1. Huang WC*, Zhang Y, Yin DZ, Zuo BR, Xu MH, Zhang R, 2021. Using improved Group 2 and Linguistic Z-numbers combined approach to analyze the causes of railway passenger train derailment accident. Information Sciences, 16721. (A++, SCI)
2. Huang WC*, Liu HY, Zhang Y, Mi RW, Tong CG, Xiao W, Shuai B, 2021. Railway dangerous goods transportation system risk identification: Comparisons among SVM, PSO-SVM, GA-SVM and GS-SVM. Applied Soft Computing, 107541. (A++, SCI)
3. Huang WC*, Zhang Y, Yin DZ, Zuo BR, Liu ZR, 2021. Urban bus accident analysis: based on a Tropos Goal Risk-Accident Framework considering Learning From Incidents process. Reliability Engineering & System Safety, 216, 107918. (A++, SCI)
4. Huang WC, Li LQ*, Liu HY, Zhang R, Xu MH, 2021. Defense resource allocation in road dangerous goods transportation network: A Self-Contained Girvan-Newman Algorithm and Mean Variance Model combined approach. Reliability Engineering & System Safety, 215, 107899. (A++, SCI)
5. Huang WC*, Zhou BW, Yu YC, Sun H, Xu PP, 2021. Using the disaster spreading theory to analyze the cascading failure of urban rail transit network. Reliability Engineering & System Safety, 107825. (A++, SCI)
6. Huang WC*, Kou XY*, Zhang Y*, Mi RW, Yin DZ, Xiao, W., Liu, ZR*, 2021. Operational failure analysis of high-speed electric multiple units: A Bayesian network-K2 algorithm-expectation maximization approach[J]. Reliability Engineering and System Safety,2021,205, 107250. (A++, SCI)
7. Huang WC*, Zhou BW, Yu YC, Yin DZ, 2021. Vulnerability analysis of road network for dangerous goods transportation considering intentional attack: Based on Cellular Automata[J]. Reliability Engineering and System Safety,2021,214, 107779. (A++, SCI)
8. Huang WC*, Zhang Y*, Kou XY*, Yin DZ, Mi RW, Li LQ*. Railway dangerous goods transportation system risk analysis: An Interpretive Structural Modeling and Bayesian Network combining approach [J]. Reliability Engineering and System Safety,2020,204, 107220. (A++, SCI)
9. Huang WC*, Zhang Y, Yu YC*, Xu YF, Xu MH, Zhang R, Gatesi JDD, Yin DZ, Li ZR. Historical data-driven risk assessment of railway dangerous goods transportation system: Comparisons between Entropy Weight Method and Scatter Degree Method [J]. Reliability Engineering and System Safety, 205, 2021, 107236. (A++, SCI)
10. Huang WC*, Li YY, Kou XY, Wang WZ, Xu YF. Using a FMEA-TIFIAD approach to identify the risk of railway dangerous goods transportation system [J]. Group Decision and Negotiation, In Press. (A++, SCI)
11. Huang WC*, Zhang R, Xu MH, Yu YC, Xu YF, Gatesi JDD. Risk state changes analysis of railway dangerous goods transportation system: Based on the cusp catastrophe model [J]. Reliability Engineering & System Safety. 2020, In press. (A++, SCI)
12. Huang WC*, Shuai B, Zhang R, Xu MH, Xu YF, Yu YC, Antwi E, 2020. A new system risk definition and system risk analysis approach based on improved risk field[J]. IEEE Transactions on Reliability. In press. (A++, SCI)
13. Huang WC*, Zhang Y. Railway dangerous goods transportation system risk assessment: An approach combining FMEA with pessimistic-optimistic fuzzy information axiom considering acceptable risk coefficient[J]. IEEE Transactions on Reliability. 2020, In press. (A++, SCI)
14. Huang WC*, Liu YK, Zhang Y, Zhang R, Xu MH, Gatesi JDD, Eric A. Fault Tree and Fuzzy D-S Evidential Reasoning combined approach: an application in railway dangerous goods transportation system accident analysis[J]. Information Sciences. 2020, 520, 117-129. (A++, SCI)
15. Huang WC*, Zhang Y, Shuai B, Xu MH, Xiao W, Zhang R, Xu YF, 2019. China railway industry reform evolution approach: based on the Vertical Separation Model[J]. Transportation Research Part A: Policy and Practice, 130,546-556. (A++, SCI)
16. Huang WC*, Shuai B, Sun Y, Wang Y, Antwi E, 2018. Using entropy-topsis method to evaluate urban rail transit system operation performance: the China case[J]. Transportation Research Part A: Policy and Practice, 111, 292-303. (A++, SCI)
17. Huang WC*, Zhang Y, Zuo BR, Yu YC, Gatesi JDD, Xu YF. Using an expanded Safety Failure Event Network to analyze railway dangerous goods transportation system risk-accident[J]. Journal of Loss Prevention in the Process Industries, 2020, 65, 104122. (A+, SCI)
18. Huang WC*, Shuai B, Zuo BR, Xu YF, Antwi E, 2019. A systematic railway dangerous goods transportation system risk analysis approach: The 24 model[J]. Journal of Loss Prevention in the Process Industries, 61, 94-103. (A+, SCI)
19. Huang WC*, Shuai B, Xu YF, Zhang SH, Mao B, 2018. Railway express freight train service sites planning: a two stage entropy-topsis approach[J]. Transportmetrica A: Transport Science, 1-15. (A+, SCI)
20. Huang WC*, Shuai B, 2018. Approach and application on high-speed train stop plan for better passenger transfer efficiency: the China case[J]. International Journal of Rail Transportation, 7, 55-78. (A+, SCI)
21. Huang WC*, Shuai B, Xu YF, An approach to solve motorail transportation loading layout optimization problem The China case[J]. Transport. Accepted. (A+, SCI)
22. Huang WC*, Shuai B, Shen Y, Prospects analysis of Pakista-China oil and gas transportation corridor Based on growth curves analysis result[J]. Transport. Accepted. (A+, SCI)
23. Huang WC*, Zhang Y, Xu YF, Zhang R, Xu MH, Wang Y, Shuai B, 2020. Urban rail transit passenger service quality evaluation based on the KANO-Entropy-TOPSIS model: The China case. Transport. Accepted. (A+, SCI)
24. Huang WC*, Shuai B, 2017. Using Improved Entropy-Cloud Model to Select High-Speed Railway Express Freight Train Service Sites[J]. Mathematical Problems in Engineering, 2017, 1-13. (A+, SCI)
25. Huang WC*, Shuai B, Wang L, Antwi E, 2017. Railway Container Station Reselection Approach and Application: Based on Entropy-Cloud Model[J]. Mathematical Problems in Engineering, 2017, 1-14. (A+, SCI)
26. 黄文成, 帅斌*, 孙妍. 基于N-K模型的铁路危险品运输系统耦合风险形成机理研究[J]. 铁道学报, 2019, 41(5): 1-9. (A+, EI)
27. 于耀程,黄文成*,帅斌,张锐,许旻昊,张玥,徐逸飞. 基于杜芬方程的地铁ATS系统周期性风险反馈控制机理研究[J]. 管理工程学报, 待出版. (A+, EI)
28. 帅斌*,黄文成,胡鹏,王帅,何磊. 铁路建设项目经济效益形成机理及计量方法改进研究[J]. 铁道学报, 2016, 38(11), 16-23. (A+, EI)
29. 黄文成, 帅斌*, 张光亚. 基于改进的WBS-RBS识别铁路危险品运输风险[J].中国安全科学学报. 2018, 28(8): 93-99. (A+, CSCD)
30. 黄文成, 帅斌*, 孙妍, 李美霖, 庞璐. 熵-TOPSIS-耦合协调模型评价铁路危险品运输系统的风险[J]. 中国安全科学学报, 2018, 28(2): 134-138. (A+, CSCD)
31. 黄文成, 帅斌*, 庞璐, 杨卓倩. 基于耦合协调度的道路危险品运输系统风险评价[J]. 中国安全科学学报, 2016, 26(6): 117-122. (A+, CSCD)
32. 黄文成,帅斌*,左静,王磊,毛洁. 基于修正熵权的未成网城市轨道交通绩效评价[J]. 交通运输系统工程与信息, 2016, 16(6), 115-121. (A, EI)
33. 黄文成,帅斌*,张勤宇,李婷,何晓峰. 基于收入最大的市郊铁路组合票价制定方法[J]. 交通运输系统工程与信息, 2017, 17(5), 9-15. (A, EI)
34. 帅斌*,黄文成,李美霖,王帅,何凯妮. 世行、亚开行对中国铁路效益评估的借鉴[J]. 交通运输系统工程与信息, 2017.17(3), 222-228+242. (A, EI)
35. 帅斌*,黄文成,张士行,庞登瑀,何晓峰. 我国城际铁路建设条件指标体系建立及求解[J]. 交通运输系统工程与信息, 2018.18(1), 30-36. (A, EI)
36. Huang WC*, Shuai B, Antwi E., 2019. A two-stage optimization approach for subscription bus services network design-the China case[J]. Public Transport-Planning and Operations. 11:589-616. (A, EI)
37. Huang WC*, Shuai B, 2018. A methodology for calculating the passenger comfort benefits of railway travel[J]. Journal of Modern Transportation, 26(1), 107-118. (A, ESCI)
38. 黄文成, 帅斌*, 张玥, 于耀程, 徐逸飞. 基于叠加-触发原理的铁路危险品运输系统风险场形成机理研究[J]. 中国安全生产科学技术. 2019, 15(6): 144-150. (A, CSCD)
39. 黄文成, 帅斌*, 徐逸飞. 铁路危险品运输系统单因素耦合风险折叠突变及控制机理研究[J]. 中国安全生产科学技术. 2019, 15(4): 148-153. (A, CSCD)
40. 黄文成,帅斌*.中小城市公交运营现状调研方法及结果分析[J].长安大学学报(社会科学版),2017,19(6):26-33.
41. 黄文成,帅斌*,刘聪.基于AnyLogic的岛式站台客流特性分析及换乘楼梯改进[J].城市轨道交通研究,2016,19(10):97-101.
42. 黄文成,帅斌*,李林卿.我国开行自驾游汽车运输专列的SWOT分析[J].铁道经济研究,2017(6):38-42.
43. 黄文成,帅斌,庞璐.基于LightSwitch的铁路危险货物运输管理信息系统设计[J].铁道经济研究,2017(5):43-47.
44. 黄文成,帅斌*.基于大数据的铁路综合枢纽高峰期旅客疏解辅助决策系统设计[J].铁道经济研究,2016(5):42-47.
45. 黄文成,帅斌*,杨卓倩.中巴经济走廊对中国能源进口的战略意义分析[J].铁道经济究,2016(2):34-37.
46. 帅斌*,黄文成,吴贞瑶,李美霖,宗君振.中日德铁路项目经济效益评估比较研究[J].铁道运输与经济,2018,40(1):1-7.
47. Yang, L, Liu, J, Lu, Y, Ao, Y, Guo, Y, Huang, WC, Zhao, R, Wang, R, 2020. Global and local associations between urban greenery and travel propensity of older adults in Hong Kong. Sustainable Cities and Society, 63, 102442. (A++, SCI)
48. Xu, M, Shuai, B, Wang, X, Li, J, Huang, WC, 2021. A two-stage optimization approach for inspection plan formulation of comprehensive inspection train: The China case. Computers & Industrial Engineering, 159, 107465. (A+, SCI)
49. Yang, L, Chu, X, Gou, Z, Yang, H, Lu, Y, Huang, WC, 2020. Accessibility and proximity effects of bus rapid transit on housing prices: Heterogeneity across price quantiles and space. Journal of Transport Geography, 88, 102850. (A+, SCI)