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Modelling and Simulation of an Integrated 28-GHz Rotman Lens Beamformer for 5G Subsystems

机译:用于5G子系统的集成28-GHz旋转磁镜镜镜面边框的建模与仿真

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This paper presents the modelling and simulation of an integrated millimetre-wave (mm-wave) subsystem module, comprising a beamforming network (BFN) based on the flexible Rotman lens, along with the antenna arrays of resonant series-fed rectangular patches. The developed passive switched-beam network is intended for operation in the 28-GHz band, for the deployment in the fifth generation (5G) systems. The primary objective of this work is to conduct the feasibility of developing a lens-fed array subsystem based on the liquid-crystal polymer (LCP) substrate and to evaluate the performance in terms of the main figure of merit for the beam steering. The performance in terms of the generated electromagnetic (EM) radiation patterns has been shown. The BFN exhibits significant characteristics, to be utilised as a low-profile unit of the 28-GHz transceivers with the in-built electronic beam steering for the flexible 5G systems.
机译:本文介绍了集成毫米波(MM波)子系统模块的建模和仿真,包括基于柔性旋转镜头的波束形成网络(BFN),以及谐振串联矩形块的天线阵列。开发的被动交换波束网络用于在28-GHz频段中操作,用于第五代(5G)系统中的部署。本作作品的主要目的是进行基于液晶聚合物(LCP)衬底的透镜馈送阵列子系统的可行性,并根据光束转向的主要值术语来评估性能。已经示出了在所产生的电磁(EM)辐射图方面的性能。 BFN具有显着的特性,用作28GHz收发器的低调单元,其具有用于柔性5G系统的内置电子束转向。

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