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Landweber-type iterative demosaicking for a single solid state color image sensor

机译:单稳态彩色图像传感器的Landweber型迭代模拟

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This paper presents a Landweber-type iterative demosaicking method for a single solid state color image sensor using three primary color filters of the Bayer's pattern. The iterative demosaicking method can restore a high-resolution color image much better than the existing non-iterative demosaicking methods using switchover-type interpolation filters. This paper, extending the idea of our previously presented image acquisition scheme using an imperfect image sensor with defect pixels, forms the iterative demosaicking method. Our previous scheme prepares a defect-pixel map in advance, and then takes a defocused image with an imperfect image sensor. Utilizing the defect-pixel map and the information that each pixel shares with its adjacent pixels, it recovers defect pixels and simultaneously sharpens the blurred image. As the recovery technique, we have formed the Landweber-type iterative algorithm. Taking it into account that decimated color pixels caused by the color filters correspond to defect pixels in the above recovery problem, we adapt our previous iterative recovery method to the demosaicking problem. Furthermore, to restrain the occurrence of false color caused by the demosaicking and simultaneously to preserve original hue variations as thoroughly as possible, this paper forms a hybrid demosaicking method that first applies the Landweber-type iterative algorithm to the interpolation of the green color component and then performs the interpolation of the red and the blue components with some existing hue- or chrominance-preserving-type method. Experiments using test images and color images really taken with a high-resolution digital color camera demonstrate that our hybrid demosaicking method reproduces a sharpened high-resolution digital color camera demonstrate that our hybrid demosaicking method reproduces a sharpened high-resolution color image without producing noticeable artifacts of false color.
机译:本文介绍了一种使用拜耳图案三原色滤光片的单个固态彩色图像传感器的Landwoer型迭代模拟方法。迭代模型方法可以使用切换式插值滤波器恢复高分辨率的彩色图像,比现有的非迭代模型方法更好。本文使用具有缺陷像素的不完美图像传感器来扩展我们先前呈现的图像采集方案的思想,形成迭代脱酷方法。我们以前的方案预先准备缺陷像素映射,然后用不完美的图像传感器采用离焦图像。利用缺陷像素映射和每个像素与其相邻像素共享的信息,它恢复缺陷像素并同时锐化模糊图像。作为恢复技术,我们已经形成了Landweer型迭代算法。考虑到由滤色器引起的抽取颜色像素对应于上述恢复问题中的缺陷像素,我们将我们之前的迭代恢复方法调整到Demosaking问题。此外,为了抑制由去肌刺激和同时保持原始色调变化的假颜色的出现,如尽可能彻底地保持原始色调变化,这篇论文形成了一个混合去迭代的方法,首先将Landwoer型迭代算法应用于绿色成分的插值和然后用一些现有的色调或色度保存型方法执行红色和蓝色组件的插值。使用测试图像和彩色图像的实验真正用高分辨率的数字彩色相机拍摄,表明我们的混合脱溶型方法再现锐化的高分辨率数字彩色相机,证明我们的混合脱囊方法再现锐化的高分辨率彩色图像,而不会产生明显的伪像假色。

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