期刊文献+

基于融合细分的纹理图像重构模型 被引量:4

Texture image restoration model based on combined subdivision
在线阅读 下载PDF
导出
摘要 针对分段迭代曲线拟合存在的重建区域轮廓不连续、重建区域尺寸有误差等问题,提出了一种基于融合细分的纹理图像重构模型。首先提取原始图像的分割区域,经过轮廓跟踪与下采样得到区域形状的特征向量;然后利用三重逼近与三重插值统一的融合细分方法,重建区域轮廓曲线;最后合成区域纹理,得到纹理图像重构结果。在多幅自然场景图像上进行实验验证,并给出相应的实验结果和分析。实验结果表明,所提模型正确有效,具有和人类视觉特性相符合的重构结果;所提算法能够减少图像重建时的处理时间,并在图像质量主观评价指标上明显优于多区域图像重建算法。 A texture image restoration model based on combined subdivision was proposed in this paper, which can solve the problems of piecewise iterative curve fitting, especially the discontinuous contour and the size error of reconstruction regions. Firstly, segmentation regions of the original image were extracted. The feature vector of region shape was got by using contour tracing and downsampling. Then the region contour curve was reconstructed by combining ternary approximating and interpolating subdivision scheme. Finally, region texture was synthesized to get texture image restoration result. The proposed model had been tested on many natural images. The experimental results show that the proposed model is valid and the restoration results are consistent with human visual system. The proposed algorithm has lower time complexity of image restoration, and its performance in subjective assessment of the quality of pictures is much better than the multi-region image reconstruction algorithm.
作者 万金梁 王健
出处 《计算机应用》 CSCD 北大核心 2015年第11期3194-3197,3202,共5页 journal of Computer Applications
基金 国家自然科学基金资助项目(61201236) 河南省教育厅科学技术研究重点项目(13A520034 13B510905)
关键词 纹理图像重构 图像分割 融合细分 纹理合成 texture image restoration image segmentation combined subdivision texture synthesis
作者简介 万金梁(1980-),男,河南郑州人,讲师,博士,CCF会员,主要研究方向:数字图像处理、模式识别;电子邮箱wanqq_2006@sohu.com 王健(1981-),男,河南安阳人,讲师,博士,主要研究方向:云计算、智能信息处理。
  • 相关文献

参考文献18

  • 1SIKORA T. Trends and perspectives in image and video coding[J]. Proceedings of the IEEE, 2005, 93(1): 6-17.
  • 2NDJIKI-NYA P, BULL D, WIEGAND T. Perception-oriented video coding based on texture analysis and synthesis[C]// Proceedings of the 16th IEEE International Conference on Image Processing. Piscataway: IEEE, 2009: 2273-2276.
  • 3SUN K, YE L, YANG Y, et al. Image restoration using piecewise iterative curve fitting and texture synthesis[C]// Proceedings of the 4th International Conference on Intelligent Computing. Piscataway: IEEE, 2008: 1056-1063.
  • 4ZUJOVIC J, PAPPAS T N, NEUHOFF D L. Structural texture similarity metrics for image analysis and retrieval[J]. IEEE Transactions on Image Processing, 2013, 22(7): 2545-2558.
  • 5BALLE J, STOJANOVIC A, OHM J R. Models for static and dynamic texture synthesis in image and video compression[J]. Journal of Selected Topics in Signal Processing, 2011, 5(7): 1353-1365.
  • 6ZHANG X, KIM Y J. Efficient texture synthesis using strict Wang Tiles[J]. Graphical Models, 2008, 70(3): 43-56.
  • 7EFROS A A, FREEMAN W T. Image quilting for texture synthesis and transfer[C]// Proceedings of the 28th Annual Conference on Computer Graphics and Interactive Techniques. New York: ACM, 2001: 341-346.
  • 8王继东,庞明勇,赵瑞斌.旋转的Wang Tiles纹理合成算法[J].中国图象图形学报,2013,18(1):49-54. 被引量:10
  • 9GAO C, ZHOU J, HU J, et al. Edge detection of colour image based on quaternion fractional differential[J]. IET Image Processing, 2011, 5(3): 261-272.
  • 10ADAMEK T, O'CONNOR N. Efficient contour-based shape representation and matching[C]// Proceedings of the 5th ACM SIGMM International Workshop on Multimedia Information Retrieval. New York: ACM, 2003: 138-143.

二级参考文献58

  • 1薛峰,张佑生,江巨浪,胡敏,吴信东,汪荣贵.Real-Time Texture Synthesis Using s-Tile Set[J].Journal of Computer Science & Technology,2007,22(4):590-596. 被引量:6
  • 2Efros A, Lung T K. Texlure synlhesls by non-parametric sam- Idlng [ C] // Proceedings of IEEE Internalhmal Confererence on Con,puler Vision. Corfu, Greece: IEI':E Computer Society, 1999: 1033- 1038.
  • 3Wei L Y, Levoy M. Fast texture synthesis using tree- structured vector quantization [ C ] // Proceedings of ACM SIGGRAPH. New Orleans, Louisiana, USA: ACM Press, 2000: 479-488.
  • 4Ashikhmin M. Synthesizing natural textures [ C ] // The ACM Symposium on Interactive 3D Graphics. Chapel Hill North Caro- lina. USA: ACM Press, 2001 : 217-226.
  • 5Tong X, Zhang J, Liu L, et al. Synthesis of bidirectional texture functions on arbitrary surfaces [ C ] // Proceedings of ACM S1G- GRAPH. San Antonio, Texas, USA: ACM Press, 2002: 665-672.
  • 6Efros A, Freeman W T. Image quilting for texture synthesis and transfer [ C] //Proceedings of ACM SIGGRAPH. Los Angeles, California, USA: ACM Press, 2001: 341-347.
  • 7Kwatra V, Schodl A, Essa I, et al. Graphcut textures: image and video synthesis using graph cuts [ J]. ACM Transactions on Gra- phics, 2003, 22 (3) : 277-286.
  • 8Cohen M F, Shade J, Hiller S, et al. Wang tiles for image and texture generation [ J ]. ACM Transactions on Graphics, 2003, 22 (3) : 287-294.
  • 9Ng T Y, Wen C H, Tan T S, et al. Generating an to-tile set for texture synthesis [ C ] // Proceedings of Computer Graphics In- ternational. New York, USA: IEEE Computer Society, 2005 : 177-184.
  • 10Zhang X, Kim Y J. Efficient texture synthesis using strict Wang Tiles [J]. Graphical Models, 2008, 70(3): 43-56.

共引文献21

同被引文献34

引证文献4

二级引证文献18

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部