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Direct Georeferencing for Portable Mapping Systems: In the Air and on the Ground

机译:便携式制图系统的直接地理配准:空中和地面

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During the last few years, the acquisition of geometric information about objects by using a moving sensor platform has gained increasing popularity in the surveying community. A large number of companies offer vehicle-based mobile mapping systems, which usually contain a fast profile laser scanner, a high-precision inertial measurement unit, and geodetic global navigation satellite system (GNSS) receivers to directly georeference the laser scans and build a consistent point cloud of the object. In contrast, there is a growing number of companies offering small and lightweight unmanned aerial vehicles (UAVs), which automatically fly over the area of interest and create dense point clouds of the environment by using camera images and photogrammetric-processing software. In this case, the georeferencing is usually realized by ground control points. This contribution summarizes activities performed by the authors to bring both fields closer together by developing a small (11 x 10 x 5 cm) and lightweight (240-g) direct-georeferencing unit, which is able to provide accurate position (<5 cm) and orientation (<1 degrees) information in real time. The authors describe the development of the sensor unit and the sensor-fusion algorithms, address the topics of calibration and accuracy evaluation, and provide an overview of different applications in which the unit has been already used. These include the high-resolution acquisition of crop-surface models by using UAV-based imagery, the direct georeferencing of an autonomously flying robot with a laser scanner and multiple cameras, and the generation of laser point clouds using a human-carried mobile mapping system. (C) 2017 American Society of Civil Engineers.
机译:在过去的几年中,通过使用移动传感器平台来获取有关对象的几何信息的方法在测量界越来越受欢迎。许多公司提供基于车辆的移动制图系统,通常包含快速轮廓激光扫描仪,高精度惯性测量单元和大地测量全球导航卫星系统(GNSS)接收器,以直接对激光扫描进行地理定位并建立一致的对象的点云。相比之下,越来越多的公司提供小型轻便的无人机(UAV),它们会自动使用摄像头图像和摄影测量处理软件在目标区域上空飞行并创建密集的环境点云。在这种情况下,地理配准通常通过地面控制点实现。该文稿总结了作者通过开发小型(11 x 10 x 5 cm)轻巧(240 g)直接定位参考仪可以使两个领域更紧密结合而进行的活动,该设备能够提供准确的位置(<5 cm)和实时(<1度)信息。作者描述了传感器单元和传感器融合算法的发展,阐述了校准和精度评估的主题,并概述了已经使用该单元的不同应用。其中包括通过使用基于无人机的图像对作物表面模型进行高分辨率采集,使用激光扫描仪和多台摄像机对自动飞行的机器人进行直接地理配准以及使用人类携带的移动制图系统生成激光点云。 (C)2017年美国土木工程师学会。

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