姓名:鐘躍崎

職稱:教授

辦公電話:67792703

通訊地址:松江區人民北路2999号

電子郵件:zhyq@dhu.edu.cn


  • 主要經曆
  • 教學内容
  • 研究成果
  • 獲獎榮譽
  • 更多信息
  • 主要經曆

    教育背景

    1990.9-1994.7 西北紡織工學院 學士 (毛紡織工程)

    1994.9-1998.2 西北紡織工學院 碩士 (紡織材料)

    1998.2-2001.5 402永利 博士(紡織材料與紡織品設計)

    2001.11-2005.8 University of Texas at Austin 博士後(數字化紡織服裝)


    工作經曆

    2005.10~至今 402永利


  • 教學内容

    研究方向

    1.虛拟織物,服裝及人體的三維建模與仿真;

    2.基于物理建模的織物與服裝的虛拟現實及增強現實技術;

    3.面向電子商務環境的虛拟人與虛拟服裝關鍵技術;

    4.深度學習在紡織服裝行業的賦能範式;


    教學課程

    本科生:專業外語;電子商務;電子商務實習

    研究生:計算機仿真與建模


  • 研究成果

    科研項目:

    主持多項國家級及省部級科研項目。

    1.基于最少量輸入的高精度虛拟服裝懸垂空間的重構方法(批準号:61572124)研究期限:2016.1-2019.12

    2.基于模塊化自适應體型形态仿真試衣機器人的開發(橫向課題,在研,主持)

    3.羊絨羊毛纖維數字化識别系統開發(橫向課題,在研,主持)

    4.三維人體/服裝掃描儀開發(橫向課題,在研,主持)

    5.基于穩态變遷的虛拟服裝幾何與動力學模型(上海市自然科學基金)

    6.基于最少量圖像的三維着裝重建(國家自然科學基金委員會,主持)

    7.面向大型電在商務環境虛拟試衣的多态仿真與應用(上海市科學技術委員會,主持)

    8.基于物理建模的三維服裝原型自動生成算法研究(教育部,主持)

    9.多重多異虛拟服裝的幾何與動力學模型(教育部,主持)

    10.高精度多重多異虛拟服裝的幾何與動力學模型(國家自然科學基金委員會,主持);

    11.三維掃描人體及服裝空間的“染色體”表征與重用(中央高校自由探索項目,主持);

    12.基于二維輪廓線的人體與服裝三維重構技術(中央高校自由探索項目,主持)

    13.面向虛拟設計與制造的高精度虛拟服裝成型與多态應用(中央高校重點項目, 主持);


    近三年代表性論文

    1.Naveed, Tayyab; Hussain, Azmat; Zhong, Yueqi. Reducing fabric wastage through image projected virtual marker (IPVM)[J]. Textile Research Journal. 88(14): 1571-1580, 2018.

    2.Zhong, Yueqi; Lu, Kai; Tian, Jun. Wool/cashmere identification based on projection curves[J]. Textile Research Journal. 87(14):1730-1741, 2017.

    3.Wu, Ge; Li, Duan; Hu, Pengpeng. Zhong, Yueqi; Pan Ning. Foot shape prediction using elliptical Fourier analysis[J]. Textile Research Journal. 88(9): 1026-1037, 2018.

    4.Yue-qi Zhong. A Case Study on Master Students with the Textile Background in Tackling Fiber Identification Problems[C]Proceedings of the 2018 International Conference on Education Reform and Management Science (ERMS 2018).

    5.Hu, PengPeng; Li, Duan; Wu, Ge. Personalized 3D mannequin reconstruction based on 3D scanning[J]. International Journal of Clothing science and Technology. 30(02):159-174, 2018.

    6.Wu, Ge; Li, Duan; Hu, Pengpeng. Automatic foot scanning and measurement based on multiple RGB-depth cameras[J]. Textile Research Journal. 88(2):167-181, 2018.

    7.Hu, PengPeng; Komura, Taku; Li, Duan. 3D textile reconstruction based on KinectFusion and synthesized texture[J]. International Journal of Clothing science and Technology. 29(6):793-806, 2017.

    8.Zhong, Yueqi; Lu, Kai; Tian, Jun. Wool/cashmere identification based on projection curves[J]. Textile Research Journal. 87(14): 1730-1741, 2017.

    9.K LuY ZhongD LiX ChaiH Xie. Cashmere/wool identification based on bag-of-words and spatial pyramid match[J]. Textile Research Journal. 88(21): 2435-2444, 2018.

    10.P HuT KomuraD Holden,Y Zhong. Scanning and animating characters dressed in multiple-layer garments[J]. Visual Computer. 33(6): 961-969,2017.

    11.G WuD LiY ZhongPP Hu. A study on improving the calibration of body scanner built on multiple RGB-Depth cameras[J].  International Journal of Clothing Science and Technology 29(3) :314-329, 2017.

    12.H XieD LiZ YuY ZhongT Naveed. Automatic Clustering and Prediction of Female Breast Contours[C]International Conference on Computational Science and Its Applications ICCSA 2017: Computational Science and Its Applications – ICCSA 2017. pp:30-42.

    13.P HuT KomuraD LiG WuY Zhong. 3D High-quality Textile Reconstruction with Synthesized Texture[C] International conference on computation science (ICCS 2017), pp: 355-364.

    14.Li, Duan; Wu, Ge; Hu, Peng-Peng. 3D Garment Redressing Based on Virtual Tailoring[C]10th Textile Bioengineering and Informatics Symposium (TBIS 2017), pp: 431-437.

    15.G Wu, Z Yu, A Hussain,Y Zhong. 3D Drape Reconstruction and Parameterization Based on Smartphone Video and Elliptical Fourier Analysis[C] Procedia Computer Science.108:1552-1561,2017.

    16.RG FengD Li,Y Zhong. The development and application of 3D body scanning device based on KinectFusion method[C] Mechanics and Mechatronics (ICMM2015), pp:674-682.

    17.Han R, Zhong Y, Wu G. Calculating bending stiffness of woven fabrics based on image analysis[C] International Conference on Mechanics and Mechatronics(2015). pp:113-119.

    18.Zhang, Hui-Yao, Li, Duan,Xie, Hao-Yang,et al. Elliptic Fourier Analysis on Female Chest Contour[C] 10th Textile Bioengineering and Informatics Symposium(2017),pp: 470-476.

    19.R HanY ZhongG Wu. Calculating bending stiffness of woven fabrics based on image analysis[C] Mechanics and Mechatronics (ICMM2015), pp:113-119.

    20.Han R, Kun H U, Ge W U, et al. Calculation on bending stiffness of woven fabrics by image processing method[J]. Journal of Textile Research, 37(3):41-46,2016. 

    21.Yuan S L, Lu K, Zhong Y Q. Identification of Wool and Cashmere Based on Texture Analysis[C] Key Engineering Materials, 671:385-390, 2015,

    22.Wu G, Zhong Y Q, Yu W D. Evaluating Tensile Properties of Wool Fibers Based on the Waveform of Acoustic Emission[J]. Key Engineering Materials, 671:391-396, 2016.

    23.Wu G, Zhong YQ, Yu WD, Identifying the breaks of wool fibers based on the waveform analysis of acoustic emission. Textile Research Journal, 85(13): 1319-1330, 2015.

    24.Wu G, Zhong YQ, Yu WD. Evaluating tensile properties of wool fibers based on the waveform of acoustic emission. Key Engineering Materials. 67(11): 391-396, 2016.

    25.Xiao WM, Zhong YQ, Wu G.  The optimal resolution of garment 3D model based on geometric deviation and curvature analysis. Proceedings of the First International Conference on Information Sciences. 126: 272-276, 2015.

    26.Yuan SL, Lu K, Zhong YQ.  Identification of wool and cashmere based on texture analysis. Key Engineering Materials. 671: 385-390, 2015.

    27.Hui K, Zhong YQ, 3D Foot Reconstruction from image sequence. Textile Bioengineering and Informatics Symposium Proceedings. 133-137, 2015.

    28.Xiao W, Zhong Y, Wu G, et al. The optimal resolution of garment 3D model based on geometric deviation and curvature analysis[J]. Advances in Intelligent Systems Research, 126: 272-276, 2015.

    29.Han R, Zhong Y, Wu G. Calculating bending stiffness of woven fabrics based on image analysis[C], International Conference on Mechanics and Mechatronics. 113-119, 2015.

    30.Feng R G, Li D, Zhong Y. The development and application of 3D body scanning device based on Kinect Fusion method[C]International Conference on Mechanics and Mechatronics. 674-682, 2015.

    31.Hu P, Zhong Y, Wu G, et al. Two-step registration in 3D human body scanning based on multiple RGB-D sensors[J]. Journal of Fiber Bioengineering and Informatics, 8(4): 705-712, 2015.

    32.Jiang J F, Dai C, Liu H Y, et al. An Approach of Clothes Appearance Comparison between True and Virtual Sewing. Key Engineering Materials. 671: 460-465, 2016.


    專利專著

    l《數字化服裝設計與管理》,十五國家級規劃教材,參編,中國紡織出版社,2006.5, ISBN 7-5064-3863-1;

    lComputer technology for textiles and apparel》,參編,Woodhead Textiles Series No.121, WOODHEAD PUBLISHING LIMITED, 2010, ISBN 1-84569-729-4

    授權發明專利4項,申報發明專利12項。

    l三維虛拟服裝快速姿态同步方法(ZL 200910194537.5

    l三維人體模型的全自動測量方法(ZL 200910194538.X

    l網絡環境中三維服裝的合身性評價方法(ZL 200910056230.9

    l面向大型電子商務環境虛拟服裝的仿真方法 ZL200910055984.2


  • 獲獎榮譽

    獲獎榮譽

    2013年:面向電子商務環境的虛拟試衣關鍵技術,上海市人民政府,上海市技術發明二等獎(第一完成人)

    2013年:面向電子商務環境的虛拟試衣關鍵技術及應用,中國紡織工業聯合會,科學技術三等獎(第一完成人)

    2013年:面向大型電子商務環境虛拟服裝的仿真方法,香港桑麻科技二等獎(第一完成人)

    2011年:上海教育工會“管理新星”提名獎

    2008-2011年任紡織材料與紡織品設計系主任期間帶領全系獲得“全國工人先鋒号”“上海市勞動模範集體”及申報成功“國家級教學團隊”

    2008年:PPT高附加值産品的關鍵技術,上海市科技進步二等獎(第6完成人)


  • 其他信息

    社會任職

    Journal of Fiber Bioengineering and Informatics編委

    402永利知聯會常務副會長

    Textile Research Journal, Journal of Industrial Textiles, Computer Aided Design, International Journal of Clothing Science and Technology,紡織學報,絲綢學報,402永利學報(自然科學版),浙江理工大學學報,浙江大學學報(工學版)審稿人


    國際交流

    美國德州大學人類生态學系博士後

    美國加州大學戴維斯分校紡織系高級訪問學者



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