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Biological Gain Control for High Dynamic Range Compression

机译:高增益范围压缩的生物增益控制

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摘要

The visual system has the ability to see and obtain detailed information from a highly dynamic range of a scene. For example, a person can observe items in one range by observing the inside of a dim room as well as outside through a window. An algorithm for high dynamic range compression that can be applied for still and video images is presented. This algorithm is based on a biological model that is also suggested for wide dynamic range and lightness constancy. It succeeded in automatically compressing the dynamic range of images to a 'human vision appearance' (as is commonly required in cameras and displays) while maintaining and even improving contrast. The biological basis is expressed as retinal mechanisms of adaptation (gain control), both 'local', and 'remote',that enable also video image applications by taking into account the dynamics of human adaptation mechanisms. The results indicate the significant and robust contribution of adaptation mechanisms in image appearance, and have been found appropriate for next generation High dynamic range cameras (CMOS based).
机译:视觉系统具有从场景的高度动态范围中查看和获取详细信息的能力。例如,一个人可以通过观察昏暗房间的内部和透过窗户的外部来观察一个范围内的物品。提出了一种可应用于静态和视频图像的高动态范围压缩算法。此算法基于生物学模型,该生物学模型还建议用于宽动态范围和亮度恒定性。它成功地将图像的动态范围自动压缩为“人的视觉外观”(这在相机和显示器中通常是必需的),同时保持甚至改善了对比度。生物学基础表示为“本地”和“远程”的视网膜适应(增益控制)机制,通过考虑人类适应机制的动态性,也可以实现视频图像应用。结果表明,适应机制在图像外观方面具有显着而强大的作用,并且已发现适用于下一代高动态范围相机(基于CMOS)。

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