Design and Implementation of an Unmanned Aerial and Ground Vehicle Recharging System

Nansong Wu, C. Chacón, Z. Hakl, Kyle Petty, D. Smith
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引用次数: 4

Abstract

The use of Unmanned Arial Vehicles (UAVs) is becoming increasingly popular due to a variety of applications such as security, delivery, search, and recovery. The limited battery capacity of the UAVs becomes one of the most crucial problems which calls for a solution of automatic recharging and battery optimization to extend the UAVs’ operation time. This paper provides the design and implementation of a UAGVR (Unmanned Aerial and Ground Vehicle Recharging) system which allows the UAV to receive on-demand wireless recharging from an unmanned ground vehicle (UGV). An object tracking camera on the UGV allows it to automatically maneuver towards the UAV to accept an autonomous landing and recharging. We present a cooperative mission planning algorithm for the UAGVR system. A proof of concept system is developed using a small ground vehicle and a miniature quadcopter. Experimental results confirm the validity of our system design and suggest future work.
无人机和地面车辆充电系统的设计与实现
由于安全、交付、搜索和恢复等各种应用,无人驾驶飞行器(uav)的使用越来越受欢迎。无人机的电池容量有限成为无人机的关键问题之一,需要解决无人机的自动充电和电池优化问题,以延长无人机的运行时间。本文提供了一种UAGVR(无人机和地面车辆充电)系统的设计和实现,该系统允许无人机从无人地面车辆(UGV)接收按需无线充电。UGV上的目标跟踪摄像机允许它自动机动到无人机接受自主着陆和充电。提出了一种针对UAGVR系统的协同任务规划算法。使用小型地面车辆和微型四轴飞行器开发了概念验证系统。实验结果证实了系统设计的有效性,并对今后的工作提出了建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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