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A Review of Single-Photon Avalanche Diode Time-of-Flight Imaging Sensor Arrays

机译:单光子雪崩二极管飞行时间成像传感器阵列的综述

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Time-of-flight (ToF) sensors using light pulses or continuous waves allow accurate distance measurements. Three-dimensional imagers can be based on an array of timing or time-gated integration pixels. Single-photon avalanche diodes (SPADs) have been increasingly chosen as the pixel's photodetector device to develop fast, long-range ToF sensors. Solid-state ToF cameras are replacing other alternatives, showing attractive characteristics and bringing up new potential applications. This paper presents the technical evolution of SPAD ToF 3D imaging sensors, and provides insight into their development over the last few decades. Starting with the first SPAD imagers reported in the early 2000's, various direct and indirect arrays up to present day state-of-the-art prototypes are referenced. The existing methods, options and possible implementations are described, addressing their advantages and drawbacks, and showing the progress yet to be made. The performance of the different presented approaches are given and compared.
机译:使用光脉冲或连续波的飞行时间(TOF)传感器允许准确测量距离测量。三维成像者可以基于一系列定时或时间门控积分像素。单光子雪崩二极管(SPAD)已越来越多地选择作为像素的光电探测器装置,以开发快速,远程TOF传感器。固态TOF相机正在取代其他替代方案,显示出具有吸引力的特性并引发新的潜在应用。本文介绍了SPAD TOF 3D成像传感器的技术演变,并在过去几十年中提供了对其发展的洞察力。从2000年初报告的第一个SPAD成像仪开始,引用了当今最先进的原型的各种直接和间接阵列。描述了现有的方法,选项和可能的实现,解决了它们的优点和缺点,并显示了尚待进展。给出并比较了不同呈现的方法的性能。

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