Analysis and Design of Broadband OAM Array Antenna

Yunqi Zhang, Shiliu Zhao, Xuping Li, Leying Wang
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Abstract

This paper presents a Uniform Circular Array (UCA) antenna of crossed-dipole that can excite vortex waves in a wide frequency range from 3.5 GHz to 8.4 GHz. In the design process, the theoretical derivation of the influence on the Orbital Angular Momentum (OAM) when the antenna elements are arrayed in Co-directional Antenna Array (CAA) and Rotational Antenna Array (RAA) is given respectively. The fixed mode of the dipoles CAA is achieved by feeding each element with equal amplitude and 90∘ phase difference produced by the broadband feeding network. Furthermore, the proposed broadband OAM array antenna has been fabricated and measured to verify the predicted properties. The vortex electromagnetic wave with +1 mode could be excited in the bandwidth of 82.35%. Simulated and measured results are in good agreement. The proposed OAM array antenna is simple in design principle, compact in structure and low in profile, making this array antenna an excellent candidate for broadband OAM communication systems.
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宽带 OAM 阵列天线的分析与设计
本文介绍了一种可在 3.5 GHz 至 8.4 GHz 宽频率范围内激发涡旋波的交叉偶极子均匀圆阵列(UCA)天线。在设计过程中,分别从理论上推导了天线元件以同向天线阵列(CAA)和旋转天线阵列(RAA)排列时对轨道角动量(OAM)的影响。双极子 CAA 的固定模式是通过宽带馈电网络以相等的振幅和 90∘ 的相位差馈电给每个元件实现的。此外,还制作并测量了所提出的宽带 OAM 阵列天线,以验证其预测特性。带有 +1 模式的涡旋电磁波可在 82.35% 的带宽内被激发。模拟和测量结果非常吻合。所提出的 OAM 阵列天线设计原理简单,结构紧凑,外形小巧,是宽带 OAM 通信系统的理想选择。
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