Journal Article10.1126/SCIROBOTICS.AAU6637
Perching and resting—A paradigm for UAV maneuvering with modularized landing gears
Kaiyu Hang,Ximin Lyu,Haoran Song,Johannes A. Stork,Johannes A. Stork,Aaron M. Dollar,Danica Kragic,Fu Zhang +7 more
- 13 Mar 2019
- Vol. 4, Iss: 28
TL;DR: A modularized and actuated landing gear framework that allows stabilizing the UAV on a wide range of different structures by perching and resting, and is effective in reducing power consumption, promotes increased pose stability, and preserves large vision ranges while perching or resting at heights.
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Abstract: Perching helps small unmanned aerial vehicles (UAVs) extend their time of operation by saving battery power. However, most strategies for UAV perching require complex maneuvering and rely on specific structures, such as rough walls for attaching or tree branches for grasping. Many strategies to perching neglect the UAV's mission such that saving battery power interrupts the mission. We suggest enabling UAVs with the capability of making and stabilizing contacts with the environment, which will allow the UAV to consume less energy while retaining its altitude, in addition to the perching capability that has been proposed before. This new capability is termed "resting." For this, we propose a modularized and actuated landing gear framework that allows stabilizing the UAV on a wide range of different structures by perching and resting. Modularization allows our framework to adapt to specific structures for resting through rapid prototyping with additive manufacturing. Actuation allows switching between different modes of perching and resting during flight and additionally enables perching by grasping. Our results show that this framework can be used to perform UAV perching and resting on a set of common structures, such as street lights and edges or corners of buildings. We show that the design is effective in reducing power consumption, promotes increased pose stability, and preserves large vision ranges while perching or resting at heights. In addition, we discuss the potential applications facilitated by our design, as well as the potential issues to be addressed for deployment in practice.
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Citations
Perception-Aware Perching on Powerlines With Multirotors
01 Apr 2022
TL;DR: In this paper , a perching trajectory generation framework is proposed to guide a multi-rotor UAV to a desired position on a powerline by solving a nonlinear programming problem using the Primal-Dual Interior Point method.
18
Maneuvering Control of Hexrotor UAV Equipped With a Cable-Driven Gripper
Zain Anwar Ali,Han Zhangang +1 more
TL;DR: In this article, a control method for the maneuvering control of an aircraft system equipped with a cable-driven gripper is proposed, which is based on the Model Reference Adaptive Control with an integrator with reference dynamics like an observer.
Autonomous aerial robotics for package delivery: A technical review
Jack Saunders,Sajad Saeedi,Wenbin Li +2 more
TL;DR: This technical review assesses autonomous aerial robotics for package delivery, covering aerial manipulators, control techniques, landing platforms, safety risks, and delivery routing, while comparing solutions against design, environmental, and legal constraints.
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A Mechanically Intelligent and Passive Gripper for Aerial Perching and Grasping
01 Dec 2022
TL;DR: In this article , a mechanically intelligent and passive gripper that can be used for either aerial perching or grasping is presented. But the gripper does not require actuation for grasping.
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Energy harvesting fueling the revival of self-powered unmanned aerial vehicles
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15
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