基于逐像素双阈值背景差和局部二值模式编码的运动计算事件检测低功耗VGA视觉传感器

Yu Zou, M. Gottardi, M. Lecca, M. Perenzoni
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引用次数: 2

摘要

本文提出了一种用于物联网应用的微功率VGA事件视觉传感器,在嘈杂的室外场景中也能实现低误报率。嵌入式可编程像素,双阈值,运动检测算法,应用于160 × 120像素的欠采样阵列,允许解决广泛的应用。传感器通常工作在检测模式下,以8fps的速度消耗344 μ W,分析图像,抑制场景中的噪声,寻找移动目标以生成警报,触发处理器执行高级视觉任务。警报发出后,传感器切换到成像模式,提供1.35mW的全分辨率灰度图像及其运动位图。4µm像素传感器在110nm CMOS中制造,占地面积为25mm2。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Low-Power VGA Vision Sensor with Event Detection through Motion Computation based on Pixel-Wise Double-Threshold Background Subtraction and Local Binary Pattern Coding
This paper presents a micropower VGA event-based vision sensor for IoT applications, achieving a low rate of false positives also in noisy outdoor scenarios. The embedded programmable pixel-wise, double-threshold, motion detection algorithm, applied on a under-sampled array of 160 × 120 pixels, allows to address a wide spectrum of applications. The sensor typically works in detection mode, consuming 344µW at 8fps, analysing the image, suppressing noise in the scene and looking for moving targets to generate an alert which triggers a processor for high-level vision tasks. After the alert is asserted, the sensor switches to the imaging mode delivering full resolution gray-scale images together with their motion bitmaps at 1.35mW. The 4µm pixel sensor is fabricated in a 110nm CMOS and occupies an area of 25 mm2.
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