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Analysis of orbital angular momentum electromagnetic wave propagation based on circular antenna array

机译:基于圆形天线阵列的轨道角动量电磁波传播分析

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Orbital angular momentum (OAM) electromagnetic vortex technology is a kind of advantageous communication reuse technology with high spectral efficiency. This paper presents a novel circular antenna array for microwave relay communication, which is the transceiver hardware foundation of OAM electromagnetic wave. The antenna array is composed of horn antennas operating at E-Band, which has good polarization purity to effectively confront polarization fading in wireless channel. The electromagnetic waves with dual characteristics of circular polarization and multi-modal vortex OAM is generated with the optimization design of antenna forms and distance between the elements. In order to avoid the degradation of OAM mode transmission in the free space, the number of antenna elements and relation between transmission distance of electromagnetic vortex wave and antenna array form are discussed. A reasonable OAM antenna aperture is obtained based on the simulation of electromagnetic waves propagation. The stable convergence of gain pattern and phase distribution proves the circular antenna array could be applied to OAM relay communication by combining with advanced weights optimization method.
机译:轨道角动量(OAM)电磁涡旋技术是一种具有较高频谱效率的有利通信复用技术。本文提出了一种用于微波中继通信的新型圆形天线阵列,它是OAM电磁波的收发器硬件基础。天线阵列由工作在E波段的号角天线组成,其具有良好的极化纯度,可以有效应对无线信道中的极化衰落。通过天线形状和元件之间距离的优化设计,产生了具有圆极化和多模涡旋OAM双重特征的电磁波。为了避免在自由空间中OAM模式传输的恶化,讨论了天线元件的数量以及电磁涡波的传输距离与天线阵列形式之间的关系。基于电磁波传播的仿真,可以获得合理的OAM天线孔径。增益方向图和相位分布的稳定收敛,证明了圆形天线阵列与先进的权重优化方法相结合可以应用于OAM中继通信。

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