A High-Throughput Photon Processing Technique for Range Extension of SPAD-Based LiDAR Receivers

Sarrah M. Patanwala;Istvan Gyongy;Hanning Mai;Andreas Aßmann;Neale A. W. Dutton;Bruce R. Rae;Robert K. Henderson
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引用次数: 18

Abstract

There has recently been a keen interest in developing Light Detection and Ranging (LiDAR) systems using Single Photon Avalanche Diode (SPAD) sensors. This has led to a variety of implementations in pixel combining techniques and Time to Digital Converter (TDC) architectures for such sensors. This paper presents a comparison of these approaches and demonstrates a technique capable of extending the range of LiDAR systems with improved resilience to background conditions. A LiDAR system emulator using a reconfigurable SPAD array and FPGA interface is used to compare these different techniques. A Monte Carlo simulation model leveraging synthetic 3D data is presented to visualize the sensor performance on realistic automotive LiDAR scenes.
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一种用于SPAD激光雷达接收机增程的高通量光子处理技术
最近,人们对开发使用单光子雪崩二极管(SPAD)传感器的光探测和测距(LiDAR)系统产生了浓厚的兴趣。这导致了用于这种传感器的像素组合技术和时间到数字转换器(TDC)架构的各种实现。本文对这些方法进行了比较,并展示了一种能够扩展激光雷达系统范围并提高其对背景条件的弹性的技术。使用可重新配置的SPAD阵列和FPGA接口的激光雷达系统模拟器来比较这些不同的技术。提出了一个利用合成3D数据的蒙特卡罗模拟模型,以可视化传感器在逼真的汽车激光雷达场景中的性能。
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