研究激光雷达多回波导致测距模糊,揭示其概率特性
Characterizing Lidar Range-Measurement Ambiguity due to Multiple Returns
- 分析两类旋转激光雷达在静止时的多回波概率分布
- 给出特定光束路径下测距结果的累积分布函数
- 为定位系统评估多回波影响提供定性方法
高自动化车辆在常规道路运行依赖可靠的位姿感知。激光雷达传感器正越来越多地被集成到位姿估计系统中。尽管其用途广泛,激光雷达仍是一种复杂传感器,其在道路环境中的性能尚未充分理解。例如,许多激光雷达定位算法默认沿某条射线路径总能识别唯一表面,但这一假设并不总是成立——已有大量证据表明,当激光雷达锥形波束内存在多个散射面时,其测量结果可能具有概率性。本文通过分析激光雷达数据集,对特定射线路径上概率性多回波的情况进行表征。贡献在于展示两个不同机械旋转式激光雷达在基座固定时观测到的代表性累积分布函数(CDF)。随后讨论中,提出了评估多回波对激光雷达定位影响的定性方法。
原文摘要 · Abstract (English)
Reliable position and attitude sensing is critical for highly automated vehicles that operate on conventional roadways. Lidar sensors are increasingly incorporated into pose-estimation systems. Despite its great utility, lidar is a complex sensor, and its performance in roadway environments is not yet well understood. For instance, it is often assumed in lidar-localization algorithms that a lidar will always identify a unique surface along a given raypath. However, this assumption is not always true, as ample prior evidence exists to suggest that lidar units may generate measurements probabilistically when more than one scattering surface appears within the lidar's conical beam. In this paper, we analyze lidar datasets to characterize cases with probabilistic returns along particular raypaths. Our contribution is to present representative cumulative distribution functions (CDFs) for raypaths observed by two different mechanically rotating lidar units with stationary bases. In subsequent discussion, we outline a qualitative methodology to assess the effect of probabilistic multi-return cases on lidar-based localization.
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