采用超连续光源和阵列波导光栅滤波器的全双工25ghz间隔DWDM mm波段光纤无线电系统

T. Sono, Y. Takahashi, T. Nakasyotani, H. Toda, T. Kuri, K. Kitayama
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引用次数: 18

摘要

本文首次利用超连续介质光源和光频交织技术实现了25 ghz间隔密集波分复用(DWDM)毫米波光纤无线电(RoF)系统的全双工传输。在该方案中,利用解复用器和复用器阵列波导光栅的滤波响应来抑制不需要的光边带。所有25ghz间隔的SC模式都用于具有光子上转换的下行传输。上行RoF信号由复用的下行信号进行光子下转换产生。上行链路和下行链路60 ghz频段156mbps RoF信号同时通过25公里的标准单模光纤传输,具有无误差和0.5 dB功率损失
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Full-Duplex 25-GHz Spacing DWDM MM-Wave-Band Radio-on-Fiber System Using a Supercontinuum Light Source and Arrayed-Waveguide-Grating Filters
We demonstrate for the first time the full-duplex transmission of 25-GHz spacing dense wavelength-division multiplexing (DWDM) millimeter-wave-band radio-on-fiber (RoF) system using a supercontinuum (SC) light source and optical frequency interleaving technique. In the proposed scheme, filtering response of the arrayed waveguide gratings for demultiplexer and multiplexer is used for suppression of undesired optical sidebands. All the 25-GHz spacing SC modes are used for downlink transmission with photonic up-conversion. The uplink RoF signals are generated with photonic down-conversion from the reused downlink signals. The up- and downlinks 60-GHz-band 156-Mbps RoF signals were simultaneously transmitted over 25-km standard single-mode fibers with error-free and 0.5 dB power penalties
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