Effect of Beam Steering on the Performance of Misaligned Multi-Mode OAM Communications

Rui Chen, Minqiang Zou, Jiandong Li
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Abstract

Orbital angular momentum (OAM) at radio frequency (RF) provides a novel approach of multiplexing a set of orthogonal modes on the same frequency channel to achieve high spectral efficiencies. However, OAM communication system requires perfect alignment of the transmit and the receive antennas and this harsh precondition greatly challenges practical application of OAM mode multiplexing gain. In this paper, we first investigate the effect of non- parallel misalignment on the inter-mode interference of the RF-OAM communication system equipped with uniform circular array (UCA). Then, large-scale system analysis shows that increasing the number of antennas has little effect on the inter-mode interference induced by oblique angle, but beam steering approach could eliminate the inter-mode interference completely. Numerical simulations validate our conclusion on the effect of beam steering.
波束导向对失调多模OAM通信性能的影响
射频轨道角动量(OAM)提供了一种在同一频率信道上复用一组正交模以实现高频谱效率的新方法。然而,OAM通信系统要求发射天线和接收天线的完美对准,这一苛刻的前提条件极大地挑战了OAM模式复用增益的实际应用。本文首先研究了非平行失调对均匀圆阵列(UCA)射频- oam通信系统模间干扰的影响。然后,通过大尺度系统分析表明,增加天线数量对斜角引起的模间干扰影响不大,而波束转向可以完全消除模间干扰。数值模拟验证了波束转向效应的结论。
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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