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SOA-EAM Frequency Up/Down-Converters for 60-GHz Bi-Directional Radio-on-Fiber Systems

机译:用于60 GHz双向光纤无线电系统的SOA-EAM频率上/下变频器

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We investigate a frequency up/down-converter based on a single cascaded semiconductor optical amplifier (SOA)-electroabsorption modulator (EAM) configuration for bi-directional 60-GHz-band radio-on-fiber (RoF) system applications. SOA cross-gain modulation and photodetection in EAM are used for frequency up-conversion, and EAM nonlinearity is used for frequency down-conversion. In our scheme, both 60-GHz local-oscillator (LO) signals and IF signals are optically transmitted from a central station to base stations. We characterize the dependence of frequency up/down-conversion efficiencies on EAM bias and optical LO power. For frequency up-conversion, maximum conversion gain of approximately 8 dB was obtained and, for frequency down-conversion, more than approximately 18-dB conversion loss was measured. Utilizing this frequency up/down converter, we demonstrate a 60-GHz bi-directional RoF link. Optically transmitted downlink 10-Mb/s quadrature phase-shift keying (QPSK) data at 100-MHz IF are frequency up-converted to the 60-GHz band at the base station, and uplink 10-Mb/s QPSK data in the 60-GHz band are frequency down-converted to 150-MHz IF and transmitted to the central station. In addition, the dependence of error vector magnitudes on IF signal power and wavelength is investigated.
机译:我们研究基于双向60 GHz频段光纤无线电(RoF)系统应用的单个级联半导体光放大器(SOA)-电吸收调制器(EAM)配置的上/下变频器频率。 EAM中的SOA交叉增益调制和光电检测用于频率上变频,而EAM非线性用于频率下变频。在我们的方案中,60 GHz本地振荡器(LO)信号和IF信号都从中央站光学传输到基站。我们表征了频率上/下转换效率对EAM偏置和光LO功率的依赖性。对于频率上变频,获得了大约8 dB的最大转换增益,对于频率下变频,测得了大约18 dB以上的转换损耗。利用该频率上/下转换器,我们演示了60 GHz双向RoF链路。 100 MHz IF处的光传输下行链路10-Mb / s正交相移键控(QPSK)数据在基站频率上转换为60-GHz频段,而60上行链路的10-Mb / s QPSK数据上行链路-GHz频段被下变频到150-MHz IF,并传输到中心站。此外,还研究了误差矢量幅度对中频信号功率和波长的依赖性。

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