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AIRCRAFT BASED REAL TIME BUNDLE ADJUSTMENT AND DIGITAL SURFACE MODEL GENERATION

机译:飞机的实时捆绑调整和数字表面模型生成

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摘要

This paper introduces a system for real-time generation of digital surface models (DSM) based on an optical multi-camera system flown on board of a manned airplane or helicopter. The system consists of high end consumer cameras, GNSS/IMU system, and on-board computers for real-time data processing. Usually, generation of digital surface models from aerial imagery is done in an off-line process, leading to delayed availability of height data. The proposed system processes data in real time on board of the aircraft and downlinks the generated DSM to a ground station. This paper evaluates the GNSS/IMU on-line solution quality and its impact on dense stereo matching. The proposed real time sliding window based bundle adjustment significantly improves image orientations and DSM quality, allowing generation of detailed digital surface models with a resolution of 2*GSD. Experiments using two flight patterns are conducted over the city of Landsberg and the resulting DSMs are evaluated against a LiDAR generated reference point cloud. The online bundle adjustment is shown to minimize the effect of systematic GNSS/IMU offsets while adding only a limited delay.
机译:本文介绍了一种基于在载人飞机或直升机船上飞行的光学多相机系统的数字表面模型(DSM)的实时生成系统。该系统由高端消费摄像机,GNSS / IMU系统和板载计算机组成,用于实时数据处理。通常,从空中图像产生数字表面模型在离线过程中完成,导致高度数据的可用性延迟。所提出的系统在飞机的船上实时处理数据,并将生成的DSM下行到地面站。本文评估了GNSS / IMU在线解决方案质量及其对密度立体匹配的影响。所提出的实时滑动窗口的束调节显着提高了图像方向和DSM质量,允许产生具有2 * GSD的分辨率的详细数字表面模型。使用两个飞行模式的实验在兰德斯堡市进行,并将得到的DSM针对LIDAR产生的参考点云进行评估。显示在线捆绑调整,以最大限度地减少系统GNSS / IMU偏移的影响,同时仅增加有限延迟。

著录项

  • 作者

    P. d’Angelo; F. Kurz;

  • 作者单位
  • 年度 2019
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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