Journal of Textile Research ›› 2018, Vol. 39 ›› Issue (11): 163-167.doi: 10.13475/j.fzxb.20180100205

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Surface generation algorithm of 3-D garment based on semantic analysis

    

  • Received:2018-01-02 Revised:2018-08-06 Online:2018-11-15 Published:2018-11-19

Abstract:

In order to further improve the efficiency of 3-D garment design, a 3-D garment surface generation algorithm based on semantic analysis was proposed. Firstly, the geometric interaction semantics based on grid mode was analyzed, hten the 3-D garment surface generation algorithm and semantic analysis model was studied, and finally the feasibility of the proposed algorithm was verified by comparative experiments. The results indicate that the geometric semantic interaction models can be established to draft drawing and mapping grid map using the using the approximation fitting algorithm to fit the complete sketch line, and through smoothing, denoising, mesh stitching method to form 3-D garment surface integrity. In addition to the selected geometric model method, constraint model method and semantic analysis method comparative experiments, experiments, experimental results show that the peoposed algorithm efficiency is 45% higher than other mainstream algorithms, and the fitting accuracy is higher by nearly 15%, more suitable for the reconstruction of 3-D garment surface,  which verifies the feasibility of the proposed algorithm.

Key words: garment design, semantic analysis model, garment surface, grid fitting, reconstruction algorithm

[1] IGARASHI T, et al. Teddy: a sketching interface for 3d freeform design [C]// SIGGRAPH’99, New York,USA, 1999: 409~416.
[2] HUGHES J F, et al. SmoothSketch: 3D free-form shapes from complex sketches[J]. Acm Transactions on Graphics , 2006 , 25 (3) :589~598.
[3] 王卫,尹建峰,孙正兴. 一种手绘草图的快速参数化方法 [J]. 计算机科学,2006,33(1):264-268
WANG Wei, YIN Jian, SUN ZhengXing. A Fast Parametric Fitting Approach to Freehand Sketch[J]. Computer Science, 2006,33(1):264~268.
[4] 韩红波 ,王静秋 ,牛金玲. 一种基于手绘草图的三维建模方法研究[J]. 计算机应用与软件 , 2010 , 27 (1) :215~217
Han HongBo, Wang JingQiu, Niu JinLing. Research on a Three-Dimensional Modeling Method based on Freehand Sketch[J]. Computer Application and Software, 2010 , 27 (1) :215~217.
[5] WANG C C L, WANG Y, et al. Feature based 3D garment design through 2D sketches [J]. Computer-Aided Design, 2003,35(7):659~672
[6] TURQUIN E, WITHER J, et al. A sketch-based interface for clothing virtual characters [J]. IEEE Computer Graphics and Applications, 2007, 27(1):72~81.
[7] 刘雁 , 耿兆丰 , 刘晓刚. 智能服装设计系统研究[J]. 东华大学学报(自然科学版), 2003,29(2):67~70.
LIU Yan, et al. Research on Garment Pattern Intelligent Design System[J]. Journal of Donghua University Natural Science, 2003,29(2):67~70.
[8] 李继云 , 耿兆丰. 智能服装款式设计系统体系结构研究[J]. 东华大学学报(自然科学版), 2003 , 29 (1) :5~8.
LI JiYun, et al. A Study on the System Architecture of Intelligent Fashion Design System[J]. Journal of Donghua University Natural Science, 2003 , 29 (1) :5~8.
[9] SUN X, GONG D.Evolutionary optimization of hybrid indices for fashion design [C]// 2008. Yantai, Shandong, China: Inst. Of Elec. And Elec, Eng. Computer Society, 2008: 194~198.
[10] OGATA Y, ONISAWA T. Interactive clothes design support system [C]// Neural Information Processing- 14th International Conference, Kitakyusu, Japan,2008:657~665.
[11] GONG D W, HAO G S, et al. Interactive genetic algorithm with multi-population adaptive hierarchy and their application in fashion design [J]. Applied Mathematics and Computation, 2007,185(2):1098~1108.
[12] 关承恩 , 戴国忠 等. 家装CAD中基于几何约束的交互语义分析算法[J]. 《图学学报》 , 2003 , 24 (3) :21~30.
GUAN ChengEn, DAI GuoZhong, et al. Geometric Constraint-Based Interactive Semantic Analysis Algorithm in Home Decoration System [J]. Journal of Engineering Graphics, 2003 , 24 (3) :21~30.
[13] 张国栋,赵其杰等. 基于认知语义的视线跟踪人机交互任务设计[J]. 人类工效学, 2012 , 18 (3) :58~62.
ZHANG GuoDong, Zhao QiJie, et al. Design of Human Machine Interactive Task Based on Cognitive Semantics for Sight Tracking [J]. Chinese Journal of Ergonomics, 2012 , 18 (3) :58~62..
[14] 常君明,颜彬. 数字通信原理[M]. 北京:清华大学出版社,2010.
CHANG JunMing, YAN Bin. Digital Communication Principle[M]. Tsinghua University Press, Beijing, 2010.
[15] 方贵盛. 基于草绘的服装衣片设计[J]. 纺织学报,2013,34(5):133~139.
FANG GuiSheng. Sketch-based garment pattern design[J]. Journal of Textile Research. 2013,34(5):133~139.
[16] 师文 , 朱学芳. 基于轮廓重构和特征点弦长的图像检索[J]. 软件学报,2014, 25(7):1557~1569.
SHI Wen, ZHU XueFang. Image Retrieval Based on Contour Reconstruction and Feature Point Chord Length[J]. Journal of Software, 2014, 25(7):1557~1569.
[17] 李雪莲 , 孙尧 , 莫宏伟. 基于最小二乘法的冗余信息数据融合算法实现[J].计算机工程与应用 , 2009 , 45 (15) :34~38.
LI XueLian , SUN Yao, MO HongWei. Research on data fusion algorithm of redundancy information based on least square method[J]. Computer Engineering and Applications, 2009 , 45 (15) :34~38.
[18] 黄俊歆 ,王李管 等. 改进的露天境界优化几何约束模型及其应用[J]. 重庆大学学报:自然科学版 , 2010 , 33 (12) :78~83.
HUANG JunXin, et al.The improved geometrical constraint model of open-pit mine boundary optimum and its application[J]. Journal of ChongQing University(Natural Science Edition), 2010 , 33 (12) :78~83.
[19] 张莉莉 , 史建红 , 乔建国. 基于代入法的约束线性模型的参数估计[J]. 山西师范大学学报(自然科学版) , 2006 , 20 (3) :4~7.
ZHANG LiLi, et al. Estimations of Parameters Basing on the Method of Substitution in Constrained Linear Model[J]. Journal of ShanXi Normal University (Natural Science Edition), 2006 , 20 (3) :4~7.
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[1] . [J]. JOURNAL OF TEXTILE RESEARCH, 2004, 25(03): 72 -73 .
[2] . [J]. JOURNAL OF TEXTILE RESEARCH, 1982, 3(10): 44 -45 .
[3] . [J]. JOURNAL OF TEXTILE RESEARCH, 1991, 12(12): 20 .
[4] LIN Zhigui; FANG Wei; HUANG Weizhi. Analysis of fabric drape evaluation based on support vector machine[J]. JOURNAL OF TEXTILE RESEARCH, 2009, 30(01): 51 -54 .
[5] JI Yingchao;JIANG Fengqin;ZHAO Yuping. Selection of fiber-type hemp varieties[J]. JOURNAL OF TEXTILE RESEARCH, 2010, 31(12): 19 -22 .
[6] . [J]. JOURNAL OF TEXTILE RESEARCH, 1986, 7(06): 58 -60 .
[7] MA Shi-ping. 基于MATLAB的六连杆打纬机构优化设计及仿真[J]. JOURNAL OF TEXTILE RESEARCH, 2006, 27(3): 40 -42 .
[8] . [J]. JOURNAL OF TEXTILE RESEARCH, 1984, 5(08): 11 -15 .
[9] . [J]. JOURNAL OF TEXTILE RESEARCH, 1984, 5(09): 30 -32 .
[10] . [J]. JOURNAL OF TEXTILE RESEARCH, 1996, 17(04): 40 -43 .