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Local adaptive contrast enhancement for color images

机译:彩色图像本地自适应对比度增强

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A camera or display usually has a smaller dynamic range than the human eye. For this reason, objects that can be detected by the naked eye may not be visible in recorded images. Lighting is here an important factor; improper local lighting impairs visibility of details or even entire objects. When a human is observing a scene with different kinds of lighting, such as shadows, he will need to see details in both the dark and light parts of the scene. For grey value images such as IR imagery, algorithms have been developed in which the local contrast of the image is enhanced using local adaptive techniques. In this paper, we present how such algorithms can be adapted so that details in color images are enhanced while color information is retained. We propose to apply the contrast enhancement on color images by applying a grey value contrast enhancement algorithm to the luminance channel of the color signal. The color coordinates of the signal will remain the same. Care is taken that the saturation change is not too high. Gamut mapping is performed so that the output can be displayed on a monitor. The proposed technique can for instance be used by operators monitoring movements of people in order to detect suspicious behavior. To do this effectively, specific individuals should both be easy to recognize and track. This requires optimal local contrast, and is sometimes much helped by color when tracking a person with colored clothes. In such applications, enhanced local contrast in color images leads to more effective monitoring.
机译:相机或显示器通常具有比人眼更小的动态范围。因此,在录制的图像中可以不可见可以检测的物体。照明在这里是一个重要因素;不正确的本地照明损害细节或甚至整个物体的可见性。当人类观察不同种类的照明的场景,例如阴影时,他需要在场景的黑暗和灯光部分中看到细节。对于诸如IR图像之类的灰度值图像,已经开发了算法,其中使用本地自适应技术增强了图像的本地对比度。在本文中,我们介绍了这种算法如何调整,以便在保留颜色信息的同时增强彩色图像中的细节。我们建议通过将灰度值对比度增强算法应用于颜色信号的亮度信道来应用对彩色图像的对比度增强。信号的颜色坐标将保持不变。注意饱和变化不会太高。进行色域映射,以便可以在监视器上显示输出。所提出的技术可以例如由运营商监测人员的运动以检测可疑行为。为了有效地做到这一点,特定的个人都应该容易识别和跟踪。这需要最佳的局部对比度,有时在跟踪彩色衣服的人时有时候有很多帮助。在这种应用中,彩色图像中的增强局部对比度导致更有效的监测。

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