[1] 屈挺, 张凯, 罗浩, 等. 物联网驱动的"生产-物流"动态联动机制、系统及案例[J]. 机械工程学报, 2015, 51(20):36-44.QU Ting, ZHANG Kai, LUO Hao, et al. Internet-of-things based dynamic synchronization of production and logistics:mechanism, system and case study[J]. Journal of Mechanical Engineering, 2015, 51(20):36-44. [2] 德国联邦政府的高科技战略举措行动"工业4. 0". 控制工程在线.[DB/OL]. (2013-02-21). http://c.iot-online.com/News/2013/022123662.html. [3] BREWER A, SLOAN N, LANDERS T L. Intelligent tracking in manufacturing[J]. Journal of Intelligent Manufacturing, 1999, 10(3-4):245-250. [4] LI Z, GADH R, PRABHU B S. Applications of RFID technology and smart parts in manufacturing[C/OL]. (2004-10-28). http://wireless.ucla.edu/gadh/pdf/04b.pdf. [5] 戴青云, 罗天友. 基于RFID的在制品追踪与管理系统[J]. 电脑与电信, 2006(7):10-15.DAI Qingyun, LUO Tianyou. Produce pursuing and management system based on RFID[J]. Computer & Telecommunication, 2006(7):10-15. [6] 屈挺, 贾东元, 王宗忠, 等. 基于物联网的"生产-物流"实时联动方法和系统[J]. 物流科技, 2014, 37(7):1-4.QU Ting, JIA Dongyuan, WANG Zongzhong, et al. "Manufacturing-logistics" real-time joint method and system based on IOT[J]. Logistics Sci-tech, 2014, 37(7):1-4. [7] 张凯. 物联网环境下基于"生产-物流"联动的动态成品入库优化方法[D]. 广州:广东工业大学, 2015.ZHANG Kai. Synchronization of production and logistics based dynamic optimization method for product warehousing under the internet-of-things environment[D]. Guangzhou:Guangdong University of Technology, 2015. [8] 雷水平. 物联制造系统中考虑云资源的"生产-物流"两级联动控制方法[D]. 广州:广东工业大学, 2016.LEI Shuiping. Two level control method for an IoT-based production logistics synchronization system with cloud resources[D]. Guangzhou:Guangdong University of Technology, 2016. [9] 王卫国, 王耀. 一种齐套制造模型的研究及实现[J]. 计算机集成制造系统, 2013, 19(11):2795-2801.WANG Weiguo, WANG Yao. Research and implement for kit-manufacturing model[J]. Computer Integrated Manufacturing Systems, 2013, 19(11):2795-2801. [10] LI Chunglun, VAIRAKTARAKIS George. Coordinating production and distribution of jobs with bundling operations[J]. ⅡE Transactions, 2007, 39(2):203-215. [11] 王林平. 应用齐套概念的离散制造业生产调度问题研究[D]. 大连:大连理工大学, 2009.WANG Linping. Production scheduling of discrete manufacturing under complete kit concept[D]. Dalian:Dalian University of Technology, 2009. [12] RONEN B. The complete kit concept[J]. International Journal of Production Research, 1992, 30(10):2457-2466. [13] LESHNO M, RONEN B. The complete kit concept-implementation in the health care system[J]. Human Systems Management, 2001, 20(4):313-318. [14] GÜNTHER H O, GRONALT M, PILLER F. Component kitting in semi-automated printed circuit board assembly[J]. International Journal of Production Economics, 1996, 43(2):213-226. [15] VOLMAJER M, KEGL B. Cavitation phenomena in the injection nozzle:theoretical and numerical analysis[J]. Journal of KONES Internal Combustion Engines, 2004, 11(3-4):295-303. [16] HUANG G Q, QU T, FANG M J, et al. RFID-enabled gateway product service system for collaborative manufacturing alliances[J]. CIRP Annals-Manufacturing Technology, 2011, 60(1):465-468. [17] KIM H M. Target cascading in optimal system design[D]. Michigan:University of Michigan, 2001. [18] SOBIESZCZANSKI-SOBIESKI J, ALTUS T D, PHILLIPS M, et al. Bilevel integrated system synthesis for concurrent and dis-tributed processing[J]. AIAA Journal, 2012, 41(10):1996-2003. [19] BRAUN R D, MOORE A A, KROO I M. Collaborative approach to launch vehicle design[J]. Journal of Spacecraft Rockets, 1997, 34(4):478-486. [20] ALLISON J, KOKKOLARAS M, ZAWISLAK M, et al. On the use of analytic target cascading and collaborative optimization for complex system design[C/OL]. (2005-03-03). http://ode.engin.umich.edu/publications/PapalambrosPapers/2005/217.pdf. [21] LING L Y, LIANG L, PU X J. ATC based coordination of distributed production planning and supplier selection[J]. Applied Mathematics & Computation, 2006, 182(2):1154-1168. |