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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Waveguide-Based Differentially Fed Dual-Polarized Magnetoelectric Dipole Antennas
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Waveguide-Based Differentially Fed Dual-Polarized Magnetoelectric Dipole Antennas

机译:基于波导的差分馈电双极化磁电偶极子天线

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摘要

This paper proposes a concept of waveguide-based dual-polarized magnetoelectric (ME) dipole antenna. Based on this concept, two antenna designs with rectangular and triangular-shaped E-dipoles are studied and presented. The former is differentially fed by probes and the latter by a turnstile junction orthomode transducer feed. Using 3-D printing technique, the corresponding prototypes are fabricated for demonstration. Experimental results show that the rectangular-shaped E-dipole design has a wide impedance bandwidth of 55.1% from 7.5 to 13.2 GHz and a stable gain of 6 ± 1.5 dBi. On the other hand, the triangular-shaped E-dipole design can achieve 62.8% impedance bandwidth from 7 to 13.4 GHz and 5.15 ± 0.95 dBi gain over the operating frequencies. Furthermore, it is found that both antennas have low cross polarization and backlobe radiation, both characteristics of ME dipoles. Due to the waveguide configuration, the proposed antennas have good mechanical and electrical performances. They can be easily implemented and applied for various high power capacity applications. With these advantages, the proposed antennas are good candidates for the satellite and other wireless communication systems.
机译:本文提出了一种基于波导的双极化磁电(ME)偶极天线的概念。基于这一概念,研究并提出了两种具有矩形和三角形电子偶极子的天线设计。前者由探头差分馈电,而后者则由旋转接头正模传感器馈电。使用3-D打印技术,制作了相应的原型进行演示。实验结果表明,矩形E偶极子设计在7.5至13.2 GHz范围内具有55.1%的宽阻抗带宽,并具有6±1.5 dBi的稳定增益。另一方面,三角形E偶极子设计可在7至13.4 GHz的频率范围内实现62.8%的阻抗带宽,并在整个工作频率上获得5.15±0.95 dBi的增益。此外,发现两个天线都具有低交叉极化和后瓣辐射,这是ME偶极子的两个特征。由于波导配置,所提出的天线具有良好的机械和电气性能。它们可以轻松实现并应用于各种大功率应用。具有这些优点,所提出的天线是卫星和其他无线通信系统的良好候选者。

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