1英寸17万像素1000 fps块控制编码曝光堆叠cmos图像传感器的视觉系统,用于计算成像和自适应动态范围控制

IF 2.4 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE open journal of circuits and systems Pub Date : 2022-01-01 DOI:10.1109/OJCAS.2022.3213062
Tomoki Hirata;Hironobu Murata;Taku Arii;Hideaki Matsuda;Hajime Yonemochi;Yojiro Tezuka;Shiro Tsunai
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引用次数: 0

摘要

本研究介绍了一种高速、高分辨率图像采集的视觉系统。图像传感器不仅用于数码相机,而且还用于需要捕捉超出人类感知的广泛亮度差异的各种应用。例如,自动驾驶系统中的快速、高分辨率物体识别和运动跟踪至关重要,特别是在黑暗的隧道或仲夏的阳光下。然而,分辨率、帧率、像素大小和动态范围应该权衡,以实现高对比度捕捉运动物体的高性能。我们开发了一个高速视觉系统,其读出操作为1000 fps,分辨率为4K ${\times}\,4\text{K}$,动态范围为110 dB,精细像素为$2.7~{\mu}\text{m}$。这些特性是通过几种技术实现的,如1)编码曝光(CE),它将图像平面划分为更小的块,并单独控制每个块的曝光时间,2)模拟-数字转换器在每个块上并行排列,以及3)三维晶圆堆叠,使电路和像素高密度集成。所提出的系统可以应用于基于ce的计算成像,以及处理场景中的暗区和亮区的高动态范围应用。
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A Vision System With 1-inch 17-Mpixel 1000-fps Block-Controlled Coded-Exposure Stacked-CMOS Image Sensor for Computational Imaging and Adaptive Dynamic Range Control
This study introduces a vision system that can acquire images at high speeds and high resolutions. Image sensors are used not only in digital still cameras but also in various applications that require capturing wide luminance differences beyond human perception. For example, fast, high-resolution object recognition, and motion tracking in automatic driving systems are essential, particularly in dark tunnels or the mid-summer sunshine. However, the resolution, frame rate, pixel size, and dynamic range should be traded off to achieve a high performance in capturing moving objects with a high contrast. We have developed a high-speed vision system with a readout operation of 1000 fps, resolution of 4K ${\times }\,4\text{K}$ , dynamic range of 110 dB, and fine pixels of $2.7~{\mu }\text{m}$ . These characteristics were achieved using several technologies such as 1) coded exposure (CE), which divides the image plane into smaller blocks and controls the exposure time of each block individually, 2) arrangement of analog-to-digital converters in parallel for each block, and 3) three-dimensional wafer stacking, which enables high-density integration of circuits and pixels. The proposed system can be applied in CE-based computational imaging in addition to high-dynamic-range applications for handling both the dark and bright areas in a scene.
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