[1] 马常松, 陈旭, 罗振宇, 等. 随机需求下考虑低碳政策规制的企业生产策略[J]. 控制与决策, 2015, 30(6): 969-976 MA Changsong, CHEN Xu, LUO Zhenyu, et al. Production strategy of considering low carbon emission policies regulation under stochastic demand[J]. Control and Decision, 2015, 30(6): 969-976 [2] 张琳, 田军. 协议企业应急物资生产与原材料预储决策研究[J/OL]. 中国管理科学, (2021-07-05) . https://doi.org/10.16381/j.cnki.issn1003-207x.2020.2158. [3] 巩玲君, 张纪海. 基于NSGA-Ⅱ的应急生产任务多目标优化模型及算法研究[J]. 运筹与管理, 2019, 28(12): 7-13 GONG Lingjun, ZHANG Jihai. Multi-objective emergency production assignment model based on NSGA-II[J]. Operations Research and Management Science, 2019, 28(12): 7-13 [4] 谭英双, 张雪清, 衡爱民. 需求不确定下企业生产规模选择及影响因素研究[J]. 中国管理科学, 2018, 26(8): 1149-1157 TAN Yingshuang, ZHANG Xueqing, HENG Aimin. Study on the scale and influence factors of enterprise production under demand uncertainty[J]. Chinese Journal of Management Science, 2018, 26(8): 1149-1157 [5] 魏琦, 鲁晨. 不确定需求下碳减排措施对企业决策的影响研究[J]. 重庆理工大学学报 (自然科学版), 2021, 35(8): 199-208 WEI Qi, LU Chen. Research on the influence of carbon emission reduction measures on enterprise decision under uncertain demand[J]. Journal of Chongqing University of Technology (Natural Science), 2021, 35(8): 199-208 [6] DARVISHI F, YAGHIN R G, SADEGHI A. Integrated fabric procurement and multi-site apparel production planning with cross-docking: a hybrid fuzzy-robust stochastic programming approach[J]. Applied Soft Computing, 2020, 92: 106267. [7] AHMAD F, AHMAD S, ZAINDIN M. Sustainable production and waste management policies for COVID-19 medical equipment under uncertainty: A case study analysis[J]. Computers & Industrial Engineering, 2021, 157: 107381. [8] WANG C N, SYU S D, CHOU C C, et al. Two-stage production planning under stochastic demand: case study of fertilizer manufacturing[J]. CMC-Computers Materials & Continue, 2022, 70(1): 1195-1207 [9] MARDAN E, AMALNIK M S, RABBANI M. An integrated emergency ordering and production planning optimization model with demand and yield uncertainty[J]. International Journal of Production Research, 2015, 53(19-20): 1-17 [10] 于辉, 王菲, 刘冠美. 突发事件下基于贝叶斯更新的延迟生产策略[J]. 系统工程理论与实践, 2015, 35(3): 687-694 YU Hui, WANG Fei, LIU Guanmei. Postponement production strategy under disruption based on Bayesian information update[J]. Systems Engineering—Theory & Practice, 2015, 35(3): 687-694 [11] TVERSKY A, KAHNEMAN D. Advances in prospect theory: cumulative representation of uncertainty[J]. Journal of Risk and Uncertainty, 1992, 5(4): 297-323 [12] 毛亚兰, 张锦. 考虑乘客不完全理性行为的轨道交通车站应急疏散方法研究[J]. 工业工程, 2020, 23(3): 138-144 MAO Yalan, ZHANG Jin. An emergency evaluation method of rail transit station considering passengers' incomplete rational behavior[J]. Industrial Engineering Journal, 2020, 23(3): 138-144 [13] LIU W, LI L. Emergency decision-making combining cumulative prospect theory and group decision-making[J]. Granular Computing, 2018, 4(3): 39-52 [14] 王娟, 金智新, 邓存宝, 等. 基于前景理论的三角犹豫模糊多属性决策方法[J]. 运筹与管理, 2019, 28(7): 26-33 WANG Juan, JIN Zhixin, DENG Cunbao, et al. Multiple attribute decision making method for hesitant triangular fuzzy based on prospect theory[J]. Operations Research and Management Science, 2019, 28(7): 26-33 [15] CHEN C T. Extensions of the TOPSIS for group decision-making under fuzzy environment[J]. Fuzzy Sets & Systems, 2000, 114(1): 1-9 [16] 汪新凡, 王坚强. 基于后悔理论的具有期望水平的直觉语言多准则决策方法[J]. 控制与决策, 2016, 31(9): 1638-1644 WANG Xinfan, WANG Jianqiang. Approach to intuitionistic linguistic multi-criteria decision making with aspiration levels on criteria based on regret theory[J]. Control and Decision, 2016, 31(9): 1638-1644
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