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A Novel Modeling and Evaluating for RTS Noise on CMOS Image Sensor in Motion Picture

机译:运动图像中CMOS图像传感器上RTS噪声的新型建模和评估

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The precise noise modeling of complementary metal oxide semiconductor image sensor (CMOS image sensor: CIS) is a significant key in understanding the noise source mechanisms, optimizing sensor design, designing noise reduction circuit, and enhancing image quality. Therefore, this paper presents an accurate random telegraph signal (RTS) noise analysis model and a novel quantitative evaluation method in motion picture for the visual sensory evaluation of CIS. In this paper, two main works will be introduced. One is that the exposure process of a video camera is simulated, in which a Gaussian noise and an RTS noise in pinned-photodiode CMOS pixels are modeled in time domain and spatial domain; the other is that a new video quality evaluation method for RTS noise is proposed. Simulation results obtained reveal that the proposed noise modeling for CIS can approximate its physical process and the proposed video quality evaluation method for RTS noise performs effectively as compared to other evaluation methods. Based on the experimental results, conclusions on how the spatial distribution of an RTS noise affects the quality of motion picture are carried out.
机译:互补金属氧化物半导体图像传感器(CMOS图像传感器:CIS)的精确噪声建模是理解噪声源机制,优化传感器设计,设计降噪电路并提高图像质量的重要关键。因此,本文提出了一种准确的随机电报信号噪声分析模型和一种新颖的运动图像定量评估方法,用于对CIS的视觉感觉进行评估。本文将介绍两个主要作品。一种是模拟摄像机的曝光过程,其中在时域和空间域中对钉扎式光电二极管CMOS像素中的高斯噪声和RTS噪声进行建模。提出了一种新的RTS噪声视频质量评估方法。仿真结果表明,所提出的针对CIS的噪声建模可以近似其物理过程,并且所提出的针对RTS噪声的视频质量评估方法与其他评估方法相比可以有效地发挥作用。根据实验结果,得出关于RTS噪声的空间分布如何影响运动图像质量的结论。

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