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首页> 外文期刊>Solid-State Circuits, IEEE Journal of >A 128 src='/images/tex/20675.gif' alt=',imes'> 128 1.5% Contrast Sensitivity 0.9% FPN 3 µs Latency 4 mW Asynchronous Frame-Free Dynamic Vision Sensor Using Transimpedance Preamplifiers
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A 128 src='/images/tex/20675.gif' alt=',imes'> 128 1.5% Contrast Sensitivity 0.9% FPN 3 µs Latency 4 mW Asynchronous Frame-Free Dynamic Vision Sensor Using Transimpedance Preamplifiers

机译:128 src =“ / images / tex / 20675.gif” alt =“, times”> 128 1.5%对比度灵敏度0.9%FPN 3 µs延迟4 mW异步使用跨阻前置放大器的无帧动态视觉传感器

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摘要

Dynamic Vision Sensors (DVS) have recently appeared as a new paradigm for vision sensing and processing. They feature unique characteristics such as contrast coding under wide illumination variation, micro-second latency response to fast stimuli, and low output data rates (which greatly improves the efficiency of post-processing stages). They can track extremely fast objects (e.g., time resolution is better than 100 kFrames/s video) without special lighting conditions. Their availability has triggered a new range of vision applications in the fields of surveillance, motion analyses, robotics, and microscopic dynamic observations. One key DVS feature is contrast sensitivity, which has so far been reported to be in the 10–15% range. In this paper, a novel pixel photo sensing and transimpedance pre-amplification stage makes it possible to improve by one order of magnitude contrast sensitivity (down to 1.5%) and power (down to 4 mW), reduce the best reported FPN (Fixed Pattern Noise) by a factor of 2 (down to 0.9%), while maintaining the shortest reported latency (3 $muhbox{s}$ ) and good Dynamic Range (120 dB), and further reducing overall area (down to 30$,times ,$31 $muhbox{m} ^{2}$ per pixel). The only penalty is the limitation of intrascene Dynamic Range to 3 decades. A 128$,times$ 128 DVS test prototype has been fabricated in standard 0.35 $muhbox{m}$ CMOS and extensive experimental characterization results are provided.
机译:动态视觉传感器(DVS)最近已经出现,成为视觉传感和处理的新范例。它们具有独特的特性,例如在宽照度变化下进行对比编码,对快速刺激的微秒等待时间响应以及低输出数据速率(这大大提高了后处理阶段的效率)。他们可以在没有特殊照明条件下跟踪极快的物体(例如,时间分辨率优于100 kFrames / s视频)。它们的可用性在监视,运动分析,机器人技术和微观动态观察领域引发了一系列视觉应用。 DVS的一项关键功能是对比度敏感度,到目前为止,据报道它在10%至15%的范围内。在本文中,一种新颖的像素光电感应和跨阻预放大级可以将对比度灵敏度(降低至1.5%)和功率(降低至4 mW)提高一个数量级,并减少报告的最佳FPN(固定模式)噪声)降低2倍(降至0.9%),同时保持报告的最短延迟(3 $ muhbox {s} $)和良好的动态范围(120 dB),并进一步减小总面积(降低至30 $次) ,每像素$ 31 $ muhbox {m} ^ {2} $)。唯一的惩罚是场景内动态范围限制为3个十年。在标准的0.35μmCMOS中制造了128×128 DVS测试原型,并提供了广泛的实验表征结果。

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