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首页> 外文期刊>Photonic network communications >MIMO-enabled integrated MGDM-WDM distributed antenna system architecture based on plastic optical fibers for millimeter-wave communication
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MIMO-enabled integrated MGDM-WDM distributed antenna system architecture based on plastic optical fibers for millimeter-wave communication

机译:启用MIMO的基于塑料光纤的MGDM-WDM分布式天线系统架构,用于毫米波通信

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摘要

Design of a low-cost fiber-wireless communication architecture is desirable by network operators. Therefore, we demonstrate the transmission of MIMO spatial streams, each having 2 Gbps DPSK signal to two different radio access units (RAUs) in a distributed antenna system architecture. The proposed architecture employs mode group division multiplexing in combination with wavelength division multiplexing to transport RF DPSK signals centered at 10 GHz. The RF signals are used to modulate optical carriers that are centered at 1300 nm and transmitted toward the RAUs over perfluorinated graded-index plastic optical fiber. Heterodyne detection is performed at the RAUs to transmit mm-wave signals at 60 GHz to the end users. Furthermore, wireline access is also achieved at each RAU to support simplex services. A cost-efficient multiple wavelength source is generated from a single laser by employing a dual-drive Mach-Zehnder modulator. An increase in multiplexing gain is achieved using the two LP modes, LP01 and LP11, of each generated wavelength. The proposed architecture gives acceptable BER results for practical implementation.
机译:网络运营商期望设计低成本的光纤无线通信架构。因此,我们演示了MIMO空间流的传输,每个空间流具有2 Gbps DPSK信号到分布式天线系统体系结构中的两个不同的无线访问单元(RAU)。所提出的架构采用模式组分割多路复用与波分多路复用相结合来传输以10 GHz为中心的RF DPSK信号。 RF信号用于调制以1300 nm为中心并通过全氟化渐变折射率塑料光纤向RAU传输的光载波。在RAU上执行外差检测,以将60 GHz的毫米波信号发送给最终用户。此外,还可以在每个RAU上实现有线访问以支持单工服务。通过采用双驱动Mach-Zehnder调制器,可以从单个激光器产生具有成本效益的多波长光源。使用每个生成波长的两个LP模式LP01和LP11,可以提高复用增益。所提出的体系结构为实际实施提供了可接受的BER结果。

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