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Temporal image stacking for noise reduction and dynamic range improvement

机译:时间图像叠加以降低噪声并改善动态范围

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The dynamic range of an imager is determined by the ratio of the pixel well capacity to the noise floor. As the scene dynamic range becomes larger than the imager dynamic range, the choices are to saturate some parts of the scene or "bury" others in noise. In this paper we propose an algorithm that produces high dynamic range images by "stacking" sequentially captured frames which reduces the noise and creates additional bits. The frame stacking is done by frame alignment subject to a projective transform and temporal anisotropic diffusion. The noise sources contributing to the noise floor are the sensor heat noise, the quantization noise, and the sensor fixed pattern noise. We demonstrate that by stacking images the quantization and heat noise are reduced and the decrease is limited only by the fixed pattern noise. As the noise is reduced, the resulting cleaner image enables the use of adaptive tone mapping algorithms which render HDR images in an 8-bit container without significant noise increase.
机译:成像器的动态范围由像素阱容量与本底噪声之比确定。当场景动态范围变得大于成像器动态范围时,选择是使场景的某些部分饱和或将其他部分“掩埋”在噪声中。在本文中,我们提出了一种算法,该算法通过“堆叠”顺序捕获的帧来生成高动态范围图像,从而降低了噪声并创建了其他位。通过经受投影变换和时间各向异性扩散的帧对准来完成帧堆叠。导致本底噪声的噪声源是传感器热噪声,量化噪声和传感器固定模式噪声。我们证明,通过堆叠图像可以减少量化和热噪声,并且减少仅受固定模式噪声限制。随着噪声的降低,生成的更清晰的图像可以使用自适应色调映射算法,该算法可在8位容器中渲染HDR图像而不会显着增加噪声。

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