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A software method to extend tonal levels and widen tonal range of CCD sensor images

机译:一种扩展色调水平和扩展CCD传感器图像色调范围的软件方法

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As one of important outcomes of the past decades of researches on sensor arrays for digital cameras, the manufacturers of sensor array technology have responded to the necessity and importance of obtaining an optimal fill factor, which has great impact on collection of incident photons on the sensor, with hardware solution e.g. by introducing microlenses. However it is still impossible to make a fill factor of 100% due to the physical limitations in practical development and manufacturing of digital camera. This has been a bottle neck problem for improving dynamic range and tonal levels for digital cameras e.g. CCD cameras. In this paper we propose a software method to not only widen the recordable dynamic range of a captured image by a CCD camera but also extend its tonal levels. In the method we estimate the fill factor and by a resampling process a virtual fill factor of 100% is achieved where a CCD image is rearranged to a new grid of virtual subpixels. A statistical framework including local learning model and Bayesian inference is used for estimating new sub-pixel intensity values. The highest probability of sub-pixels intensity values in each resampled pixel area is used to estimate the pixel intensity values of the new image. The results show that in comparison to the methods of histogram equalization and image contrast enhancement, which are generally used for improving the displayable dynamic range on only one image, the tonal levels and dynamic range of the image is extended and widen significantly and respectively.
机译:作为过去数十年来的传感器阵列对数码相机的研究之一之一,传感器阵列技术的制造商已经响应了获得最佳填充因子的必要性和重要性,这对传感器上的事件光子集合产生了很大的影响,硬件解决方案,例如通过引入微透镜。然而,由于数码相机的实际开发和制造的物理限制,仍然不可能填充100%。这是一个瓶颈问题,用于改善数码相机的动态范围和音调水平。 CCD相机。在本文中,我们提出了一种软件方法,不仅可以通过CCD摄像机扩展捕获图像的可记录动态范围,而且还扩展了其音调水平。在该方法中,我们估计填充因子和通过重采样过程,实现了100%的虚拟填充因子,其中CCD图像被重新排列到虚拟子像素的新网格。包括本地学习模型和贝叶斯推断的统计框架用于估计新的子像素强度值。每个重采样像素区域中的子像素强度值的最高概率用于估计新图像的像素强度值。结果表明,与直方图均衡和图像对比度增强的方法相比,这通常用于仅在一个图像上改善可显示的动态范围,图像的音调水平和动态范围分别延伸和扩展。

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