[1] 黄国青, 华风燕. 绿色供应链绩效评价的模型研究[J]. 工业工程, 2007, 10(1): 116-120. HUANG Guoqing, HUA Fengyan. Research model of performance evaluation of green supply chain[J]. Industrial Engineering Journal, 2007, 10(1): 116-120. [2] 杨文胜. 基于响应时间的供应链协同决策与优化模型研究[D]. 武汉: 华中科技大学, 2004. YANG Wensheng. Supply chain coordination decision optimization models based on responding time[D]. Wuhan: Huazhong University of Science and Technology, 2004. [3] 周金宏, 汪定伟. 分布式多工厂、多分销商的供应链生产计划模型[J]. 信息与控制, 2001, 30(2): 169-172. ZHOU Jinhong, WANG Dingwei. Production planning model for supply chain for multi-location plants and distributor[J]. Information and Control, 2001, 30(2): 169-172. [4] 杨红红, 吴智铭. 基于两级遗传算法的多工厂供应链批量生产计划问题[J]. 上海交通大学学报, 2003, 37(4): 473-478. YANG Honghong, WU Zhiming. Two level GA-based approach to the capacitated lot sizing problem for multi-plants supply chain[J]. Journal of Shanghai Jiaotong University, 2003, 37(4): 473-478. [5] 林中旭, 林中伟. 面向供应链的生产计划研究[J]. 计算机工程与科学, 2005, 27(1): 102-110. LIN Zhongxu, LIN Zhongwei. Study on the supply-chain-oriented production planning model[J]. Computer Engineering & Science, 2005, 27(1): 102-110. [6] 郑超奔. 需求不确定下多级绿色供应链设施决策模型的研究[D]. 杭州: 浙江工业大学, 2013. ZHENG Chaoben. Research on the facility decision model of multi-level green spply chain with uncertainty demands[D]. Hangzhou: Zhejiang University of Technology, 2013. [7] 黄志成. 低碳约束下的生产批量计划问题[D]. 南京: 东南大学, 2016. HAUNG Zhicheng. Supply chain lot-sizing problem under low carbon emission constraint[D]. Nanjing: Southeast University, 2016. [8] MODARRES M, IZADPANAHI E. Aggregate production planning by focusing on energy saving: a robust optimization approach[J]. Journal of Cleaner Production, 2016, 133: 1074-1085. [9] 张铭鑫, 张玺, 彭建刚, 等. 不确定环境下再制造加工车间多目标调度优化方法[J]. 合肥工业大学学报(自然科学版), 2016, 39(4): 433-439. ZHANG Mingxin, ZHANG Xi, PENG Jiangang, et al. Multi-objective optimization method of remanufacturing processing workshop scheduling under uncertain conditions[J]. Journal of Hefei University of Technology(Natural Science), 2016, 39(4): 433-439. [10] 周金宏, 汪定伟. 考虑多运输方式的供应链生产计划多目标模型[J]. 系统工程学报, 2000, 15(4): 362-366. ZHOU Jinhong, WANG Dingwei. A multi-objective model of production planning for supply chain with considering multi-transport mode[J]. Journal of Systems Engineering, 2000, 15(4): 362-366. [11] 杨涛. 低碳经济下的多运输方式物流网络规划[J]. 陕西科技大学学报, 2011, 29(5): 102-106. YANG Tao. A three levels logistics network planning of the low-carbon economy[J]. Journal of Shaanxi University of Science & Technology. 2011, 29(5): 102-106. [12] CHEN C L, LEE W C. Multi-objective optimization of multi-echelon supply chain networks with uncertain product demands and prices[J]. Computers and Chemical Engineering, 2004, 28(10): 1131-1144. [13] 夏立明, 赵春雪, 孙妍枫. 基于主成分分析和目标规划法的高速公路施工进度目标规划模型[J]. 武汉理工大学学报(交通科学与工程版), 2010, 34(4): 788-792. XIA Liming, ZHAO Chunxue, SUN Yanfeng. Goal programming model for highway construction schedule based on the principle component analysis and goal programming[J]. Journal of Wuhan University of Technology (Transpotation Science & Engineering), 2010, 34(4): 788-792. [14] 李雁冰. 不确定环境下区间优化在综合生产计划中的研究与应用[D]. 西安: 长安大学, 2016. LI Yanbing. Research and application of the interval number optimization in aggregate production planning under uncertain information environment [D]. Chang'an University, Xi'an, 2016. [15] 肖峻, 张跃, 付川. 基于可能度的区间数排序方法研究[J]. 天津大学学报, 2011, 44(8): 705-711. XIAO Jun, ZHANG Yue, FU Chuan. Comparison between methods of interval number ranking based on possibility[J]. Journal of Tianjin University, 2011, 44(80): 705-711. |