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Mantissa-Exponent-Based Tone Mapping for Wide Dynamic Range Image Sensors

机译:基于尾数的基于指数的宽动态范围图像传感器的音调映射

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The dynamic range of a scene is defined as the ratio between the maximum and minimum luminance in it. Wide dynamic range (WDR) means this ratio is so large that it exceeds the dynamic range of a traditional image sensor. Nowadays, WDR image sensors enable the capture of WDR scenes. However, the captured WDR image requires an additional tone mapping step to compress the high bit pixel of WDR image to low rate pixel so that it can be displayed on the screen. The tone mapping algorithm is mostly done in an image signal processor or with a specific software application. This brief proposes a tone mapping technique that is suitable for direct processing of the output of a WDR image sensor bitstream. The algorithm acquires statistics on the mantissa and exponent parts of the pixel value and then generates a refined histogram for tone mapping. Experiments that evaluate the image quality and hardware efficiency are carried out. The results indicate that the proposed mantissa exponent-based algorithm provides visually pleasing results and preserves details of the original WDR image better than other similar algorithms. The hardware resources' efficiency of the algorithm makes the system on chip implementation possible.
机译:场景的动态范围被定义为其中最大和最小亮度之间的比率。宽动态范围(WDR)表示该比例如此之大,它超出了传统图像传感器的动态范围。如今,WDR图像传感器使捕获WDR场景。然而,捕获的WDR图像需要额外的色调映射步骤来将WDR图像的高位像素压缩为低速率像素,使得它可以显示在屏幕上。色调映射算法主要在图像信号处理器或具有特定软件应用程序中完成。本简述提出了一种适用于直接处理WDR图像传感器比特流的输出的音调映射技术。该算法获取像素值的尾数和指数部件的统计信息,然后生成精确的直方图进行音调映射。进行评估图像质量和硬件效率的实验。结果表明,拟议的基于尾数指数的算法提供了视觉上令人愉悦的结果,并使原始WDR图像的细节更好地优于其他类似算法。算法的硬件资源效率使系统成为可能的系统。

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