[1] Qian C, Anderson E. Buyer’s optimal information revelation strategy in procurement auctions[J]. European Journal of Operational Research, 2020, 283(3): 1011-1025. [2] 曾宪科,冯玉强,杨睿.基于价格歧视策略的多单元逆向多属性英式拍卖机制[J].运筹与管理,2015,24(2):163-169. [3] 朱卫未,缪子阳,淦贵生.基于Context-dependent DEA方法的碳排放减额分配策略[J].资源科学,2020,42(11):2170-2183. [5] 陈磊,王应明.技术差异视角下中国交通运输业环境效率研究[J].交通运输系统工程与信息,2018,18(6):22-27,54. [6] 冯晨鹏,尹绍婧,肖相泽,等.浙江省区域碳排放权配额分配与补偿研究[J].系统工程学报,2020,35(5):577-587. [7] Thies C, Kieckhafer K, Spengler T S, et al. Operations research for sustainability assessment of products: a review[J]. European Journal of Operational Research, 2019, 274(1): 1-21. [8] 陈亚,张志强,周志翔,等.中国制造业全要素能源效率分析——基于地区和细分行业双重视角[J].北京理工大学学报(社会科学版),2019,21(2):48-58. [9] Lee H S, Chu C W, Zhu J. Super-efficiency DEA in the presence of infeasibility[J]. European Journal ofOperational Research, 2011, 212(1): 141-147. [10] Bogetoft P, Nielsen K. DEA based auctions[J]. European Journal of Operational Research, 2008, 184(2): 685-700. [11] Zhang J L, Xiang J, Cheng T C E, et al. An optimal efficient multi-attribute auction for transportation procurement with carriers having multi-unit supplies[J]. Omega-International Journal of Management Science,2019, 83: 249-260. [12] Mavrotas G. Effective implementation of the ε-constraint method in multi-objective mathematical programming problems[J]. Applied Mathematics and Computation, 2009, 213(2): 455-465. [13] Costantino N, Dotoli M, Falagario M, et al. Using fuzzy decision making for supplier selection in public procurement[J]. Journal of Public Procurement, 2011, 11(3): 403-427. [14] Falagario M, Sciancalepore F, Costantino N, et al. Using a DEA-cross efficiency approach in publicprocurement tenders[J]. European Journal of Operational Research, 2012, 218(2): 523-529. |