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AUTOMATIC ROAD SIGN INVENTORY USING MOBILE MAPPING SYSTEMS

机译:使用移动映射系统自动路标库存

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The periodic inspection of certain infrastructure features plays a key role for road network safety and preservation, and for developing optimal maintenance planning that minimize the life-cycle cost of the inspected features. Mobile Mapping Systems (MMS) use laser scanner technology in order to collect dense and precise three-dimensional point clouds that gather both geometric and radiometric information of the road network. Furthermore, time-stamped RGB imagery that is synchronized with the MMS trajectory is also available. In this paper a methodology for the automatic detection and classification of road signs from point cloud and imagery data provided by a LYNX Mobile Mapper System is presented. First, road signs are detected in the point cloud. Subsequently, the inventory is enriched with geometrical and contextual data such as orientation or distance to the trajectory. Finally, semantic content is given to the detected road signs. As point cloud resolution is insufficient, RGB imagery is used projecting the 3D points in the corresponding images and analysing the RGB data within the bounding box defined by the projected points. The methodology was tested in urban and road environments in Spain, obtaining global recall results greater than 95%, and F-score greater than 90%. In this way, inventory data is obtained in a fast, reliable manner, and it can be applied to improve the maintenance planning of the road network, or to feed a Spatial Information System (SIS), thus, road sign information can be available to be used in a Smart City context.
机译:某些基础设施特征的定期检查对道路网络安全性和保存具有关键作用,以及开发最佳维护规划,以最大限度地降低所检查功能的生命周期成本。移动映射系统(MMS)使用激光扫描仪技术,以收集聚集和精确的三维点云,该云收集道路网络的几何和辐射信息。此外,还可提供与MMS轨迹同步的时间戳的RGB图像。本文提出了一种来自Lynx Mobile Mapper系统提供的点云和图像数据的自动检测和分类路标的方法。首先,在点云中检测到道路标志。接着,库存富含几何和上下文数据,如方向或距离的轨迹。最后,给出了检测到的道路标志的语义内容。随着点云分辨率不足,RGB图像用于投影相应图像中的3D点,并分析投影点定义的边界框内的RGB数据。该方法在西班牙城市和道路环境中进行了测试,获得全球召回结果大于95%,F分数大于90%。以这种方式,在一个快速,可靠的方式获得的库存数据,并且它可以应用于改善道路网络的维护规划,或以供给空间信息系统(SIS),因此,路标信息可以提供给用于智能城市背景。

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