DU Shouxin, WU Tao. Study on Application of Double Population Hybrid Genetic Algorithm in Cut Order Planning[J]. Computer Engineering and Applications, 2021, 57(22): 182-189.
[1] 庹武,郑攀,常亭亭,等.基于层次分析法的服装裁剪分床影响因素[J].纺织学报,2013,34(4):148-152.
TUO W,ZHENG P,CHANG T T,et al.Analysis of factors affecting cutting scheme based on analytical hierarchy process[J].Journal of Textile Research,2013,34(4):148-152.
[2] JELIL R A.Review of artificial intelligence applications in garment manufacturing[M]//Artificial intelligence for fashion industry in the big data era.Singapore:Springer,2018:97-123.
[3] üNAL C,YüKSEL A D.Cut order planning optimisation in the apparel industry[J].Fibres & Textiles in Eastern Europe,2020(139):8-13.
[4] NASCIMENTOD B,DE FIGUEIREDO J N,MAYERLE S F,et al.A state-space solution search method for apparel industry spreading and cutting[J].International Journal of Production Economics,2010,128(1):379-392.
[5] M’HALLAH R,BOUZIRI A.Heuristics for the combined cut order planning two-dimensional layout problem in the apparel industry[J].International Transactions in Operational Research,2014,23(1/2):321-353.
[6] 王学骥,周俊.基于粒子群优化算法的多目标裁剪优化分配的研究[J].工业控制计算机,2014,27(12):112-114.
WANG X J,ZHOU J.Multi-objective optimization of cutting distribution based on particle swarm optimizer[J].Industrial Control Computer,2014,27(12):112-114.
[7] 江丽林,周巨栋,董辉.基于自适应加速因子粒子群优化算法的裁剪分床研究[J].计算机测量与控制,2018,26(1):181-184.
JIANG L L,ZHOU J D,DONG H.Research on cutting distribution based on self-adaptive acceleration factor particle swarm optimization[J].Computer Measurement & Control,2018,26(1):181-184.
[8] 刘艳梅,颜少聪,纪杨建,等.大批量定制服装裁剪分床计划的两阶段优化方法[J].计算机集成制造系统,2012,18(3):479-485.
LIU Y M,YAN S C,JI Y J,et al.Two stage optimization method of cut order planning for apparel mass customization[J].Computer Integrated Manufacturing Systems,2012,18(3):479-485.
[9] XU Y,THOMASSEY S,ZENG X.Optimization of garment sizing and cutting order planning in the context of mass customization[J].The International Journal of Advanced Manufacturing Technology,2020,106:3485-3503.
[10] ABEYSOORIYA R P,FERNANDO T G I.Hybrid approach to optimizecut order plan solutions in apparel manufacturing[J].International Journal of Information Communication Technology Research,2012,2(4):348-353.
[11] TSAO Y-C,VU T-L,LIAO L-W.Hybrid heuristics for the cut ordering planning problem in apparel industry[J].Computers & Industrial Engineering,2020,144:106478.
[12] 马永杰,云文霞.遗传算法研究进展[J].计算机应用研究,2012,29(4):1201-1206.
MA Y J,YUN W X.Research progress of genetic algorithm[J].Application Research of Computers,2012,29(4):1201-1206.
[13] 杨俊胜,沈航驰,葛鹏,等.粒子群优化算法[J].软件,2020,41(5):228-230.
YANG J S,SHEN H C,GE P,et al.Particle swarm optimization algorithm[J].Computer Engineering & Software,2020,41(5):228-230.
[14] 张超群,郑建国,钱洁.遗传算法编码方案比较[J].计算机应用研究,2011,28(3):819-822.
ZHANG C Q,ZHENG J G,QIAN J.Comparison of coding schemes for genetic algorithms[J].Application Research of Computers,2011,28(3):819-822.
[15] TSOULOSIG,TZALLAS A,TSALIKAKIS D.PDoublePop:an implementation of parallel genetic algorithm for function optimization[J].Computer Physics Communications,2016,209:183-189.
[16] 王东风,孟丽.粒子群优化算法的性能分析和参数选择[J].自动化学报,2016,42(10):1552-1561.
WANG D F,MENG L.Performance analysis and parameter selection of PSO algorithms[J].Acta Automatica Sinica,2016,42(10):1552-1561.
[17] 董红斌,李冬锦,张小平.一种动态调整惯性权重的粒子群优化算法[J].计算机科学,2018,45(2):98-102.
DONG H B,LI D J,ZHANG X P.Particle swarm optimization algorithm with dynamically adjusting inertia weight[J].Computer Science,2018,45(2):98-102.
[18] 刘文英,张自鲁,路慎强,等.基于粒子群-遗传混合算法的函数优化研究[J].计算机技术与发展,2019,29(10):170-174.
LIU W Y,ZHANG Z L,LU S Q,et al.Research on function optimization based on particle swarm-genetic hybrid algorithm[J].Computer Technology and Development,2019,29(10):170-174.