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Multipath Effects in Millimetre-Wave Wireless Communication using Orbital Angular Momentum Multiplexing

机译:使用角动量复用的毫米波无线通信中的多径效应

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摘要

Electromagnetic waves carrying orbital angular momentum (OAM) have been used for mode division multiplexing in free-space communication systems to increase both the capacity and the spectral efficiency. In the case of conventional wireless communication links using non-OAM beams, multipath effects caused by beam spreading and reflection from the surrounding objects affect the system performance. This paper presents the results of analysis, simulations, and measurements of multipath effects in a millimetre-wave communication link using OAM multiplexing at 28 GHz. Multipath-induced intra- and inter-channel crosstalk, which are caused by specular reflection from a plane parallel to the propagation path, are analysed and measured. Both the simulation and the experimental results show that an OAM channel with a high OAM number ℓ tends to suffer from both strong intra-channel crosstalk and strong inter-channel crosstalk with other OAM channels. Results of the analysis show that this observation can be explained on the basis of both the properties of OAM beam divergence and the filtering effect at the receiver, which is associated with the spiral wavefront of OAM beams.
机译:携带轨道角动量(OAM)的电磁波已用于自由空间通信系统中的模式分割多路复用,以提高容量和频谱效率。在使用非OAM波束的常规无线通信链路的情况下,由波束扩展和周围物体反射引起的多径效应会影响系统性能。本文介绍了在28 GHz处使用OAM复用的毫米波通信链路中多径效应的分析,仿真和测量结果。分析和测量由平行于传播路径的平面的镜面反射引起的多路径引起的通道内和通道间串扰。仿真和实验结果均表明,具有高OAM数O的OAM通道往往会遭受强的通道内串扰和与其他OAM通道的强通道间串扰。分析结果表明,可以基于OAM光束发散特性和接收器处的滤波效果来解释这一观察,这与OAM光束的螺旋波前有关。

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