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Efficient Charging Pad for Unmanned Aerial Vehicle Based on Direct Contact

机译:基于直接接触的高效无人机充电垫

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Recently there has been significant interest in the development of autonomously Unmanned Aerial Vehicles (UAVs), especially the rotor-based robots, which are highly maneuverable and can vertically take-off and land. However, the discharge characteristics and charge storage capacity limitations of their lithium-ion battery can restrict their flight time endurance. The utilization of an automatic drone charging station is therefore desirable for these robots. This paper proposes a fully automatic contact-based charging station for UAVs to recharge UAV's and thereby solve the UAV's flight endurance limitations. The ground station comprises square-shaped copper plates of consecutively polarized positively and negatively in the form of a chess board with specific dimensions to ensure electrical contact when landing. The design methodology employed with the charging station accounts for the variations of the orientation of the UAV after landing on the platform. Furthermore, this innovation employs an autonomous recharging process after touchdown. Subsequently, this technology relaxes usual flight time constraints and improves overall mission times. The UAV equipped with a suitable hardware circuit the onboard circuit consists of six bridge diode rectifiers to modulate the polarity of the four UAV's contact terminals that allows autonomous recharge regardless of the yaw angle between UAVs and the charging pad platform, this, in turn, simplifies landing protocols. The result shows that the charging circuit successfully charged the UAV battery until 12.5v.
机译:最近,人们对自动无人飞行器(UAV)的发展产生了极大的兴趣,特别是基于旋翼的机器人,这种机器人具有很高的机动性,并且可以垂直起飞和降落。但是,其锂离子电池的放电特性和电荷存储容量的限制会限制其飞行时间的承受能力。因此,对于这些机器人,期望使用自动无人机充电站。本文提出了一种用于无人机的基于接触的全自动充电站,可以对无人机进行充电,从而解决了无人机的飞行耐久性限制。地面站包括方形铜板,呈棋盘状,具有正负连续极化的形状,具有特定尺寸,以确保着陆时的电接触。充电站采用的设计方法考虑了无人机降落在平台上后方位的变化。此外,这项创新在触地后采用了自动充电过程。随后,该技术放松了通常的飞行时间限制,并改善了总体任务时间。配备适当硬件电路的无人机,机载电路由六个桥式二极管整流器组成,用于调制四个无人机接触端子的极性,无论无人机与充电板平台之间的偏航角如何,都可以自动充电,从而简化了操作着陆协议。结果表明,充电电路成功地将无人机电池充电至12.5v。

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