[1] 吴红娟, 刘贵文, 毛超. 工业化建造的政策路径研究——基于政府角色分析[J]. 建筑经济, 2016, 37(8): 24-28 WU Hongjuan, LIU Guiwen, MAO Chao. Research on the Policy path of industrialized construction:based on of government roles analysis[J]. Construction Economy, 2016, 37(8): 24-28 [2] ARASHPOUR M, WAKEFIELD R, ABBASI B. Off-site construction optimization: Sequencing multiple job classes with time constraints[J]. Automation in Construction, 2016, 7(1): 262-270 [3] 袁琳, 董娜. 中国建筑工业化发展现状分析与研究[J]. 四川建筑, 2017, 37(2): 41-43 [4] 王永升, 齐二石. 从精益生产到精益设计[J]. 现代管理科学, 2010(3): 6-7 [5] SUNDIN E, BJÃ?RKMAN M, EKLUND M. Improving the layout of recycling centres by use of lean production principles[J]. Waste Management, 2011, 31(6): 1121-1132 [6] WEBER A. Lean plant layout[J]. Assembly, 2012, 28(6): 112-123 [7] LOW S P, GAO S,TIONG K L. Applying lean production principles to facilities design of ramp-up factories[J]. Facilities, 2015, 33(5/6): 280-301 [8] SEYEDHOSSEINI S M, TALEGHANI A E, BAKHSHA A, et al. Extracting leanness criteria by employing the concept of Balanced Scorecard[J]. Expert Systems with Applications, 2011, 38(8): 10454-10461 [9] VINODH S, VIMAL K E K. Thirty criteria based leanness assessment using fuzzy logic approach[J]. The International Journal of Advanced Manufacturing Technology, 2012, 60(9-12): 1185-1195 [10] DENNIS P. Lean production simplified: a plain language guide to the world’s most powerful production system[J]. Journal of Manufacturing Systems, 2002, 21(4): 325 [11] SLACK R A. The lean value principle in military aerospace product development[J]. The Lean Aerospace Initiative. Report Series, 1999, 16(1): 99 [12] ELNADI M, SHEHAB E. A Conceptual Model for Evaluating Product-service Systems Leanness in UK Manufacturing Companies [J]. Procedia Cirp, 2014, 22(1): 281-286 [13] PAPADOPOULOU T C, ÖZBAYRAK M. Leanness: experiences from the journey to date[J]. Journal of Manufacturing Technology Management, 2005, 16(7): 784-807 [14] VINODH S, CHINTHA S K. Leanness assessment using multi-grade fuzzy approach[J]. International Journal of Production Research, 2011, 49(2): 431-445 [15] TEKEZ E K, TAŞDEVIREN G. A model to assess leanness capability of enterprises[J]. Procedia Computer Science, 2016, 100(1): 776-781 [16] 宝斯琴塔娜, 齐二石. 制造系统精益设计的绩效评价体系构建[J]. 统计与决策, 2018(10): 174-177 BAO Siqintana, QI Ershi. Construction of performance evaluation system of manufacturing system lean design[J]. Statistics and Decision, 2018(10): 174-177 [17] 杨承涛, 马训鸣. 制造系统柔性的评价方法[J]. 工程建设与设计, 1996(2): 34-36 [18] 徐金杰, 武忠. 基于AHP和DEMATEL法的技术创新网络知识转移研究——以江苏省风电产业技术创新联盟为例[J]. 情报杂志, 2012, 31(9): 121-125 XU Jinjie, WU Zhong. Knowledge transfer in technology innovation network based on AHP and DEMATEL method[J]. Journal of Intelligence, 2012, 31(9): 121-125 [19] HWANG Chinglai, YOON Kwangsun. Multiple attribute decision making[M].Berlin:Springer Berlin Heidelberg, 1981. [20] MAESSCHALCK R D, JOUAN-RIMBAUD D, MASSART D L. The Mahalanobis distance[J]. Chemometrics & Intelligent Laboratory Systems, 2000, 50(1): 1-18 [21] 关宏艳, 李宗坤, 葛巍. 基于加权广义马氏距离的TOPSIS方法在水库防洪调度决策中的应用[J]. 天津大学学报(自然科学与工程技术版), 2016, 49(12): 1276-1281 GUAN Hongyan, LI Zongkun, GE Wei. TOPSIS method based on weighted generalized Mahalanobis distance: An application to reservoir flood control operation[J]. Journal of Tianjin University( Science and Technology ), 2016, 49(12): 1276-1281
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