近期论文
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[25] Zhou, Y., Kundu, T., Goh, M., Chakraborty, S., & Bai, X. (2023). A multi-stage multi-criteria data analytics approach to rank commercial service airports. Journal of Air Transport Management.
[24] Li, L., Li, Y., Liu, R., Zhou, Y., & Pan, E. (2023). A Two-stage Stochastic Programming for AGV Scheduling with Random Tasks and Battery Swapping in Automated Conainer Terminals. Transportation Research Part E, 174, 103110.
[23] Bai, X., Ma, Z., & Zhou, Y.* (2023). Data-Driven Static and Dynamic Resilience Assessment of the Global Liner Shipping Network. Transportation Research Part E, 170, 103016.
[22] Zhou, Y., Yang, H., Ma, Z., & Bai, X. (2022). Impact of Quarantine Policies on Port Network Performance and Robustness during Pandemics: A Simulation-based Analysis. Maritime Policy & Management, 1-19.
[21] Zhou, Y., Yu, Y., Wang, Y., & Yang, L. (2022). Mode substitution and carbon emission impacts of electric bike sharing systems. Sustainable Cities and Society, 89, 104312.
[20] Zheng, M., Dong, S., Zhou, Y., & Choi, T. M. (2022). Sourcing Decisions with Uncertain Time-Dependent Supply from an Unreliable Supplier. European Journal of Operational Research, 1-15.
[19] Zhou, Y., Li, S., & Wang, J. (2022). Modeling stochastic behavior of road networks with disruptions using percolation theory. IEEE Transactions on Intelligent Transportation Systems, 23(8), 13230-13241.
[18] Zhou, Y., Kundu, T., Qin, W., Goh, M., & Sheu, J. B. (2021). Vulnerability of the worldwide air transportation network to global catastrophes such as COVID-19. Transportation Research Part E, 154, 102469.
[17] Li, S., Zhou, Y.*, Kundu, T., & Sheu, J. B. (2021). Spatiotemporal variation of the worldwide air transportation network induced by COVID-19 pandemic in 2020. Transport Policy, 111, 168-184.
[16] Li, S., Zhou, Y.*, Kundu, T., & Zhang, F. (2021). Impact of entry restriction policies on international air transport connectivity during COVID-19 pandemic. Transportation Research Part E, 152, 102411.
[15] Zhou, Y.*, Li, S., Kundu, T., Bai, X., & Qin, W. (2021). The impact of network topology on air transportation robustness to pandemics. IEEE Transactions on Network Science and Engineering, 8(3), 2249-2261.
[14] Zhou, Y., Kundu, T., Goh, M., & Sheu, J. B. (2021). Multimodal transportation network centrality analysis for Belt and Road Initiative. Transportation Research Part E, 149, 102292.
[13] Qin, W., Zhuang, Z., Zhou, Y.*, & Sun, Y. (2021). Dynamic dispatching for interbay automated material handling with lot targeting using improved parallel multiple-objective genetic algorithm. Computers & Operations Research, 131, 105264.
[12] Qin, W., Sun, Y., Zhuang, Z., Lu, Z., & Zhou, Y. (2021). Multi-agent reinforcement learning-based dynamic task assignment for vehicles in urban transportation system. International Journal of Production Economics, 240, 108251.
[11] Bai, X., Zhang, X., Li, K. X., Zhou, Y., & Yuen, K. F. (2021). Research Topics and Trends in the Maritime Transport: a Structural Topic Model. Transport Policy, 102, 11-24.
[10] 李思平, 周耀明*. (2021). 全球疫情下的中国内地航空网络对外连通性. 航空学报, 42(6), 568-580.
[9] Zhou, Y., Wang, J., & Sheu, J. B. (2019). On connectivity of post-earthquake road networks. Transportation Research Part E, 123, 1-16.
[8] Zhou, Y., Wang, J., & Huang, G. Q. (2019). Efficiency and robustness of weighted air transport networks. Transportation Research Part E, 122, 14-26.
[7] Zhou, Y., Wang, J., & Yang, H. (2019). Resilience of transportation systems: concepts and comprehensive review. IEEE Transactions on Intelligent Transportation Systems, 20(12), 4262-4276.
[6] Wang, J., Zhou, Y.*, & Huang, G. Q. (2019). Alternative pair in the airport network. Transportation Research Part A, 124, 408-418.
[5] Zhou, Y., & Wang, J. (2018). Critical link analysis for urban transportation systems. IEEE Transactions on Intelligent Transportation Systems, 19(2), 402-415.
[4] Zhou, Y., & Wang, J. (2018). Efficiency of complex networks under failures and attacks: A percolation approach. Physica A, 512, 658-664.
[3] Zhou, Y., Sheu, J. B., & Wang, J. (2017). Robustness assessment of urban road network with consideration of multiple hazard events. Risk Analysis, 37(8), 1477-1494.
[2] Wang, J., Wang, H., Zhou, Y., Wang, Y., & Zhang, W. (2017). On an integrated approach to resilient transportation systems in emergency situations. Natural Computing, 18(4), 815-823.
[1] Zhou, Y., Huang, H., Ding, J., Wang, H., Chen, Y., & Wang, J. (2016). Modeling chlorophyll a concentration affected by artificial upwelling in Qiandao Lake. IEEE Journal of Oceanic Engineering, 41(4), 960-969.
国际会议论文与报告
[7] Multi-UAV Route Planning for Data Collection from Heterogeneous IoT Devices, IEEE IEEM, 2022, Malaysia.
[6] Cabinet Location Optimization for E-bike Battery Swapping Systems, IEEE IEEM, 2022, Malaysia.
[5] User-based Battery Swapping Strategy in an Electric Bike-sharing System, IEEE IEEM, 2022, Malaysia.
[4] Covid-19 Induced Air Transport Network Analysis, COTA International Conference of Transportation Professionals, 2021, Xi'an, China. Outstanding Presentation Award
[3] Dynamic Vehicle Routing for Battery Swapping in an Electric Bike-sharing System, IEEE IEEM, 2021, Singapore. Best Paper Award (1/500+)
[2] Disaster Induced Traffic Network Analysis Using Percolation Theory, Informs Annual Meeting 2017, October, Houston, USA.
[1] Assessing Robustness of Urban Transport Network. IAIA 16, International Association for Impact Assessment 2016, Nagoya, Japan.