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亮度分区自适应对数色调映射算法 被引量:8

Adaptive logarithmic tone mapping arithmetic with luminance regionalization
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摘要 色调映射可将高动态范围图像显示在低动态范围显示器上。常用的对数全局色调映射算法由于压缩范围有限容易引起细节丢失,针对高动态范围图像的显示问题给出一种基于亮度分区的自适应对数色调映射算法。将高动态范围图像由RGB颜色空间转换为XYZ颜色空间以提取图像亮度信息,然后将亮度图分为高、中、低三个照度区域。根据区域亮度属性实施对数色调映射实现动态范围局部压缩,并进行融合处理以消除区域交界处的显示效果。同时采用双边滤波技术进行细节补偿。实验结果表明,此算法能有效压缩动态范围并再现真实场景信息,同时可以保留丰富的细节。 High dynamic range image could display in the traditional low dynamic device with tone mapping technology.Logarithmic tone mapping was widely used but it suffered from the limited range compression ability and the lost of details.This paper proposed an adaptive logarithmic tone mapping algorithm based on luminance partitioning for high dynamic range image display problem.It transformed the input high dynamic range image to XYZ color space and obtained brightness information,then divided into three regions:the bright region,the middle region and the dark region.Then it applied the algorithm to each region according its luminance features.It used a fusion arithmetic for region merge near edges to improve visual effect,and used the bilateral filter to detail compensation.Experimental results show that this algorithm can reproduce the real information,and details are well preserved.
作者 芦碧波 李玉静 王玉琨 郑艳梅 Lu Bibo;Li Yujing;Wang Yukun;Zheng Yanmei(College of Computer Science&Technology,Henan Polytechnic University,Jiaozuo Henan 454000,China)
出处 《计算机应用研究》 CSCD 北大核心 2018年第9期2831-2833,2837,共4页 Application Research of Computers
基金 国家自然科学基金资助项目(U1404103) 河南省教育厅科学技术研究重点项目(14A520029 16A520053) 河南理工大学创新型科研团队项目(T2014-3)
关键词 高动态范围图像 亮度分区 对数映射 色调映射 细节补偿 high dynamic range image luminance regionalization logarithmic mapping tone mapping details compensation
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  • 1Debevec P E, Malik J. Recovering high dynamic range radiance maps from photogralohs[C]//Proc of the ACM SIGGRAPH 2008 Classes. New York: ACM, 2008: 31-40.
  • 2Newsham G R, Cetegen D, Veitch J A. Comparing lighting quality evaluations of real scenes with those from high dynamic range and conventional images [J]. ACM Transactions on Applied Perception, 2010, 7(2): 13-26.
  • 3Wang T H, Fang C W, Sung M C, et al. Photogra phy enhancement based on the fusion of tone and col or mapping in adaptive local region[J]. ]EEE Trans actions on Image Processing, 2010, 19(12) 3089 3105.
  • 4Ward G, Rushmeier H, Piatko C. A visibility mate hing tone reproduction operator for high dynamic range scenes[J]. IEEE Transactions on Visualization and Computer Graphics, 1997, 3(4): 291 306.
  • 5Durand F, Dorsey J. Fast bilateral filtering for the display of high-dynamic range images [C]//Proc of Annu Conf Comput Graph Interact Tech, SIGGRAPH. New York: ACM, 2002: 257-266.
  • 6Fattal R, Lischinski D, Werman M. Gradient domain high dynamic range compression[C]//Proc of the ACM Trans Graphics. New York= ACM, 2002: 249-256.
  • 7Kuang J, Johnson G M, Fairchild M D. iCAM06= a refined image appearance model for HDR image ren- dering[J]. Journal of Visual Communication and Im- age Representation, 2007, 18(5) 406-414.
  • 8Rahman Z, Jobson D J, Woodell G A. Retinex pro- cessing for automatic image enhancement[J]. Jour- nal of Electronic Imaging, 2004, 13(1) : 100-110.
  • 9Meylan I., Susstrunk S. High dynamic range image rendering with a retinex-based adaptive filter [J]. IEEE Trans on Image Processing, 2006, 15(9): 2820-2830.
  • 10Debevec P E. Recovering high dynamic range radi- ance maps from photographs EEB/OL2. [2009 12- 03]. http: // www. pauldehevec, corn/Research/ HDR/.

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