刘坚

教授

基本情况

姓名:刘坚

系别:机械制造工程系

职称:教授、博士生导师

职务:无锡市锡山区半导体先进制造创新中心副主任

E-mail: liujian@hnu.edu.cn

教育及工作经历

[1]Yang DZ, Zhang J, Liu J*, Suo XY, Chen N, Li R. FLSSnet: Few Labeled Samples Segmentation Network for Coated Fuel Particle Segmentation, Advanced Engineering Informatics, 2024, v 62:102630

[2]Hu ZC, Zhang J, Zhang H, Jiang C, Chen N, Yang ZY, Liu J*. A context-ensembled refinement network for image segmentation of coated fuel particles, Applied Soft Computing Corresponding, 2024, v 162:111835

[3]Chen SF, Yang DZ, Liu J*, Tian Q, Zhou FT. Automatic weld type classification, tacked spot recognition and weld ROI determination for robotic welding based on modified YOLOv5, Robotics and Computer-Integrated Manufacturing, 2023, 81: 102490.

[4]Suo XY, Zhang J, Liu J*, Yang DZ, Zhou FT. Anomaly Detection in Annular Metal Turning Surfaces Based on a Priori Information and a Multi-Scale Self-Referencing Template, Sensors, 2023;23(15).

[5]索鑫宇,刘坚*,张杰,金超群,周飞滔. 2D空间中线扫相机的静态标定方法.激光与光电子学进展. 2023,22:158-168.

[6]陈兵,贺晟,刘坚*,陈圣峰*,路恩会.基于轻量化DeepLab v3+网络的焊缝结构光图像分割.中国激光. 2023,8:49-58.

[7]Hu ZC, Liu J*, Jiang C, Zhang H, Chen N, Yang ZY. A high-precision detection method for coated fuel particles based on improved faster region-based convolutional neural network. Computers in Industry, 2022, 143: 103752.

[8]Wang YT, Liu J*, Li R, Suo XY, Lu EH. MEEMD Decomposition-Prediction-Reconstruction Model of Precipitation Time Series. Sensors. 2022;22(17).

[9]Zhang H, Liu J*, Hu ZC, Chen N, Yang ZY, Shen JH. Design of a deep learning visual system for the thickness measurement of each coating layer of TRISO-coated fuel particles. Measurement. 2022;191:15.

[10]Zhang H, Liu J*. Fuzzy c-means clustering algorithm with deformable spatial information for image segmentation. Multimedia Tools and Applications. 2022;81(8):11239-58.

[11]Wang YT*, Liu J*, Li R, Suo XY, Lu EH. Application of PSO-BPNN-PID Controller in Nutrient Solution EC Precise Control System: Applied Research. Sensors. 2022;22(15):20.

[12]Suo XY, Liu J*, Yang DZ, Meng Y, Chen N. Development of a nuclear fuel rod element positioning measurement equipment based on spacers retrieval network. Measurement. 2022;198:19.

[13]Suo XY, Liu J*, Dong LC, Chen SF, Lu EH , Chen N. A machine vision-based defect detection system for nuclear-fuel rod groove. J Intell Manuf. 2022;33(6):1649-63.

[14]Chen SF, Su CY, Liu J*,Chen B, Tian Q. Flatness Measurement of Platform Screen System Welding Assembly Using Stereo Vision and Grid Pattern Projector. IEEE Sens J. 2022;22(1):948-58.

[15]Chen SF, Liu J*, Chen B, Suo XY. Universal fillet weld joint recognition and positioning for robot welding using structured light. Robotics And Computer-Integrated Manufacturing. 2022;74:12.

[16]Chen SF, Chen B,Liu J*. Accurate and robust sub-pixel refinement for fillet weld joint based on directional maximum projection. Int J Adv Manuf Technol. 2022;120(9-10):5909-20.

[17]陈圣峰*,陈兵,刘坚*.基于边缘方向投影的棋盘格角点亚像素细化.光学学报. 2022;42(08):186-94.

[18]Zhang H, Liu J*, Zou DX, Chen N. Knowledge-based transfer fuzzy clustering with non-local spatial information for surface roughness measurement. Measurement. 2021;174:13.

[19]Ai TC, Liu J*, Qiu HJ, Wang XZ. Removal behavior and performance analysis of defective silicon carbide in nano-grinding. Precis Eng-J Int Soc Precis Eng Nanotechnol. 2021;72:858-69.

[20]Wang YT, Liu J*, Li R, Suo XY, Lu EH. Precipitation forecast of the Wujiang River Basin based on artificial bee colony algorithm and backpropagation neural network. Alex Eng J. 2020;59(3):1473-83.

[21]Chen SF, Liu J*, Zhang XS, Suo XY, Lu EH, Guo JL, et al. Development of positioning system for Nuclear-fuel rod automated assembly. Robotics And Computer-Integrated Manufacturing. 2020;61:15.

学术成果

[1]Yang DZ, Zhang J, Liu J*, Suo XY, Chen N, Li R. FLSSnet: Few Labeled Samples Segmentation Network for Coated Fuel Particle Segmentation, Advanced Engineering Informatics, 2024, v 62:102630

[2]Hu ZC, Zhang J, Zhang H, Jiang C, Chen N, Yang ZY, Liu J*. A context-ensembled refinement network for image segmentation of coated fuel particles, Applied Soft Computing Corresponding, 2024, v 162:111835

[3]Chen SF, Yang DZ, Liu J*, Tian Q, Zhou FT. Automatic weld type classification, tacked spot recognition and weld ROI determination for robotic welding based on modified YOLOv5, Robotics and Computer-Integrated Manufacturing, 2023, 81: 102490.

[4]Suo XY, Zhang J, Liu J*, Yang DZ, Zhou FT. Anomaly Detection in Annular Metal Turning Surfaces Based on a Priori Information and a Multi-Scale Self-Referencing Template, Sensors, 2023;23(15).

[5]索鑫宇,刘坚*,张杰,金超群,周飞滔. 2D空间中线扫相机的静态标定方法.激光与光电子学进展. 2023,22:158-168.

[6]陈兵,贺晟,刘坚*,陈圣峰*,路恩会.基于轻量化DeepLab v3+网络的焊缝结构光图像分割.中国激光. 2023,8:49-58.

[7]Hu ZC, Liu J*, Jiang C, Zhang H, Chen N, Yang ZY. A high-precision detection method for coated fuel particles based on improved faster region-based convolutional neural network. Computers in Industry, 2022, 143: 103752.

[8]Wang YT, Liu J*, Li R, Suo XY, Lu EH. MEEMD Decomposition-Prediction-Reconstruction Model of Precipitation Time Series. Sensors. 2022;22(17).

[9]Zhang H, Liu J*, Hu ZC, Chen N, Yang ZY, Shen JH. Design of a deep learning visual system for the thickness measurement of each coating layer of TRISO-coated fuel particles. Measurement. 2022;191:15.

[10]Zhang H, Liu J*. Fuzzy c-means clustering algorithm with deformable spatial information for image segmentation. Multimedia Tools and Applications. 2022;81(8):11239-58.

[11]Wang YT*, Liu J*, Li R, Suo XY, Lu EH. Application of PSO-BPNN-PID Controller in Nutrient Solution EC Precise Control System: Applied Research. Sensors. 2022;22(15):20.

[12]Suo XY, Liu J*, Yang DZ, Meng Y, Chen N. Development of a nuclear fuel rod element positioning measurement equipment based on spacers retrieval network. Measurement. 2022;198:19.

[13]Suo XY, Liu J*, Dong LC, Chen SF, Lu EH , Chen N. A machine vision-based defect detection system for nuclear-fuel rod groove. J Intell Manuf. 2022;33(6):1649-63.

[14]Chen SF, Su CY, Liu J*,Chen B, Tian Q. Flatness Measurement of Platform Screen System Welding Assembly Using Stereo Vision and Grid Pattern Projector. IEEE Sens J. 2022;22(1):948-58.

[15]Chen SF, Liu J*, Chen B, Suo XY. Universal fillet weld joint recognition and positioning for robot welding using structured light. Robotics And Computer-Integrated Manufacturing. 2022;74:12.

[16]Chen SF, Chen B,Liu J*. Accurate and robust sub-pixel refinement for fillet weld joint based on directional maximum projection. Int J Adv Manuf Technol. 2022;120(9-10):5909-20.

[17]陈圣峰*,陈兵,刘坚*.基于边缘方向投影的棋盘格角点亚像素细化.光学学报. 2022;42(08):186-94.

[18]Zhang H, Liu J*, Zou DX, Chen N. Knowledge-based transfer fuzzy clustering with non-local spatial information for surface roughness measurement. Measurement. 2021;174:13.

[19]Ai TC, Liu J*, Qiu HJ, Wang XZ. Removal behavior and performance analysis of defective silicon carbide in nano-grinding. Precis Eng-J Int Soc Precis Eng Nanotechnol. 2021;72:858-69.

[20]Wang YT, Liu J*, Li R, Suo XY, Lu EH. Precipitation forecast of the Wujiang River Basin based on artificial bee colony algorithm and backpropagation neural network. Alex Eng J. 2020;59(3):1473-83.

[21]Chen SF, Liu J*, Zhang XS, Suo XY, Lu EH, Guo JL, et al. Development of positioning system for Nuclear-fuel rod automated assembly. Robotics And Computer-Integrated Manufacturing. 2020;61:15.

奖励与荣誉

[1]中国产学研合作促进会产学研合作创新成果一等奖, 2024年,排名第一

[2]湖南省技术发明一等奖, 2021年,排名第二

[3]机械工业科学技术奖技术发明一等奖, 2023年,排名第四

[4]湖南省科技进步一等奖, 2019年,排名第六

[5]国家级教学成果二等奖,2022年,排名第十二

[6]湖南省高等教育教学成果二等奖,2019,排名第二

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