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首页> 外文期刊>Journal of Lightwave Technology >Full-Duplex 1.0 Gbit/s Data Transmission Over 60 GHz Radio-on-Fiber Access System Based on the Loop-Back Optical Heterodyne Technique
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Full-Duplex 1.0 Gbit/s Data Transmission Over 60 GHz Radio-on-Fiber Access System Based on the Loop-Back Optical Heterodyne Technique

机译:基于环回光外差技术的60 GHz无线光纤接入系统上的全双工1.0 Gbit / s数据传输

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摘要

Full-duplex transmission over a 60 GHz radio-on-fiber access system based on the optical heterodyne technique is verified in this paper. With this technique, an optical carrier generator on the transmitting side consolidates the functions of wavelength and polarization control for optical heterodyne detection in uplinks and optical millimeter-wave generation in downlinks, on behalf of each optical transmitter/receiver. Therefore, the whole system configuration can be significantly simplified. A full-duplex 1.0 Gbit/s transmission experiment over 10 km of single-mode fiber, which represents an access network transmission, is demonstrated using the simultaneous modulation/photodetection operation of an electroabsorption modulator (EAM). Bit error rates of less than 10$^{-9}$ were obtained in both the uplink and downlink without noticeable mutual interference, even though the laser source and the EAM is shared by both links, and no significant dispersion-induced degradation was observed. Moreover, the experimental results showed that an optical link budget of 9.2 dB can be achieved with the experimental configuration.
机译:本文验证了基于光学外差技术的60 GHz光纤接入系统上的全双工传输。利用这种技术,代表每个光发送器/接收器,发送侧的光载波发生器合并了波长和偏振控制功能,用于上行链路中的光外差检测和下行链路中的光毫米波生成。因此,可以大大简化整个系统的配置。使用电吸收调制器(EAM)的同时调制/光电检测操作,演示了在10 km的单模光纤上进行的全双工1.0 Gbit / s传输实验,代表接入网络传输。即使在两个链路共享激光源和EAM的情况下,在上行链路和下行链路上都获得了不到10 $ ^ {-9} $的误码率,而没有明显的相互干扰,并且没有观察到明显的色散引起的降级。此外,实验结果表明,利用实验配置可以实现9.2 dB的光链路预算。

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