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A multi-UAV cooperative route planning methodology for 3D fine-resolution building model reconstruction

机译:用于3D精细分辨率建筑模型重建的多无人机协作路线规划方法

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摘要

In order to provide a fast multi-UAV cooperative data acquisition approach for 3D building model reconstruction in emergency management domain, a route planning methodology is proposed. A minimum image set including camera shooting positions and attitudes can be firstly obtained, with the given parameters describing the target building, UAVs, cameras, and image overlap requirements. A specific flight route network is then determined, and the optimal solution for multi-UAV data capture route planning is computed on the basis of constraint conditions such as the time frame, UAV battery endurance, and take-off and landing positions. Furthermore, field experiments with manual operating UAV mode, single UAV mode, and multi-UAV mode were conducted to compare the data collection and processing runtimes, as well as the quality of created 3D building models. According to the five defined LoDs of OGC CityGML 2.0 standard, the fine 3D building models conform to the LoD3. Comparison results demonstrate that our method is able to greatly enhance the efficiency of 3D reconstruction by improving the data collection speed while minimizing redundant image datasets, as well as to provide a normalized approach to assign the single or multi-UAV data acquisition tasks. The quality analysis of 3D models shows that the metric difference is less than 20 cm mean error with a standard deviation of 11 cm, which is fairly acceptable in emergency management study field. A 3D GIS-based software demo was also implemented to enable route planning, flight simulation, and data collection visualization.
机译:为了为应急管理领域的3D建筑模型重建提供一种快速的多无人机协同数据获取方法,提出了一种路线规划方法。首先可以获取包括摄像机拍摄位置和姿态的最小图像集,并使用给定的参数描述目标建筑物,无人机,摄像机和图像重叠要求。然后确定一个特定的飞行路线网络,并根据约束条件(例如时间范围,UAV电池续航力以及起飞和降落位置)来计算用于多无人机数据捕获路线计划的最佳解决方案。此外,还进行了手动操作无人机模式,单无人机模式和多无人机模式的现场实验,以比较数据收集和处理的运行时间,以及创建的3D建筑模型的质量。根据OGC CityGML 2.0标准的五个定义的LoD,优良的3D建筑模型符合LoD3。比较结果表明,我们的方法能够通过提高数据收集速度,同时最大程度地减少冗余图像数据集,从而极大地提高3D重建效率,并提供分配单个或多个UAV数据采集任务的标准化方法。 3D模型的质量分析表明,度量标准差小于20 cm的平均误差,标准偏差为11 cm,这在应急管理研究领域中是可以接受的。还实施了基于3D GIS的软件演示,以实现航线规划,飞行模拟和数据收集可视化。

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