解决固态激光雷达内部反光导致的虚假点云问题。
Ghosts in the Point Clouds: De-glaring LiDAR in the Transient Domain

- 提出瞬时眩光扩散函数模型,将内反射建模为线性算子。
- 无需训练,在原始回波阶段即有效抑制严重眩光伪影。
- 兼容现有系统,可直接部署于商用激光雷达硬件。
现代激光雷达正从笨重的机械扫描系统转向超紧凑、低成本的固态阵列。这种小型化虽提升了可扩展性、成本效益和类似摄像头的数据结构,却引入了新的严重故障模式:内部多路径眩光。当强光或高反射表面的光线在激光雷达内部反射散射时,本应到达单个像素的光会扩散至整个像素阵列,导致生成虚假物体、遮蔽真实物体,并产生安全关键的“点云幽灵”。本文提出一种物理基础感知模型与算法技术,证明内部眩光可表示为作用于瞬时测量的线性、场景无关算子——瞬时眩光扩散函数(TGSF)。基于此模型,我们开发了一种无需训练的方法,在点云生成前处理低级激光雷达检测信号(或回波),利用已知的眩光扩散函数推断每个检测是否由眩光引起。该方法兼容现有激光雷达信号处理流水线,可在未经修改的商用传感器上部署。通过真实单光子激光雷达硬件实验,验证了其对严重眩光伪影的显著抑制,同时保留真实场景结构。
原文摘要 · Abstract (English)
Modern LiDARs are rapidly transitioning from bulky, mechanically scanned systems to ultra-compact, low-cost, solid-state arrays. This miniaturization-while enabling scalability, affordability, and camera-like data structures-introduces a new and severe failure mode: internal-multipath glare. When light from a bright or retroreflective surface reflects and scatters within the LiDAR, light that should reach a single pixel spreads across the pixel array. The resulting artifacts create phantom objects, obscure real ones, and produce safety-critical "ghosts in the point clouds." This paper introduces a physically grounded sensing model and algorithmic techniques for addressing this effect. We show that internal glare can be represented as a linear, scene-independent operator-the Transient Glare Spread Function (TGSF)-acting on the transient measurements. Building on this model, we develop a training-free approach that operates on low-level LiDAR detections (or echoes) prior to point-cloud formation, leveraging knowledge of the glare spread function to reason about the likelihood of each detection arising from glare. The resulting approach is compatible with existing LiDAR signal-processing pipelines, and deployable on unmodified commercial sensors. Using experiments with real single-photon LiDAR hardware, we demonstrate substantial suppression of severe glare artifacts while preserving true scene structure.
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