论文标题
基于激光雷达数据和传感器融合技术的3D对象检测框架的比较研究
Comparative study of 3D object detection frameworks based on LiDAR data and sensor fusion techniques
论文作者
论文摘要
估计和理解车辆的周围环境正是自动驾驶汽车的基本和关键步骤。感知系统在实时提供对车辆环境的准确解释方面起着重要作用。通常,感知系统涉及各种子系统,例如本地化,障碍(静态和动态)检测以及避免,映射系统等。为了感知环境,这些车辆将配备各种外部感受(被动和主动)传感器,尤其是相机,雷达,激光雷达等。这些系统配备了深度学习技术,这些技术将大量数据从传感器转换为对象检测和本地化任务的语义信息。对于众多驾驶任务,为了提供准确的结果,需要特定对象的位置和深度信息。 3D对象检测方法通过利用传感器(例如LIDARS,立体声摄像机)的其他姿势数据提供有关对象的大小和位置的信息。根据最近的研究,在LiDAR数据和传感器融合技术上执行对象检测和定位的3D对象检测框架在其性能方面显示出显着改善。在这项工作中,对使用LiDAR数据进行对象检测框架的效果以及使用传感器融合技术看到的性能改进的效果进行了比较研究。在两种情况下讨论各种最新方法,进行实验分析并提供未来的研究方向。
Estimating and understanding the surroundings of the vehicle precisely forms the basic and crucial step for the autonomous vehicle. The perception system plays a significant role in providing an accurate interpretation of a vehicle's environment in real-time. Generally, the perception system involves various subsystems such as localization, obstacle (static and dynamic) detection, and avoidance, mapping systems, and others. For perceiving the environment, these vehicles will be equipped with various exteroceptive (both passive and active) sensors in particular cameras, Radars, LiDARs, and others. These systems are equipped with deep learning techniques that transform the huge amount of data from the sensors into semantic information on which the object detection and localization tasks are performed. For numerous driving tasks, to provide accurate results, the location and depth information of a particular object is necessary. 3D object detection methods, by utilizing the additional pose data from the sensors such as LiDARs, stereo cameras, provides information on the size and location of the object. Based on recent research, 3D object detection frameworks performing object detection and localization on LiDAR data and sensor fusion techniques show significant improvement in their performance. In this work, a comparative study of the effect of using LiDAR data for object detection frameworks and the performance improvement seen by using sensor fusion techniques are performed. Along with discussing various state-of-the-art methods in both the cases, performing experimental analysis, and providing future research directions.