Methods of Automating Power Swapping Mechanisms for Extending UAV Flight Missions

Christopher Lai, Minh Tri Chau, Ryan Thai, Sandor Souvannakoumane, Chathurya Watagoda, Kaye Oda, Shanthi Robinson, Gabriel Gourmet Razungles, Maggie Hoang, S. Dobbs, Zhen Yu
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Abstract

This paper describes a novel complete system for the autonomous replacement of lithium-polymer batteries (LiPo battery) in small-scale unmanned aerial vehicles (UAVs). A core mechanic of the system relies on a horizontal rotating battery chamber that is capable of storing, managing, and distributing eight drone-compliant batteries. The station dubbed the "Battery Vending Machine", or BVM for short is accompanied by solar power panels for a rapid power supply, detachable modules for mobile transport, and interlocking components to safeguard the batteries when not in use. Companion modules work with the BVM to allow compatibility with drone docking and battery swapping. A ground control station (GCS) with intricately placed fiducial markers and fast wireless charging technology operates to dock the drone safely in preparation for a power supply hot-swap procedure. A robotic arm system works to transfer the batteries from one station to another. The three stations work in unison to provide a faster and more optimized method to exchange depleted batteries on a flight vehicle with fully charged power sources. Results of physical experiments of each module in the automatic replacement system provide insight into the implementation of high-endurance fully-autonomous flight missions using remote landing, replenishing, and takeoff sequences.
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扩展无人机飞行任务的自动化电源交换机构方法
介绍了一种用于小型无人机锂聚合物电池(LiPo)自主更换的新型完整系统。该系统的核心机制依赖于一个水平旋转电池室,该电池室能够存储、管理和分配8个符合无人机要求的电池。这个被称为“电池自动售货机”(简称BVM)的空间站配备了快速供电的太阳能电池板、可拆卸的移动运输模块,以及在不使用时保护电池的联锁组件。配套模块与BVM一起工作,以兼容无人机对接和电池交换。地面控制站(GCS)具有复杂的基准标记和快速无线充电技术,可以安全地对接无人机,为电源热插拔程序做准备。机械臂系统将电池从一个站点转移到另一个站点。这三个空间站协同工作,提供了一种更快、更优化的方法,将飞行飞行器上耗尽的电池与充满电的电源交换。自动替换系统中每个模块的物理实验结果为使用远程着陆、补给和起飞序列实现高续航能力的全自动飞行任务提供了见解。
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