A Planar Distributed Receiver Coil Antenna Array to Encapsulate Vertical and Lateral H-Fields for Drone Wireless Charging

V. K. Srivastava, Ananth Bharadwaj, Ashwani Sharma
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Abstract

This paper presents a planar distributed receiver coil antenna array to harvest all the magnetic field components generated by a conventional transmitter for drone charging applications. For this purpose, four anti-parallel turn coils are placed on four arms of the drone to harvest lateral field components along with a conventional circular Rx coil that harvests vertical magnetic field. A DC combining technique is proposed for combining the output voltages induced in each receiver coil to avoid destructive superposition of responses. An EM simulator is used to analyze the potential of harvesting lateral fields by the proposed anti-parallel turn coils. Later, the anti-parallel turn coils’ positions are determined based on the maximum voltage induced in these coils. The system is further verified using an experimental setup, and the results prove a significant enhancement of output voltage. Thus, proving the potential of the proposed Rx coil antenna suitable for drone charging applications.
一种用于无人机无线充电的平面分布式接收线圈天线阵列封装垂直和横向h场
本文提出了一种平面分布式接收线圈天线阵列,用于收集无人机充电应用中传统发射机产生的所有磁场分量。为此,在无人机的四个臂上放置了四个反平行旋转线圈,以收集横向磁场组件,以及收集垂直磁场的传统圆形Rx线圈。提出了一种直流组合技术,将每个接收线圈中感应的输出电压组合起来,以避免破坏性的响应叠加。利用电磁模拟器分析了反平行旋转线圈的横向场收获潜力。然后,根据这些线圈中感应到的最大电压确定反并联匝线圈的位置。在实验装置上进一步验证了该系统,结果表明输出电压显著提高。因此,证明了拟议的Rx线圈天线适用于无人机充电应用的潜力。
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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