Nowadays, multirotors are playing important roles in abundant types of missions. During these missions, entering confined and narrow tunnels that are barely accessible to humans is desirable yet extremely challenging for multirotors. The restricted space and significant ego airflow disturbances induce control issues at both fast and slow flight speeds, meanwhile bringing about problems in state estimation and perception. Thus, a smooth trajectory at a proper speed is necessary for safe tunnel flights. To address these challenges, in this letter, a complete autonomous aerial system that can fly smoothly through tunnels with dimensions narrow to 0.6 m is presented. The system contains a motion planner that generates smooth mini-jerk trajectories along the tunnel center lines, which are extracted according to the map and Euclidean Distance Field (EDF), and its practical speed range is obtained through computational fluid dynamics (CFD) and flight data analyses. Extensive flight experiments on the quadrotor are conducted inside multiple narrow tunnels to validate the planning framework as well as the robustness of the whole system.
翻译:目前,多种机器人在多种类型的飞行任务中发挥着重要的作用。在这些飞行任务中,进入人类几乎无法进入的封闭和狭窄的隧道是可取的,但对于多机器人来说却极具挑战性。空间有限和巨大的自负气流扰动以快速和缓慢的飞行速度引起控制问题,同时造成状态估计和认知方面的问题。因此,安全隧道飞行需要以适当速度平稳的轨道。为了应对这些挑战,本信介绍了一个完整的自主航空系统,能够顺利地通过范围小于0.6米的隧道飞行。该系统包含一个运动规划器,在隧道中心线上产生滑滑滑的小型jirk轨迹,根据地图和Euclidean距离场(EDF)提取,其实际速度范围是通过计算流动动态和飞行数据分析获得的。在Quadrtortoror上进行广泛的飞行试验是在多个狭窄的隧道内进行,以验证规划框架和整个系统的坚固性。