Separated Circular Capacitive Couplers for Rotational Misalignment of Drones

Chanjun Park, Jaehyoung Park, Yujun Shin, Sungryul Huh, Jongwook Kim, Seungyoung Ahn
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引用次数: 7

Abstract

This paper proposes separated circular capacitive couplers for drone. The primary side consists of circular and ring-shaped plates, and the primary and secondary sides are symmetrical. The proposed coupler structure is vertically aligned to maintain a constant mutual capacitance under rotational misalignment conditions, and it increase mutual capacitance by reducing the parasitic capacitance. In the LC compensation circuit, the relationship between mutual capacitance and system efficiency was analyzed through an equation. The mutual capacitance was compared through simulation and measurements. Coupling capacitances between each of two plates was measured using a vector network analyzer. The proposed coupler structure is designed using 3D finite element analysis (FEA) tool and verified through experiments.
分离式圆形电容耦合器用于无人机旋转错位
提出了一种用于无人机的分离式圆形电容耦合器。主侧由圆形板和环状板组成,主侧和次侧对称。本文提出的耦合器结构是垂直排列的,在旋转错位条件下保持恒定的互电容,并通过减小寄生电容来增加互电容。在LC补偿电路中,通过方程分析了互电容与系统效率的关系。通过仿真和实测比较了互电容。利用矢量网络分析仪测量了两个极板之间的耦合电容。采用三维有限元分析工具对所提出的耦合器结构进行了设计,并进行了实验验证。
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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