Citation: | WANG Yantao, ZHAO Xinyi. Advanced warning method for aircraft landing risk under air–ground data real-time transmission conditions[J]. Chinese Journal of Engineering, 2023, 45(10): 1759-1770. doi: 10.13374/j.issn2095-9389.2022.11.29.002 |
[1] |
中國民用航空局. “十四五”民用航空發展規劃 [J/OL]. 中華人民共和國中央人民政府(2021-12-14) [2022-11-29]. https://www.gov.cn/zhengce/zhengceku/2022-01/07/content_5667003.htm
CAAC. The 14th five-year civil aviation development planning [J/OL]. The State Council The People’s Republic Of China (2021-12-14) [2022-11-29]. https://www.gov.cn/zhengce/zhengceku/2022-01/07/content_5667003.htm
|
[2] |
中國民用航空局. 中國民用航空局關于印發智慧民航建設路線圖的通知 [J/OL]. 中華人民共和國中央人民政府 (2022-01-21) [2022-11-29]. https://www.gov.cn/xinwen/2022-01/21/content_5669771.htm
CAAC. Notice of the civil aviation administration of China on issuing road map for smart civil aviation [J/OL]. The State Council The People’s Republic Of China (2022-01-21) [2022-11-29]. https://www.gov.cn/xinwen/2022-01/21/content_5669771.htm
|
[3] |
Reed S. ALAR approach and landing accident reduction [J/OL]. Flight Safety Digest (2019-05-09) [2022-11-29]. https://flightsafety.org/fsd_aug-nov00/
|
[4] |
FAA. Flight risk assessment tools [J/OL]. FAA Safety Briefing (2022-02-04) [2022-11-29]. https://www.faa.gov/newsroom/safety-briefing/flight-risk-assessment-tools
|
[5] |
馮暢, 趙廷弟. 基于案例知識的系統安全風險模型. 航空學報, 2010, 31(4):724
Feng C, Zhao T D. Case knowledge-based system safety risk model. Acta Aeronaut Sin, 2010, 31(4): 724
|
[6] |
王華偉, 左洪福. 航空公司安全評估研究. 系統工程, 2006, 24(2):46 doi: 10.3969/j.issn.1001-4098.2006.02.010
Wang H W, Zuo H F. Evaluation of airline safety. Syst Eng, 2006, 24(2): 46 doi: 10.3969/j.issn.1001-4098.2006.02.010
|
[7] |
王巖韜, 李蕊, 盧飛, 等. 基于多因素分析的航班運行風險評估體系. 天津工業大學學報, 2014, 33(3):84
Wang Y T, Li R, Lu F, et al. Risk assessment system of flight operation based on multiple factor analysis. J Tianjin Polytech Univ, 2014, 33(3): 84
|
[8] |
王巖韜, 陳冠銘, 劉毓, 等. 基于Adaptive Lasso與RF的航班運行風險預測改進研究. 交通運輸系統工程與信息, 2018, 18(4):194
Wang Y T, Chen G M, Liu Y, et al. Flight operations risk improvement prediction based on Adaptive Lasso and RF. J Transp Syst Eng Inf Technol, 2018, 18(4): 194
|
[9] |
Wang L, Zhang J Y, Dong C T, et al. A method of applying flight data to evaluate landing operation performance. Ergonomics, 2019, 62(2): 171 doi: 10.1080/00140139.2018.1502806
|
[10] |
Barry D J. Estimating runway veer-off risk using a Bayesian network with flight data. Transp Res C, 2021, 128: 103180 doi: 10.1016/j.trc.2021.103180
|
[11] |
蔡景, 蔡坤燁, 黃世杰. 基于實時監測參數的民用飛機重著陸預警方法. 交通運輸工程學報, 2022, 22(2):298 doi: 10.19818/j.cnki.1671-1637.2022.02.024
Cai J, Cai K, Huang S J. Early warning method for heavy landing of civil aircraft based on real-time monitoring parameters. J Traffic Transp Eng, 2022, 22(2): 298 doi: 10.19818/j.cnki.1671-1637.2022.02.024
|
[12] |
Wang Y H, Pang Y T, Chen O, et al. Uncertainty quantification and reduction in aircraft trajectory prediction using Bayesian-Entropy information fusion. Reliab Eng Syst Saf, 2021, 212: 107650 doi: 10.1016/j.ress.2021.107650
|
[13] |
Havlikova M, Jirgl M, Bradac Z. Human reliability in man-machine systems. Procedia Eng, 2015, 100: 1207 doi: 10.1016/j.proeng.2015.01.485
|
[14] |
Degrauwe M G R, Nys O, Dijkstra E, et al. IDAC: An interactive design tool for analog CMOS circuits. IEEE J Solid State Circuits, 1987, 22(6): 1106 doi: 10.1109/JSSC.1987.1052861
|
[15] |
Busemeyer J R, Townsend J T. Decision field theory: A dynamic-cognitive approach to decision making in an uncertain environment. Psychol Rev, 1993, 100(3): 432 doi: 10.1037/0033-295X.100.3.432
|
[16] |
高峰, 王明哲. 面向決策過程的動態路徑選擇模型. 交通運輸系統工程與信息, 2009, 9(5):96 doi: 10.3969/j.issn.1009-6744.2009.05.015
Gao F, Wang M Z. Process-oriented dynamic route choice model. J Transp Syst Eng and Inf Technol, 2009, 9(5): 96 doi: 10.3969/j.issn.1009-6744.2009.05.015
|
[17] |
鄭磊, 池宏, 邵雪焱. 基于QAR數據的飛行操作模式及其風險分析. 中國管理科學, 2017, 25(10):109
Zheng L, Chi H, Shao X Y. Pattern recognition and risk analysis for flight operations. Chin J Manag Sci, 2017, 25(10): 109
|
[18] |
Wang L, Ren Y, Wu C X. Effects of flare operation on landing safety: A study based on ANOVA of real flight data. Saf Sci, 2018, 102: 14 doi: 10.1016/j.ssci.2017.09.027
|
[19] |
姜江, 李璇, 邢立寧等. 基于模糊證據推理的系統風險分析與評價. 系統工程理論與實踐, 2013, 33(2):529
Jiang J, Li X, Xing L N, et al. System risk analysis and evaluation approach based on fuzzy evidential reasoning. Syst Eng Theory Pract, 2013, 33(2): 529
|
[20] |
Samson S, Reneke J A, Wiecek M M. A review of different perspectives on uncertainty and risk and an alternative modeling paradigm. Reliab Eng Syst Saf, 2009, 94(2): 558 doi: 10.1016/j.ress.2008.06.004
|
[21] |
Yazdi M, Kabir S. Fuzzy evidence theory and Bayesian networks for process systems risk analysis. Hum Ecol Risk Assess, 2020, 26(1): 57 doi: 10.1080/10807039.2018.1493679
|
[22] |
Yang J B, Liu J, Wang J, et al. Belief rule-base inference methodology using the evidential reasoning Approach-RIMER. IEEE Trans Syst Man Cybern A, 2006, 36(2): 266 doi: 10.1109/TSMCA.2005.851270
|
[23] |
Yang J B, Liu J, Xu D L, et al. Optimization models for training belief-rule-based systems. IEEE Trans Syst Man Cybern A, 2007, 37(4): 569 doi: 10.1109/TSMCA.2007.897606
|
[24] |
郭敏. 基于置信規則庫推理的不確定性建模研究. 系統工程理論與實踐, 2016, 36(8):1975
Guo M. A belief-rule-based inference method for modeling systems under uncertainties. Syst Eng Theory Pract, 2016, 36(8): 1975
|
[25] |
周志杰, 楊建波. 置信規則庫專家系統與復雜系統建模. 北京: 科學出版社, 2011
Zhou Z J, Yang J B, Hu C H. Expert System of Belief Rule Base and Modeling of Complex System. Beijing: Science Press, 2011
|