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用于无人机地面控制站的水平极化直流接地全向天线。

Horizontal Polarized DC Grounded Omnidirectional Antenna for UAV Ground Control Station.

作者信息

Sadiq Muhammad Shahzad, Ruan Cunjun, Nawaz Hamza, Ullah Shahid, He Wenlong

机构信息

School of Electronic and Information Engineering, Beihang University, Beijing 100191, China.

Beijing Key Laboratory for Microwave Sensing and Security Applications, Beihang University, Beijing 100191, China.

出版信息

Sensors (Basel). 2021 Apr 14;21(8):2763. doi: 10.3390/s21082763.

Abstract

A new slot-based antenna design capable of producing horizontal polarization for unmanned aerial vehicle (UAV) ground control station (GCS) applications is outlined in this paper. The proposed antenna consists of oversize coaxial cylinders, slots, and slot-feed assembly. Each of the four vertical slots, arranged periodically around the antenna's outer cylinder, emits a horizontally polarized broad beam of radiation, in phase, to produce an omnidirectional pattern. The antenna possesses a low-ripple ±0.5 dB in azimuth gain (yaw) due to its symmetric axis shape and an enclosed feed within itself, which does not radiate and interfere with the main azimuth pattern. This is crucial for a UAV GCS to symmetrically extend its coverage range in all directions against yaw planes. Simulation and measurement results reveal that the antenna maintains stable gain in the omnidirectional pattern (+0.5 dB) over the entire operational frequency band (2.55 GHz to 2.80 GHz), where S11 is lower than -10 dB. A further advantage of this configuration is its enhanced polarization purity of -40 dB over the full frequency band. The direct-current (DC) grounding approach used in this antenna is beneficial due to its electrostatic discharge (ESD) and lightning protection. Furthermore, its aerodynamic, self-supporting, and surface-mount structural shape makes this antenna a good and worthy choice for a UAV GCS.

摘要

本文概述了一种新型的基于缝隙的天线设计,该设计能够为无人机(UAV)地面控制站(GCS)应用产生水平极化。所提出的天线由超大尺寸同轴圆柱体、缝隙和缝隙馈电组件组成。围绕天线外圆柱体周期性排列的四个垂直缝隙中的每一个,都会同相发射水平极化的宽波束辐射,以产生全向方向图。由于其对称轴形状以及内部封闭的馈电结构(该馈电结构不辐射且不干扰主要方位方向图),该天线在方位增益(偏航)方面具有±0.5 dB的低纹波。这对于无人机地面控制站在偏航平面上向各个方向对称扩展其覆盖范围至关重要。仿真和测量结果表明,在整个工作频段(2.55 GHz至2.80 GHz)内,天线在全向方向图中保持稳定增益(+0.5 dB),其中S11低于-10 dB。这种配置的另一个优点是在整个频段内其极化纯度提高到-40 dB。该天线采用的直流(DC)接地方法因其具有静电放电(ESD)和防雷保护功能而具有优势。此外,其空气动力学、自支撑和表面安装的结构形状使该天线成为无人机地面控制站的一个很好且值得选择的方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eec1/8070787/0e6bb4676e54/sensors-21-02763-g001.jpg

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