• Laser & Optoelectronics Progress
  • Vol. 58, Issue 14, 1410020 (2021)
Zebang Pang1, Bibo Lu1, Yanan Gu1、*, Yanmei Zheng1, and Ming Zhang2
Author Affiliations
  • 1College of Computer Science and Technology, Henan Polytechnic University, Jiaozuo, Henan 454000, China
  • 2College of International, Zhengzhou University, Zhengzhou, Henan 450000, China
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    DOI: 10.3788/LOP202158.1410020 Cite this Article Set citation alerts
    Zebang Pang, Bibo Lu, Yanan Gu, Yanmei Zheng, Ming Zhang. Crossing Decomposition Based Tone Mapping Algorithm for High Dynamic Range Image[J]. Laser & Optoelectronics Progress, 2021, 58(14): 1410020 Copy Citation Text show less

    Abstract

    In order to improve the display effect of high dynamic range images, a high dynamic range image tone mapping algorithm based on cross decomposition is proposed. Based on the analysis of image edge filtering, an image decomposition and reconstruction algorithm based on cross decomposition is given, and the reconstruction coefficients are analyzed, and then applied to tone mapping. First, the chromaticity and brightness information are separated in the chromaticity brightness space. Then, the brightness information is filtered by Gaussian filter and bilateral filter respectively to construct a crossover decomposition scheme, a base layer containing large-scale structure information, a detail layer containing texture information, and the edge layer where the brightness varies dramatically are obtained. Finally, by discussing the reconstruction coefficients in detail, the coefficient selection rules in tone mapping are determined, and the brightness range is compressed and reconstructed. The experimental results show that the proposed algorithm can effectively compress the dynamic range of the image while maintaining the color information, enhancing the edge and texture details and other features.
    Zebang Pang, Bibo Lu, Yanan Gu, Yanmei Zheng, Ming Zhang. Crossing Decomposition Based Tone Mapping Algorithm for High Dynamic Range Image[J]. Laser & Optoelectronics Progress, 2021, 58(14): 1410020
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