Journal of Textile Research ›› 2025, Vol. 46 ›› Issue (02): 92-99.doi: 10.13475/j.fzxb.20240904301
• Textile Engineering • Previous Articles Next Articles
WANG Luojun1,2, PENG Laihu1(
), XIONG Xuyi1, LI Yang2, HU Xudong1
CLC Number:
| [1] | 李杨, 彭来湖, 刘建廷, 等. 基于横向振动频率的轴向运动纱线张力测量[J]. 纺织学报, 2023, 44(6): 72-77. |
| LI Yang, PENG Laihu, LIU Jianting, et al. Axial yarn tension measurement based on transverse vibration frequency[J]. Journal of Textile Research, 2023, 44(6): 72-77. | |
| [2] | 章钰娟, 彭来湖, 徐郁山, 等. 非接触式纱线状态检测技术研究[J]. 现代纺织技术, 2021(10): 1-10. |
| ZHANG Yujuan, PENG Laihu, XU Yushan, et al. Research on non-contact yarn state detection techno-logy[J]. Advanced Textile Technology, 2021(10): 1-10. | |
| [3] | 成玲, 梁银铮. 纱线的动态力学性能[J]. 纺织学报, 2006, 27 (8): 19-21. |
| CHENG Ling, LIANG Yinzheng. The dynamic mechanics performance of the yarn [J]. Journal of Textile Research, 2006, 27(8): 19-21. | |
| [4] |
戴宁, 胡旭东, 彭来湖. 针织大圆机运动实时控制技术[J]. 纺织学报, 2019, 40(12): 134-139.
doi: 10.13475/j.fzxb.20180705606 |
|
DAI Ning, HU Xudong, PENG Laihu. Real time motion control technology circular knitting machine[J]. Journal of Textile Research, 2019, 40(12): 134-139.
doi: 10.13475/j.fzxb.20180705606 |
|
| [5] | 周俊儒, 林光兴, 张彦, 等. 圆纬机智能送纱系统开发与技术优势分析[J]. 纺织导报, 2022(6): 80-83. |
| ZHOU Junru, LIN Guangxing, ZHANG Yan, et al. Development and technical advantage analysis of intelligent yarn feeding system for circular weft knitting machine[J]. China Textile Leader, 2022(6): 80-83. | |
| [6] | 周佳超. 高弹细纱输送动态控制技术[D]. 杭州: 浙江理工大学, 2021:14-18. |
| ZHOU Jiachao. Dynamic control technology of high elastic yarn conveying[D]. Hangzhou: Zhejiang Sci-Tech University, 2021:14-18. | |
| [7] | 李雪娇. 短纤纱高速经编动态张力调控系统研究[D]. 无锡: 江南大学, 2022:14-16. |
| LI Xuejiao. Research on dynamic tension control system for high speed warp knitting of staple fiber yarn[D]. Wuxi: Jiangnan University, 2022:14-16. | |
| [8] |
ALI M, AHMED R, AMER M. Yarn tension control technique for improving polyester soft winding process[J]. Scientific Reports, 2021, 11(1):1060-1075.
doi: 10.1038/s41598-020-79928-1 pmid: 33441729 |
| [9] | ANDRE, MATTHES, CHOKRI, et al. Analysis and simulation of yarn feeding at high dynamic circular knitting machines[J]. Melliand Interna-tional(Worldwide Textile Journal), 2010, 16(5/6):220-222. |
| [10] | 李鹏飞, 高文根, 张港, 等. 基于改进SMO的无传感器IPMSM 转子位置估计[J]. 电子测量与仪器学报, 2021, 35(9):65-72. |
| LI Pengfei, GAO Wengen, ZHANG Gang, et al. Sensorless IPMSM rotor position estimation based on improved smo[J]. Journal of Electronic Measurement and Instrumentation, 2021, 35 (9): 65-72. | |
| [11] | 易泽仁, 谢巍, 刘龙文, 等. 一类非线性系统的神经网络自适应区间观测器设计[J]. 控制理论与应用, 2023, 40(10):1730-1736. |
| YI Zeren, XIE Wei, LIU Longwen, et al. Design of neural network adaptive interval observer for a class of nonlinear systems[J]. Control Theory and Applications, 2023, 40 (10): 1730-1736. | |
| [12] | 胡军剑. 大惯性电液张力模拟绞车系统的动特性及张力控制研究[D]. 杭州: 浙江大学, 2020:12-13. |
| HU Junjian. Research on dynamic characteristics and tension control of large inertia electro-hydraulic tension simulation winch system[D]. Hangzhou: Zhejiang University, 2020:12-13. | |
| [13] | 楚晓艳, 年晓红, 刘静静. 基于鲁棒滑模观测器的多电机卷绕系统故障检测和隔离[J]. 控制理论与应用, 2018, 35(6):795-804. |
| CHU Xiaoyan, NIAN Xiaohong, LIU Jingjing. Fault detection and isolation of multi motor winding system based on robust sliding mode observer[J]. Control Theory and Application, 2018, 35(6): 795-804. | |
| [14] | 郁明, 李旺林, 蓝盾. 基于优化自适应阈值的非线性机电系统传感器故障检测和主动容错控制[J]. 仪器仪表学报, 2022, 43(4):26-37. |
| YU Ming, LI Wanglin, LAN Dun. Sensor fault detection and active fault tolerant control of nonlinear electromechanical systems based on optimized adaptive threshold[J]. Journal of Instrumentation, 2022, 43(4): 26-37. | |
| [15] | 何忠伟. 区间观测器及其控制系统研究[D]. 广州: 华南理工大学, 2016:15. |
| HE Zhongwei. Research on interval observer and its control system[D]. Guangzhou: South China University of Technology, 2016:15. | |
| [16] | 付光杰, 潘海龙. 基于神经网络观测器的 PMSM无传感器矢量控制[J]. 国外电子测量技术, 2018, 37(5): 98-101. |
| FU Guangjie, PAN Hailong. Sensorless vector control of PMSM Based on neural network observer[J]. Foreign Electronic Measurement Technology, 2018, 37(5): 98-101. | |
| [17] | 武晨, 谷松原, 房圣超. HBF神经网络的一种结构自适应在线学习算法[J]. 中国电子科学研究院学报, 2021, 16(5):486-495. |
| WU Chen, GU Songyuan, FANG Shengchao. A structure adaptive online learning algorithm for HBF neural network[J]. Journal of China Academy of Electronic Sciences, 2021, 16 (5): 486-495. | |
| [18] | 周锋, 郑丽霞, 沈烨超, 等. 基于自适应反演的超细金刚线张力控制系统[J]. 中国机械工程, 2021, 32(24): 2995-3000. |
| ZHOU Feng, ZHENG Lixia, SHEN Yechao, et al. Tension control system of superfine diamond wire based on adaptive inversion[J]. China Mechanical Engineering, 2021, 32 (24): 2995-3000. |
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