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首页> 外文期刊>IEEE Journal of Solid-State Circuits >A 1/3'' VGA linear wide dynamic range CMOS image sensor implementing a predictive multiple sampling algorithm with overlapping integration intervals
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A 1/3'' VGA linear wide dynamic range CMOS image sensor implementing a predictive multiple sampling algorithm with overlapping integration intervals

机译:1/3英寸VGA线性宽动态范围CMOS图像传感器,实现了具有重叠积分间隔的预测多重采样算法

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摘要

Many tasks performed by machine vision systems involve processing of natural scenes with large intra-frame illumination ratios. Thus, wide dynamic range visible spectrum image sensors are required to achieve adequate processing performance and reliability. An image sensor implementing an algorithm that linearly increases the illumination dynamic range of solid-state pixels is presented. Optimal exposure is achieved with a predictive pixel saturation decision that allows for multiple integration intervals of different duration to run concurrently for different pixels while keeping the sensor frame rate constant. A proof-of-concept chip was fabricated in a 0.18-Μm CMOS process. Added functionality to standard imagers is mainly concentrated off-pixel so fill factor is not sacrificed. Measured data corroborates the algorithm functionality.
机译:机器视觉系统执行的许多任务涉及处理具有较大帧内照明比率的自然场景。因此,需要宽动态范围的可见光谱图像传感器以实现足够的处理性能和可靠性。提出了实现线性增加固态像素的照明动态范围的算法的图像传感器。通过预测性像素饱和度决策可以实现最佳曝光,该预测性像素化可以使不同持续时间的多个积分间隔针对不同像素同时运行,同时保持传感器帧频不变。概念验证芯片是在0.18μmCMOS工艺中制造的。标准成像仪的新增功能主要是集中在像素外,因此不会牺牲填充系数。测得的数据证实了算法的功能。

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