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Towards 5G: A Photonic Based Millimeter Wave Signal Generation for Applying in 5G Access Fronthaul

机译:迈向5G:基于光子的毫米波信号生成,用于5G接入前传

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摘要

5G communications require a multi Gb/s data transmission in its small cells. For this purpose millimeter wave (mm-wave) RF signals are the best solutions to be utilized for high speed data transmission. Generation of these high frequency RF signals is challenging in electrical domain therefore photonic generation of these signals is more studied. In this work, a photonic based simple and robust method for generating millimeter waves applicable in 5G access fronthaul is presented. Besides generating of the mm-wave signal in the 60 GHz frequency band the radio over fiber (RoF) system for transmission of orthogonal frequency division multiplexing (OFDM) with 5 GHz bandwidth is presented. For the purpose of wireless transmission for 5G application the required antenna is designed and developed. The total system performance in one small cell was studied and the error vector magnitude (EVM) of the system was evaluated.
机译:5G通信要求在其小型基站中进行数Gb / s的数据传输。为此,毫米波(mm-wave)RF信号是用于高速数据传输的最佳解决方案。这些高频RF信号的产生在电学领域具有挑战性,因此对这些信号的光子产生进行了更多的研究。在这项工作中,提出了一种基于光子的简单而健壮的方法来生成适用于5G接入前传的毫米波。除了在60 GHz频带中生成毫米波信号外,还介绍了用于传输5 GHz带宽的正交频分复用(OFDM)的光纤无线电(RoF)系统。为了实现5G应用的无线传输,需要设计和开发所需的天线。研究了一个小小区的总体系统性能,并评估了系统的误差矢量幅度(EVM)。

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