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RTS Noise and Dark Current White Defects Reduction Using Selective Averaging Based on a Multi-Aperture System

机译:基于多孔径系统的选择性平均降低RTS噪声和暗电流白缺陷

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摘要

In extremely low-light conditions, random telegraph signal (RTS) noise and dark current white defects become visible. In this paper, a multi-aperture imaging system and selective averaging method which removes the RTS noise and the dark current white defects by minimizing the synthetic sensor noise at every pixel is proposed. In the multi-aperture imaging system, a very small synthetic F-number which is much smaller than 1.0 is achieved by increasing optical gain with multiple lenses. It is verified by simulation that the effective noise normalized by optical gain in the peak of noise histogram is reduced from 1.38e- to 0.48e- in a 3 × 3-aperture system using low-noise CMOS image sensors based on folding-integration and cyclic column ADCs. In the experiment, a prototype 3 × 3-aperture camera, where each aperture has 200 × 200 pixels and an imaging lens with a focal length of 3.0 mm and F-number of 3.0, is developed. Under a low-light condition, in which the maximum average signal is 11e- per aperture, the RTS noise and dark current white defects are removed and the peak signal-to-noise ratio (PSNR) of the image is increased by 6.3 dB.
机译:在极弱的光线条件下,可以看到随机电报信号(RTS)噪声和暗电流白缺陷。本文提出了一种多孔径成像系统和选择性平均方法,该方法通过最小化每个像素处的合成传感器噪声来消除RTS噪声和暗电流白缺陷。在多孔径成像系统中,通过增加多个透镜的光学增益可以实现非常小的合成F值,该值远小于1.0。通过仿真验证,在3×3的光圈中,通过噪声直方图峰值中的光学增益归一化的有效噪声从1.38e -降低到0.48e -该系统使用基于折叠积分和循环列ADC的低噪声CMOS图像传感器。在实验中,开发了一个原型3×3孔径相机,其中每个光圈具有200×200像素,并且成像镜头的焦距为3.0 mm,F值为3.0。在弱光条件下,其中每个孔的最大平均信号为11e -,RTS噪声和暗电流白色缺陷被去除,并且峰值噪声信噪比(PSNR)图像增加6.3 dB。

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