The application of autonomous UAVs to infrastructure inspection tasks provides benefits in terms of operation time reduction, safety, and cost-effectiveness. This paper presents trajectory planning for three-dimensional autonomous multi-UAV volume coverage and visual inspection of infrastructure based on the Heat Equation Driven Area Coverage (HEDAC) algorithm. The method generates trajectories using a potential field and implements distance fields to prevent collisions and to determine UAVs' camera orientation. It successfully achieves coverage during the visual inspection of complex structures such as a wind turbine and a bridge, outperforming a state-of-the-art method by allowing more surface area to be inspected under the same conditions. The presented trajectory planning method offers flexibility in various setup parameters and is applicable to real-world inspection tasks. Conclusively, the proposed methodology could potentially be applied to different autonomous UAV tasks, or even utilized as a UAV motion control method if its computational efficiency is improved.
翻译:自动无人驾驶航空器应用于基础设施检查任务,在减少运行时间、安全和成本效益方面带来了好处,本文件介绍了基于热赤道驱动区覆盖算法的三维自主多无人驾驶航空器容量和基础设施直观检查的轨迹规划,该方法利用潜在的字段生成轨迹,并使用距离场防止碰撞和确定无人驾驶航空器的相机方向。在对风轮机和桥梁等复杂结构进行直观检查期间,成功实现了覆盖,通过允许在同一条件下对更多的地表进行检查,超过了最先进的方法。提出的轨迹规划方法提供了各种设置参数的灵活性,并适用于现实世界的检查任务。总体而言,拟议方法有可能适用于不同的自主无人驾驶飞行器任务,如果计算效率得到提高,甚至可以用作无人驾驶飞行器的运动控制方法。