[1] 陈敏. 考虑有限车间物流运输能力的AGV调度方法[D]. 广州: 广东工业大学, 2019. CHEN Min. AGV scheduling method considering limited logistics transportation capacity of workshop[D]. Guangzhou: Guangdong University of Technology, 2019. [2] 张树. 考虑拥堵的多AGV路径规划研究[D]. 广州: 广东工业大学, 2020. ZHANG Shu. Research on multi AGV path planning considering congestion[D]. Guangzhou: Guangdong University of Technology, 2020. [3] 廖勇. 考虑智能物料储运系统的生产车间布局方法研究[D]. 广州: 广东工业大学, 2021. LIAO Yong. Layout design method for work shop with intelligent material handling system[D]. Guangzhou: Guangdong University of Technology, 2021. [4] TOMPKINS J A, WHITE J A, BOZER Y A, et al. Facilities planning[M]. Fourth Edition. New Jersey: John Wiley & Sons, Inc. , 2010. [5] MONTREUIL B, RATLIFF H D. Optimizing the location of input/output stations within facilities layout[J]. Engineering Costs and Production Economics, 1988, 14(3): 177-187 [6] KIM J, KLEIN C M. Location of departmental pickup and delivery points for an AGV system[J]. International Journal of Production Research, 1996, 34(2): 407-420 [7] PAPAKOSTAS N, MONELEY J O, HARGADEN V. Integrated simulation-based facility layout and complex production line design under uncertainty[J]. CIRP Annals, 2018, 67(1): 451-454 [8] FRIEDRICH C, KLAUSNITZER A, LASCH R. Integrated slicing tree approach for solving the facility layout problem with input and output locations based on contour distance[J]. European Journal of Operational Research, 2018, 270(3): 837-851 [9] MOHAMADI A, EBRAHIMNEJAD S, SOLTANI R, et al. A new two-stage approach for a bi-objective facility layout problem considering input/ output points under fuzzy environment[J/OL]. IEEE Access, 2019, 7: 134083-134103. https://ieeexplore.ieee.org/document/8836457. [10] PARK H, SEO Y. An efficient algorithm for unequal area facilities layout planning with input and output points[J]. INFOR:Information Systems and Operational Research, 2019, 57(1): 56-74 [11] AHMADI-JAVID A, ARDESTANI-JAAFARI A. The unequal area facility layout problem with shortest single-loop AGV path: how material handling method matters[J]. International Journal of Production Research, 2021, 59(8): 2352-2374 [12] 谢洁明, 陈庆新, 毛宁, 等. 基于GMADS与问题信息的车间单元上下料口布局优化方法[J]. 计算机集成制造系统, 2022, 28(12): 3847-3858 XIE Jieming, CHEN Qingxin, MAO Ning, et al. A GMADS algorithm and information-based optimization approach for pick-up/drop-off points layout of manufacturing cells[J]. Computer Integrated Manufacturing Systems, 2022, 28(12): 3847-3858 [13] SMITH J M. Joint optimisation of buffers and network population for closed finite queueing systems[J]. International Journal of Production Research, 2016, 54(17): 5111-5135 [14] 席少辉, 陈庆新, 毛宁, 等. 具有批量储运环节的装配系统缓存区优化配置[J]. 计算机集成制造系统, 2017, 23(12): 2657-2664 XI Shaohui, CHEN Qinxin, MAO Ning, et al. Buffer allocation problem of assembly manufacturing system with bulk storage and transportation[J]. Computer Integrated Manufacturing Systems, 2017, 23(12): 2657-2664 [15] 张惠煜, 陈庆新, 毛宁, 等. 两阶齐套性约束的制造系统排队网建模与缓冲区优化[J]. 计算机集成制造系统, 2021, 27(10): 2889-2898 ZHANG Huiyu, CHEN Qinxin, MAO Ning, et al. Queuing network modelling and optimal buffer allocation in manufacturing systems with a two-stage kitting constraint[J]. Computer Integrated Manufacturing Systems, 2021, 27(10): 2889-2898 [16] PÉREZ-GOSENDE P, MULA J, DÍAZ-MADROÑERO M. Facility layout planning. An extended literature review[J]. International Journal of Production Research, 2021, 59(12): 3777-3816 [17] 刘明明, 崔春风, 童小娇, 等. 混合整数非线性规划的算法软件及最新进展[J]. 中国科学(数学), 2016, 46(1): 1-20 LIU Mingming, CUI Chunfeng, TONG Xiaojiao, et al. Algorithms, softwares and recent developments of mixed integer nonlinear programming[J]. Science in China (Series A), 2016, 46(1): 1-20 [18] 孙小玲, 李端. 整数规划新进展[J]. 运筹学学报, 2014, 18(1): 39-68 SUN Xiaoling, LI Duan. Recent advances in integer programming[J]. Operations Research Transactions, 2014, 18(1): 39-68 [19] AUDET C, HARE W. Derivative-free and blackbox optimization[M]. Switzerland: Springer, 2017.
|