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Background Light Rejection in SPAD-Based LiDAR Sensors by Adaptive Photon Coincidence Detection

机译:通过自适应光子重合检测在基于SPAD的激光雷达传感器中的背景光排出

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摘要

Light detection and ranging (LiDAR) systems based on silicon single-photon avalanche diodes (SPAD) offer several advantages, like the fabrication of system-on-chips with a co-integrated detector and dedicated electronics, as well as low cost and high durability due to well-established CMOS technology. On the other hand, silicon-based detectors suffer from high background light in outdoor applications, like advanced driver assistance systems or autonomous driving, due to the limited wavelength range in the infrared spectrum. In this paper we present a novel method based on the adaptive adjustment of photon coincidence detection to suppress the background light and simultaneously improve the dynamic range. A major disadvantage of fixed parameter coincidence detection is the increased dynamic range of the resulting event rate, allowing good measurement performance only at a specific target reflectance. To overcome this limitation we have implemented adaptive photon coincidence detection. In this technique the parameters of the photon coincidence detection are adjusted to the actual measured background light intensity, giving a reduction of the event rate dynamic range and allowing the perception of high dynamic scenes. We present a 192 × 2 pixel CMOS SPAD-based LiDAR sensor utilizing this technique and accompanying outdoor measurements showing the capability of it. In this sensor adaptive photon coincidence detection improves the dynamic range of the measureable target reflectance by over 40 dB.
机译:基于硅光探测和测距(LIDAR)系统单光子雪崩二极管(SPAD)提供若干优点,如系统级芯片与助集成检测器和专用电子器件的制造以及低成本和高耐久性由于成熟的CMOS技术。在另一方面,基于硅的检测器从在室外应用中的高背景光,如高级驾驶辅助系统或自主驾驶,由于有限的波长范围在红外光谱中受到影响。在本文中,我们提出基于光子一致检测的自适应调整,以抑制背景光,并且同时提高了动态范围的新方法。固定参数一致检测的主要缺点是所得的事件发生率的增加的动态范围,从而允许仅在特定靶的反射率良好的测量性能。为了克服这种局限性,我们已经实现了自适应光子符合检测。在该技术中光子一致检测的参数被调整到实际测得的背景光强度,从而降低事件的发生率的动态范围,并允许高动态场景的感知。我们提出利用该技术和伴随户外测量表示它的能力的192×2像素基于SPAD-CMOS激光雷达传感器。在该传感器中的自适应光子重合检测提高了40分贝的动态范围的目标可测量反射率。

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