计算机科学 ›› 2021, Vol. 48 ›› Issue (11A): 386-390.doi: 10.11896/jsjkx.210200053

• 图像处理& 多媒体技术 • 上一篇    下一篇

基于光照叠加的颜色恒常计算方法

冯一凡, 赵雪青, 师昕, 杨坤   

  1. 西安工程大学计算机科学学院 西安710048
  • 出版日期:2021-11-10 发布日期:2021-11-12
  • 通讯作者: 赵雪青(zhaoxueqing@xpu.edu.cn)
  • 作者简介:fengyifan@stu.xpu.edu.cn
  • 基金资助:
    国家自然科学基金(61806160)

Light Superposition-based Color Constancy Computational Method

FENG Yi-fan, ZHAO Xue-qing, SHI Xin, YANG Kun   

  1. School of Computer Science,Xi'an Polytechnic University,Xi'an 710048,China
  • Online:2021-11-10 Published:2021-11-12
  • About author:FENG Yi-fan,born in 1996,postgraduate.Her main research interests include image processing and color computational.
    ZHAO Xue-qing,born in 1985,Ph.D,associate professor.Her main research interests include image processing and brain-like computation.
  • Supported by:
    National Natural Science Foundation of China(61806160).

摘要: 颜色恒常性是人类视觉系统对外界视觉刺激中色彩感知的一种心理倾向,人类视觉的这种认知功能能够自适应地忽略外界光照变化,具有稳定的颜色感知能力。受到人类视觉系统对颜色感知的启发,针对如何有效消除外界光照对成像质量的影响,还原物理场景真实颜色并提供稳定的颜色特征这一问题,文中提出了一种基于光照叠加的颜色恒常计算方法,旨在有效消除外界光照的光谱成分变化对物体颜色的影响。首先,提出了MAX-MEAN方法对场景中的光照进行估计(简称MM估计),即通过场景中所有物体表面的平均反射和最大反射来估计场景中的光照;然后,基于MM估计提出了光照叠加的颜色恒常计算方法,得到最终的无色偏图像,并在公开的数据集SFU Gray-ball上包含11 346幅室内室外场景图像进行仿真验证。实验结果表明,文中提出的光照叠加颜色恒常计算方法能够有效地估计光照信息并实现无色偏图像的计算。

关键词: 光照估计, 视觉系统, 图像处理, 颜色恒常

Abstract: Color constancy is a psychological tendency of the human visual system the color perception of external visual stimuli.This cognitive function of human vision can adaptively ignore external changes,and perceive colors steadily.Inspired by the color perception of the human visual system,considering the capability that computer vision tasks eliminate the effect of external light automatically,it is of important research significance to restore the true color information of objects and provide stable color characteristics.This paper proposes a light superposition-based color constancy computational method,which can effectively eliminate the influence of changes in the spectral composition of external light on the color of objects.First of all,the MAX-MEAN method is proposed to estimate the illumination in the scene (MM estimation,in short),that is,estimating the illumination in the achromatic scene by the average reflection and maximum reflection of all object surfaces in the scene.Then,based on the MM estimation,the color constant calculation method of light superposition is used to obtain the final color-free image.11346 indoor and outdoor scene images in the SFU Gray-ball public data set are used for simulation and validation.The experimental results show that the illumination superposition color constant calculation method proposed in this paper can effectively estimate the illumination information,perform the color constancy calculation,and get the image without color constancy.

Key words: Color constancy, Image processing, Light estimation, Visual system

中图分类号: 

  • TP391
[1]MEIER B P,D'AGOSTINO P R,ELLIOT A J,et al.Color in Context:Psychological Context Moderates the Influence of Red on Approach- and Avoidance-Motivated Behavior[J].Plos One,2012,7(7):e40333.
[2]WALLACE,ALFRED R.The colour sense:its origin and development,an essay in comparative psychology[J].Nature,2012,19(492):501-505.
[3]HOLCOMB E,ALEX O,CAVANAG H,et al.Early bindingof feature pairs for visual perception[J].Nature Neuroscience,2001,4(2):127-128.
[4]TANG Z,LIU H Z,YUAN J Z.Advances Research on ColorConstancy Computation under Single Illuminan[J].Computer Science,2016,43(11):12-18.
[5]GAO S B,ZHANG M,LI C Y,et al.Improving color constancy by discounting the variation of camera spectral sensitivity[J].Journal of the Optical Society of America A Optics Image Science & Vision,2017,34(8):1448-1462.
[6]PAN WQ,TU J J,GAN Z L,et al.Efficient Retinex-Based Low-Light Image Enhancement Through Adaptive Reflectance Estimation and LIPS Postprocessing[J].Computer Science,2019,46(8):327-331.
[7]CHENG Y,JIAO L,TONG Y,et al.Directional IlluminationEstimation Sets and Multi-LevelMatching Metric for Illumination-Robust Face Recognition[J].IEEE Access,2017,5:25835-25845.
[8]HU Y,WANG B,LIN S.FC4:Fully Convolutional Color Constancy with Confidence-Weighted Pooling[C]//2017 IEEE Conference on Computer Vision and Pattern Recognition (CVPR).IEEE,2017:330-339.
[9]XIONG W,FUNT B.Estimating Illumination Chromaticity Via Support Vector Regression[J].Journal of Imaging Science and Technology,2006,50(4):341-348.
[10]BOUGHIDA M,BOUBEKEUR T.Bayesian Collaborative De-noising for Monte Carlo Rendering[J].Computer Graphics Forum,2017,36(4):137-153.
[11]GIJSENIJ A,GEVERS T,WEIJER J V D.Generalized Gamut Mapping using Image Derivative Structures for Color Constancy[J].International Journal of Computer Vision,2010,86(2):127-139.
[12]CHSKRABARTI A.Color Constancy with Spatio-Spectral Statistics[J].IEEE Transactions on Pattern Analysis & Machine Intelligence,2012,34(8):1509-1519.
[13]OH S W,KIM S J.Approaching the Computational Color Constancy as a Classification Problem through Deep Learning[J].Pattern Recognition,2017,61:405-416.
[14]KAWAMURA H,YONEMURA S,OHYA J,et al.Gray-world-assumption-based illuminant color estimation using color gamuts with high and low chroma[C]//Proceedings of SPIE- The International Society for Optical Engineering.2013:221-237.
[15]LISANI J L,PETRO A B,PROVENZI E,et al.A generalized white-patch model for fast color cast detection in natural images[J].Electronic Imaging,2016,13:44-50.
[16]PROVENZI E,GATTA C,FIERRO M,et al.A Spatially Variant White-Patch and Gray-World Method for Color Image Enhancement Driven by Local Contrast[J].IEEE Transactions on Pattern Analysis & Machine Intelligence,2008,30(10):1757-70.
[17]CEPEDA-NEGRETE J,SANCHEZ-YANEZ R E.Gray-WorldAssumption on Perceptual Color Spaces[J].Lecture Notes in Computer Science,2013,8333:493-504.
[18]CHENG D,PRASAD D K,BROWN M S.Illuminant estimation for color constancy:why spatial-domain methods work and the role of the color distribution[J].Journal of the Optical Society of America A Optics Image Science & Vision,2014,31(5):1049-1058.
[19]JOZE H R V,DREW M S,FINLAYSON G D,et al.The role of bright pixels in illumination estimation[J].Medicinski Pregled,2012,6(5):172-204.
[20]DREW M S,JOZE H R V,FINLAYSON G D.The Zeta-image,and Information-Theoretic Illuminant Estimation[J].Computer Vision and Image Understanding,2014,127(oct.):1-13.
[21]YANG K F,GAO S B,LI Y J.Efficient illuminant estimation for color constancy using Gray-pixels[C]//2015 IEEE Conference on Computer Vision and Pattern Recognition (CVPR).IEEE,2015.
[22]CIUREA F,FUNT B.A Large Image Database for Color Constancy Research[C]//Color and Imaging Conference.2003.
[23]CRISTINA,MEREGALLI,ANNALISA,et al.Bortezomib-induced painful neuropathy in rats:A behavioral,neurophysiological and pathological study in rats[J].European Journal of Pain,2010,14(4):343-350.
[24]SMITH J A,LIN T L,RANSON K J.The Lambertian Assumption and Landsat Data[J].Photogrammetric Engineering & Remote Sensing,1980,46(9):1183-1189.
[25]CHEN W W,WANG W X,WANG K,et al.Lane departure warning systems and lane line detection methods based on image processing and semantic segmentation-a review[J].Journal of Traffic and Transportation Engineering (English Edition),2020,7(6):748-774.
[26]BUCHSBAUM G.A spatial processor model for object colorperception[J].Journal of the Franklin Institute,1980,310(1):337-350.
[27]GIJSENIJ A,GEVERS T,WEIJER J V D.Computational Color Constancy:Survey and Experiments[J].IEEE Transactions on Image Processing,2011,20(9):2475-2489.
[1] 郭拯危, 付泽文, 李宁, 白澜.
高分辨率斜视聚束SAR回波仿真加速算法研究
Study on Acceleration Algorithm for Raw Data Simulation of High Resolution Squint Spotlight SAR
计算机科学, 2022, 49(8): 178-183. https://doi.org/10.11896/jsjkx.210600066
[2] 刘伟业, 鲁慧民, 李玉鹏, 马宁.
指静脉识别技术研究综述
Survey on Finger Vein Recognition Research
计算机科学, 2022, 49(6A): 1-11. https://doi.org/10.11896/jsjkx.210400056
[3] 来腾飞, 周海洋, 余飞鸿.
视频流的实时景深延拓算法
Real-time Extend Depth of Field Algorithm for Video Processing
计算机科学, 2022, 49(6A): 314-318. https://doi.org/10.11896/jsjkx.201100187
[4] 鹿婷, 侯国家, 潘振宽, 王国栋.
基于HVS的水下图像质量评价
Underwater Image Quality Assessment Based on HVS
计算机科学, 2022, 49(5): 98-104. https://doi.org/10.11896/jsjkx.210100224
[5] 詹瑞, 雷印杰, 陈训敏, 叶书函.
基于多重差异特征网络的街景变化检测
Street Scene Change Detection Based on Multiple Difference Features Network
计算机科学, 2021, 48(2): 142-147. https://doi.org/10.11896/jsjkx.200500158
[6] 张育龙, 王强, 陈明康, 孙静涛.
图像去雨算法在云物联网应用中的研究综述
Survey of Intelligent Rain Removal Algorithms for Cloud-IoT Systems
计算机科学, 2021, 48(12): 231-242. https://doi.org/10.11896/jsjkx.201000055
[7] 姚楠, 张征.
基于三维图像的疤痕面积计算
Scar Area Calculation Based on 3D Image
计算机科学, 2021, 48(11A): 308-313. https://doi.org/10.11896/jsjkx.201100044
[8] 宋一言, 唐东林, 吴续龙, 周立, 秦北轩.
改进穿线法与HOG+SVM结合的数码管图像读数研究
Study on Digital Tube Image Reading Combining Improved Threading Method with HOG+SVM Method
计算机科学, 2021, 48(11A): 396-399. https://doi.org/10.11896/jsjkx.210100123
[9] 谢海平, 李高源, 杨海涛, 赵洪利.
超分辨率重构遥感图像分类研究
Classification Research of Remote Sensing Image Based on Super Resolution Reconstruction
计算机科学, 2021, 48(11A): 424-428. https://doi.org/10.11896/jsjkx.210300132
[10] 宋娅菲, 谌雨章, 沈君凤, 曾张帆.
基于改进残差网络的水下图像重建方法
Underwater Image Reconstruction Based on Improved Residual Network
计算机科学, 2020, 47(6A): 500-504. https://doi.org/10.11896/JsJkx.200100084
[11] 蔡玉鑫, 汤志伟, 赵博, 杨明, 吴禹非.
基于嵌入式多核DSP的加速软件系统
Accelerated Software System Based on Embedded Multicore DSP
计算机科学, 2020, 47(6A): 622-625. https://doi.org/10.11896/JsJkx.190400079
[12] 马虹.
基于5G的视觉辅助BDS移动机器人融合定位算法
Fusion Localization Algorithm of Visual Aided BDS Mobile Robot Based on 5G
计算机科学, 2020, 47(6A): 631-633. https://doi.org/10.11896/JsJkx.190400156
[13] 苗益, 赵增顺, 杨雨露, 徐宁, 杨皓然, 孙骞.
图像描述技术综述
Survey of Image Captioning Methods
计算机科学, 2020, 47(12): 149-160. https://doi.org/10.11896/jsjkx.200500039
[14] 凌晨, 张鑫彤, 马雷.
基于Mask R-CNN算法的遥感图像处理技术及其应用
Remote Sensing Image Processing Technology and Its Application Based on Mask R-CNN Algorithms
计算机科学, 2020, 47(10): 151-160. https://doi.org/10.11896/jsjkx.190900119
[15] 郭兰英, 韩睿之, 程鑫.
基于可变形卷积神经网络的数字仪表识别方法
Digital Instrument Identification Method Based on Deformable Convolutional Neural Network
计算机科学, 2020, 47(10): 187-193. https://doi.org/10.11896/jsjkx.191000035
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!