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Quasi-Orbital Angular Momentum (Q-OAM) Generated by Quasi-Circular Array Antenna (QCA)

机译:准圆形阵列天线(QCA)生成的准轨道角动量(Q-OAM)

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摘要

Orbital Angular Momentum (OAM), as a property of Electromagnetic (EM) fields has recently been proposed for Radio and Microwave communications. This paper investigates a new class of OAM radiation patterns for Radio and Microwave applications, namely, Quasi-OAM radiation patterns, induced by a proposed Quasi-Circular Array Antenna (QCA). Simulations and Experiments show that Quasi-OAM waves can be induced and preserved in the far-field using the proposed QCA apertures and configurations, demonstrating non-integer dominant OAM modes corresponding to l = +1 and l = −1 with a directional quasi intensity and rotational 2π phase profiles. The proposed method in this work significantly reduces aperture size and cost by using Quasi-Circular Arrays of NQ = 5 and NQ = 6 elements in lieu of conventional OAM circular aperture arrays with N = 8 elements.
机译:作为电磁(EM)场的特性,最近已经提出了轨道角动量(OAM)用于无​​线电和微波通信。本文研究了一种新型的用于无线电和微波应用的OAM辐射方向图,即拟由拟圆阵列天线(QCA)引起的准OAM辐射方向图。仿真和实验表明,使用拟议的QCA孔径和配置,可以在远场中感应并保留准OAM波,从而证明了具有定向准强度的对应于l = +1和l = -1的非整数主导OAM模式和旋转2π相位轮廓。这项工作中提出的方法通过使用NQ == 5和NQ == 6的准圆形阵列代替N == 8的传统OAM圆形孔径阵列,大大降低了孔径和成本。

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