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Fully automatic feature-based registration of mobile mapping and aerial nadir images for enabling the adjustment of mobile platform locations in gnss-denied urban environments

机译:基于全自动功能的移动地图和空中最低点图像配准,可在gnss拒绝的城市环境中调整移动平台的位置

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摘要

Mobile Mapping (MM) has gained significant importance in the realm of high-resolution data acquisition techniques. MM is able to record georeferenced street-level data in a continuous (laser scanners) and/or discrete (cameras) fashion. MM?s georeferencing relies on a conjunction of Global Navigation Satellite Systems (GNSS), Inertial Measurement Units (IMU) and optionally on odometry sensors. While this technique does not pose a problem for absolute positioning in open areas, its reliability and accuracy may be diminished in urban areas where high-rise buildings and other tall objects can obstruct the direct line-of-sight between the satellite and the receiver unit. Consequently, multipath measurements or complete signal outages impede the MM platform?s localisation and may affect the accurate georeferencing of collected data. This paper presents a technique to recover correct orientation parameters for MM imaging platforms by utilising aerial images as an external georeferencing source. This is achieved by a fully automatic registration strategy which takes into account the overall differences between aerial and MM data, such as scale, illumination, perspective and content. Based on these correspondences, MM data can be verified and/or corrected by using an adjustment solution. The registration strategy is discussed and results in a success rate of about 95 %.
机译:在高分辨率数据采集技术领域中,移动制图(MM)已变得非常重要。 MM能够以连续(激光扫描仪)和/或离散(相机)方式记录地理参考的街道数据。 MM的地理配准依赖于全球导航卫星系统(GNSS),惯性测量单元(IMU)以及可选的测距传感器的结合。尽管此技术不会对露天区域的绝对定位造成问题,但在高楼大厦和其他高物体会阻碍卫星与接收器单元之间直接视线的城市地区,其可靠性和准确性可能会降低。 。因此,多径测量或完整的信号中断会妨碍MM平台的定位,并可能影响所收集数据的精确地理配准。本文提出了一种通过利用航空图像作为外部地理参考源来为MM成像平台恢复正确的定向参数的技术。这是通过全自动配准策略实现的,该策略考虑了航空和MM数据之间的总体差异,例如比例,照明,视角和内容。基于这些对应关系,可以通过使用调整方案来验证和/或校正MM数据。讨论了注册策略,其成功率约为95%。

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