arXiv:2510.22436cs.CV2025-10被引 3

研究激光雷达在雪天下的性能退化,提出物理模型模拟雪天数据并评估检测效果。

3D Roadway Scene Object Detection with LIDARs in Snowfall Conditions

  • 构建雪天激光信号衰减与反射的物理模型,分析降雪率影响。
  • 用合成数据模拟不同降雪强度,验证模型有效性。
  • 评估预训练检测模型在雪天数据下的性能下降程度,适合自动驾驶感知研究者。

由于激光雷达(LiDAR)能直接表征道路环境的三维结构,广泛应用于辅助与自动驾驶系统中。尽管在晴朗天气下表现良好,其性能在雨雪等恶劣天气中显著下降,可能导致基于学习的感知模型失效。现有研究未充分量化不同天气条件下的信号退化程度。本文聚焦车载激光雷达在降雪条件下的表现,建立物理模型以分析其失效模式。具体研究了不同降雪率下激光信号的衰减规律,以及靠近传感器的雪粒子作为高效反射体的作用。利用该模型,将晴天数据转换为模拟雪天场景,实现合成数据与真实雪天数据的对比。进一步使用代表不同降雪强度的合成数据,评估预训练目标检测模型在雪天条件下的性能变化。

原文摘要 · Abstract (English)

Because 3D structure of a roadway environment can be characterized directly by a Light Detection and Ranging (LiDAR) sensors, they can be used to obtain exceptional situational awareness for assitive and autonomous driving systems. Although LiDARs demonstrate good performance in clean and clear weather conditions, their performance significantly deteriorates in adverse weather conditions such as those involving atmospheric precipitation. This may render perception capabilities of autonomous systems that use LiDAR data in learning based models to perform object detection and ranging ineffective. While efforts have been made to enhance the accuracy of these models, the extent of signal degradation under various weather conditions remains largely not quantified. In this study, we focus on the performance of an automotive grade LiDAR in snowy conditions in order to develop a physics-based model that examines failure modes of a LiDAR sensor. Specifically, we investigated how the LiDAR signal attenuates with different snowfall rates and how snow particles near the source serve as small but efficient reflectors. Utilizing our model, we transform data from clear conditions to simulate snowy scenarios, enabling a comparison of our synthetic data with actual snowy conditions. Furthermore, we employ this synthetic data, representative of different snowfall rates, to explore the impact on a pre-trained object detection model, assessing its performance under varying levels of snowfall

激光雷达雪天感知目标检测物理建模

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