纺织学报 ›› 2025, Vol. 46 ›› Issue (09): 205-212.doi: 10.13475/j.fzxb.20250306201
WU Xiying1,2, DU Jinsong1,3(
), LI Hanhan3,4
摘要:
针对服装定制生产中多维度裁剪方案择优的多目标优化问题,现有研究缺乏对混合订单生产环境下工艺匹配与资源调度的协同优化机制。为此,提出一种订单工艺-裁剪方案-生产安排的三维耦合模型,构建基于机器学习的动态择优机制。通过分析订单属性与裁剪工艺的多维度特征,采用分类回归决策树算法匹配铺布单元与裁剪设备,并应用非支配排序遗传二代算法,以最小化设备最长裁剪实践与最大化裁床工作平衡率为目标,实现混合订单的智能化排产决策,以HL定制企业为例,基于22个多源订单的1 065床裁剪任务进行验证。实例验证表明:优化后最长完成时间最高减少4.2%,生产平衡率提升至89.96%,优化率最高达15.2%。该模型能显著缩短生产周期和平衡资源分配效率,为定制化服装柔性制造提供动态决策方案。
中图分类号:
| [1] | 陈清婷, 杜劲松, 林镶, 等. 面向服装供应链平台的订单生产双向推荐策略[J]. 纺织学报, 2022, 43(6):151-156. |
| CHEN Qingting, DU Jinsong, LIN Xiang, et al. A duo-directional recommendation strategy for order-production oriented to apparel supply chain platforms[J]. Journal of Textile Research, 2022, 43(6):151-156. | |
| [2] |
CHEN X, DENG Y, DI C, et al. High-accuracy clothing and style classification via multi-feature fusion[J]. Applied Sciences, 2022, 12(19): 10062.
doi: 10.3390/app121910062 |
| [3] | 徐希朋, 徐燕妮, 季晓芬. 单次定制订单的青年女性群体服装定制号型[J]. 丝绸, 2023, 60(8):82-90. |
| XU Xipeng, XU Yanni, JI Xiaofen. Customized sizes for young women's group clothing with a single customized order[J]. Journal of Silk, 2023, 60(8):82-90. | |
| [4] | PIETRONI N, DUMERY C, FALQUE R, et al. Computational pattern making from 3D garment models[J]. ACM Trans Graph, 2022, 41(4): 157:1-14. |
| [5] | ÜNAL C, YÜKSEL A D. Cut order planning optimisation in the apparel industry[J]. Fibres & Textiles in Eastern Europe, 2020, 28(1):8-13. |
| [6] | TUO W, ZHENG P. Analysis of the effect of clothing material on the spreading scheme[J]. Advanced Materials Research, 2011, 332: 1559-1562. |
| [7] |
杜守信, 毋涛. 双种群混合遗传算法的裁剪分床应用研究[J]. 计算机工程与应用, 2021, 57(22):182-189.
doi: 10.3778/j.issn.1002-8331.2007-0013 |
|
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.
doi: 10.3778/j.issn.1002-8331.2007-0013 |
|
| [8] | 吴祥, 吕金洋, 林文杰, 等. 基于深度强化学习的服装裁剪分床复合优化算法[J/OL]. 系统科学与数学,1-21[2025-03-24]. http://kns.cnki.net/kcms/detail/11.2019.o1.20250126.0939.016.html. |
| WU Xiang, LÜ Jinyang, LIN Wenjie, et al. A deep reinforcement learning-based composite optimization algorithm for garment cut order planning[J/OL]. Journal of Systems Science and Mathematical Sciences,1-21[2025-02-24]. http://kns.cnki.net/kcms/detail/11.2019.o1.20250126.0939.016.html. | |
| [9] |
谢子昂, 杜劲松, 赵国华. 衬衫吊挂流水线的自适应动态调度[J]. 纺织学报, 2020, 41(10):144-149.
doi: 10.13475/j.fzxb.20200100406 |
|
XIE Ziang, DU Jinsong, ZHAO Guohua. Adaptive dynamic scheduling of garment hanging production line[J]. Journal of Textile Research, 2020, 41(10):144-149.
doi: 10.13475/j.fzxb.20200100406 |
|
| [10] |
XU H, XU B, YAN J. Balancing apparel assembly lines through adaptive ant colony optimization[J]. Textile Research Journal, 2019, 89(18): 3677-3691.
doi: 10.1177/0040517518819836 |
| [11] | 熊福力, 张涛. 集成工人分配与分布式流水生产调度的改进蛇优化算法[J/OL]. 控制工程,1-14[2025-02-21].https://doi.org/10.14107/j.cnki.kzgc.20240252. |
| XIONG Fuli, ZHANG Tao. Joint worker assignment and production scheduling based on an improved snake optimization algorithm in distributed flow shop systems[J/OL]. Control Engineering of China,1-14[2025-02-21].https://doi.org/10.14107/j.cnki.kzgc.20240252. | |
| [12] |
YU S, LI X, WANG H, et al. C_cart: an instance confidence-based decision tree algorithm for classification[J]. Intelligent Data Analysis, 2021, 25(4): 929-948.
doi: 10.3233/IDA-205361 |
| [1] | 张旭靖, 王立川, 陈雁. 服装缝制生产物料的低碳配送路径优化[J]. 纺织学报, 2020, 41(03): 143-147. |
|
||