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Entropy-Based Dark Frame Subtraction

机译:基于熵的暗帧减法

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摘要

Noise due to dark current is a serious limitation for taking long exposure time images with a CCD digital camera. Current solutions have serious drawbacks: interpolation of pixels with high dark current leads to smoothing effects or other artifacts - especially if a large number of pixels are corrupted. Due to the exponential temperature dependence of the dark current, dark frame subtraction works best for temperature controlled high end CCD imaging systems. On the physical level, two independent signals (charge generated by photons hitting the CCD and by the dark current) are added. Due to its random distribution, adding (or subtracting) the dark current noise signal increases the entropy of the resulting image. The entropy is minimal if the dark current signal is not present at all. A dark frame is a good representation of the dark current noise. As the generated dark current depends on the temperature equally for all pixels, a noisy image can be cleaned by the subtraction of a scaled dark frame. The scaling factor can be determined in an optimization step which tries to minimize the entropy of the cleaned image. We implemented a software system that effectively removes dark current noise even from highly corrupted images. The resulting images contain almost no visible artifacts since only the noise signal is removed. This extends the range of usable exposure times of digital cameras without temperature control systems by about one to two orders of magnitude.
机译:对于使用CCD数码相机长时间曝光的图像,暗电流产生的噪声是一个严重的限制。当前的解决方案具有严重的缺点:具有高暗电流的像素插值会导致平滑效果或其他伪像-特别是在大量像素损坏的情况下。由于暗电流的指数温度依赖性,暗帧减法最适合于温度控制的高端CCD成像系统。在物理层面上,添加了两个独立的信号(光子撞击CCD和暗电流产生的电荷)。由于其随机分布,添加(或减去)暗电流噪声信号会增加所得图像的熵。如果完全不存在暗电流信号,则熵最小。暗框很好地表示了暗电流噪声。由于所产生的暗电流均取决于所有像素的温度,因此可以通过减去缩放后的暗帧来清除噪声图像。缩放因子可以在优化步骤中确定,该步骤试图最小化清洁图像的熵。我们实施了一个软件系统,该系统可以有效消除甚至从高度损坏的图像中产生的暗电流噪声。由于仅去除了噪声信号,因此所得图像几乎不包含可见伪像。这将不带温度控制系统的数码相机的可用曝光时间范围扩大了大约一到两个数量级。

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