首页> 外文会议>Conference on Computational Imaging II; 20040119-20040120; San Jose,CA; US >Color Filter Array Design Based on a Human Visual Model
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Color Filter Array Design Based on a Human Visual Model

机译:基于人类视觉模型的彩色滤光片阵列设计

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To reduce cost and complexity associated with registering multiple color sensors, most consumer digital color cameras employ a single sensor. A mosaic of color filters is overlaid on a sensor array such that only one color channel is sampled per pixel location. The missing color values must be reconstructed from available data before the image is displayed. The quality of the reconstructed image depends fundamentally on the array pattern and the reconstruction technique. We present a design method for color filter array patterns that use red, green, and blue color channels in an RGB array. A model of the human visual response for luminance and opponent chrominance channels is used to characterize the perceptual error between a fully sampled and a reconstructed sparsely-sampled image. Demosaicking is accomplished using Wiener reconstruction. To ensure that the error criterion reflects perceptual effects, reconstruction is done in a perceptually uniform color space. A sequential backward selection algorithm is used to optimize the error criterion to obtain the sampling arrangement. Two different types of array patterns are designed: non-periodic and periodic arrays. The resulting array patterns outperform commonly used color filter arrays in terms of the error criterion.
机译:为了降低与注册多个颜色传感器相关的成本和复杂性,大多数消费类数字彩色相机采用单个传感器。滤色器的马赛克覆盖在传感器阵列上,从而每个像素位置仅采样一个颜色通道。在显示图像之前,必须从可用数据中重建丢失的颜色值。重建图像的质量从根本上取决于阵列图案和重建技术。我们提出了一种在RGB阵列中使用红色,绿色和蓝色通道的滤色器阵列模式的设计方法。亮度和对手色度通道的人类视觉响应模型用于表征完全采样和重建的稀疏采样图像之间的感知误差。去马赛克通过使用维纳重建来完成。为了确保误差标准反映出感知效果,在感知均匀的色彩空间中进行了重建。顺序向后选择算法用于优化误差准则以获得采样安排。设计了两种不同类型的阵列模式:非周期性阵列和周期性阵列。就误差标准而言,所得的阵列图案优于常规的彩色滤光片阵列。

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