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Analog and digital transport of RF channels over converged 5G wireless-optical networks

机译:融合5G无线网络上RF通道的模拟和数字传输

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Under the exponential increase demand by the emerging 5G wireless access networking and thus data-center based Internet, novel and economical transport of RF channels to and from wireless access systems. This paper presents the transport technologies of RF channels over the analog and digital domain so as to meet the demands of the transport capacity reaching multi-Tbps, in the followings: (ⅰ) The convergence of 5G broadband wireless and optical networks and its demands on capacity delivery and network structures; (ⅱ) Analog optical technologies for delivery of both the information and RF carriers to and from multiple-input multiple-output (MIMO) antenna sites so as to control the beam steering of MIMO antenna in the mmW at either 28.6 GHz and 56.8 GHz RF carrier and delivery of channels of aggregate capacity reaching several Tbps; (ⅱ) Transceiver employing advanced digital modulation formats and digital signal processing (DSP) so as to provide 100G and beyond transmission rate to meet the ultra-high capacity demands with flexible spectral grids, hence pay-on-demand services. The interplay between DSP-based and analog transport techniques is examined; (ⅲ) Transport technologies for 5G cloud access networks and associate modulation and digital processing techniques for capacity efficiency; and (ⅳ) Finally the integrated optic technologies with novel lasers, comb generators and simultaneous dual function photonic devices for both demultiplexing/multiplexing and modulation are proposed, hence a system on chip structure can be structured. Quantum dot lasers and matrixes of micro ring resonators are integrated on the same Si-on-Silica substrate are proposed and described.
机译:在新兴的5G无线接入网络以及基于数据中心的Internet呈指数级增长的需求下,RF通道往返无线接入系统的新颖而经济的传输方式。本文介绍了RF通道在模拟和数字域上的传输技术,以满足以下需求:传输容量达到数Tbps:(ⅰ)5G宽带无线和光网络的融合及其对容量交付和网络结构; (ⅱ)模拟光学技术,用于在多输入多输出(MIMO)天线站点之间传送信息和RF载波,从而在28.6 GHz和56.8 GHz RF上控制mmW的MIMO天线的波束转向总容量达到几个Tbps的运营商和交付渠道; (ⅱ)收发器采用先进的数字调制格式和数字信号处理(DSP),以提供100G和更高的传输速率,以灵活的频谱网格满足超高容量需求,从而实现按需付费服务。研究了基于DSP的传输技术与模拟传输技术之间的相互影响; (ⅲ)5G云接入网的传输技术以及关联的调制和数字处理技术以提高容量效率; (ⅳ)最后,提出了具有新颖激光器,梳状发生器和同时双功能光子器件的用于解复用/复用和调制的集成光学技术,因此可以构建片上系统结构。提出并描述了量子点激光器和微环谐振器矩阵集成在同一硅基硅衬底上。

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