UCA-based orbital angular momentum radio beam generation and reception under different array configurations

Huayang Wu, Y. Yuan, Zhaoyang Zhang, Ji Cang
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引用次数: 38

Abstract

The Orbital-Angular-Momentum (OAM)-carrying radio waves may provide extra rotational degree of freedom, which may potentially increase channel capacity and spectrum efficiency for future wireless communications. It has been demonstrated that circular antenna array could radiate OAM-carrying radio beam by feeding each element with certain phase offset. In this paper, by proper analyses and extensive simulations on the spatial amplitude and phase characteristics of the radiated electromagnetic field under three different array configurations, i.e., radial array, tangential array, and uniform circular array (UCA), respectively. We found that among the above settings UCA is the best way to generate the desired OAM-carrying beam with linear excitation. We then use multiple concentric antenna rings with elements of half-wave dipoles to generate and demultiplex multiple OAM states, and both spectral analyses and simulations verified the feasibility.
不同阵列配置下基于uca的轨道角动量射电波束产生与接收
携带轨道角动量(OAM)的无线电波可以提供额外的旋转自由度,这可能会增加未来无线通信的信道容量和频谱效率。证明了圆形天线阵可以通过给每个单元以一定的相位偏移来辐射携带oam的无线电波束。本文通过对径向阵列、切向阵列和均匀圆形阵列(UCA)三种不同阵列配置下辐射电磁场的空间幅值和相位特性进行了适当的分析和广泛的仿真。我们发现,在上述设置中,UCA是产生理想的线性激励oam载束的最佳方式。利用半波偶极子元素的多个同心圆天线环产生和解复用多个OAM状态,并通过频谱分析和仿真验证了该方法的可行性。
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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