| 32 | DJEMAI Z, AISSANI N, BEKRAR A, et al. Risk analysis of petroleum storage tank based on uncertain data incorporated into mapped Bow-tie to Bayesian network[J]. Process Safety and Environmental Protection, 2024, 190, 1202- 1221. |
| 33 | 孙效华, 张义文, 秦觉晓, 等. 人机智能协同研究综述[J]. 包装工程, 2020, 41 (18): 1- 11. |
| SUN X H, ZHANG Y W, QIN J X, et al. Review on human-intelligent system collaboration[J]. Packaging Engineering, 2020, 41 (18): 1- 11. | |
| 34 | LI H M, LIANG M X, NIU K, et al. A human-machine trust evaluation method for high-speed train drivers based on multi-modal physiological information[J]. International Journal of Human-Computer Interaction, 2024, 41 (4): 2659- 2676. |
| 35 | CHAUHAN H, JANG Y, JEONG I. Predicting human trust in human-robot collaborations using machine learning and psychophysiological responses[J]. Advanced Engineering Informatics, 2024, 62, 102720. |
| 36 | LOVE J, GRONAU Q F, PALMER G, et al. In human–machine trust, humans rely on a simple averaging strategy[J]. Cognitive Research: Principles and Implications, 2024, 9, 58. |
| [1] | Ting ZENG, Shuai GAO, Fuqiang SUN, Xiaoming LAI, Yun LI, Xiaopeng LI. Probabilistic risk analysis of satellite antenna assembly considering man-machine-environment coupling effect [J]. Systems Engineering and Electronics, 2023, 45(2): 606-613. |
| [2] | Xudong SHI, Boyuan CHENG, Kun HUANG, Zhangang YANG. Risk assessment of aircraft IDG based on fuzzy TOPSIS-FMEA [J]. Systems Engineering and Electronics, 2022, 44(6): 2060-2064. |
| [3] | Han YANG, Haowei WANG, Qingrong LI, Min CHEN, Bo PENG. Application research of creep life model based on belief reliability theory [J]. Systems Engineering and Electronics, 2022, 44(3): 1044-1051. |
| [4] | Zhicong CHEN, Rui KANG, Tianpei ZU, Qingyuan ZHANG. Belief reliability allocation method based on technology readiness [J]. Systems Engineering and Electronics, 2022, 44(1): 327-337. |
| [5] | Boyuan LI, Rui KANG, Li YU. Belief reliability modelling and analysis method based on the probability measure [J]. Systems Engineering and Electronics, 2021, 43(7): 1995-2004. |
| [6] | Qingyuan ZHANG, Meilin WEN, Rui KANG, Boyuan LI, Li YU. Function, performance and margin analysis method based on belief reliability [J]. Systems Engineering and Electronics, 2021, 43(5): 1413-1419. |
| [7] | Jiahui SHI, Jihui XU, Yujin CHEN, Xiaolin WANG. Research on risk assessment method of aircraft heavy landing based on interaction matrix-multidimensional cloud model [J]. Systems Engineering and Electronics, 2021, 43(10): 3026-3032. |
| [8] | Haowei WANG, Rui KANG. Method of analyzing degradation data based on the uncertainty theory [J]. Systems Engineering and Electronics, 2020, 42(12): 2924-2930. |
| [9] | LI Xiaopeng, HUANG Hongzhong, LI Fuqiu. PRA based reliability analysis of complex space phased-mission system [J]. Systems Engineering and Electronics, 2019, 41(9): 2141-2147. |
| [10] | HU Linmin, LIU Zhaocai, LIU Sijia. Reliability analysis of bi-uncertain cold standby systems [J]. Systems Engineering and Electronics, 2019, 41(11): 2656-2661. |
| [11] | YU Ge, KANG Rui, LIN Yanhui, ZHANG Qingyuan, ZU Tianpei. Reliability modeling and analysis of gear based on belief reliability [J]. Systems Engineering and Electronics, 2019, 41(10): 2385-2391. |
| [12] | MENG Xiangfei, WANG Ying, QI Yao, LV Maolong, LI Chao. New method for I-UMOP problem based on PEV principle [J]. Systems Engineering and Electronics, 2018, 40(2): 338-345. |
| [13] | WANG Wei, YU Jiaxiang, YANG Shaoqing, WANG Lei. #br# Operation resolution scheme risk assessment for informationizedwarship formation at sea [J]. Systems Engineering and Electronics, 2016, 38(3): 569-574. |
| [14] | ZHAO Yuan, JIAO Jian, ZHAO Ting-di. Risk assessment method based on fuzzy logic [J]. Systems Engineering and Electronics, 2015, 37(8): 1825-1831. |
| [15] | LIU Ying1,2, LI Minqiang1, CHEN Fuzan1. Risk quantitative evaluation model of the aircraft maneuver [J]. Systems Engineering and Electronics, 2014, 36(3): 469-475. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||