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25 Gbit/s QPSK Hybrid Fiber-Wireless Transmission in the W-Band (75–110 GHz) With Remote Antenna Unit for In-Building Wireless Networks

机译:W-Band(75-110 GHz)的25 Gbit / s QpsK混合光纤无线传输,带有用于室内无线网络的远程天线单元

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摘要

In this paper, we demonstrate a photonic up-converted 25 Gbit/s fiber-wireless quadrature phase shift-keying (QPSK) data transmission link at the W-band (75–110 GHz). By launching two free-running lasers spaced at 87.5 GHz into a standard single-mode fiber (SSMF) at the central office, a W-band radio-over-fiber (RoF) signal is generated and distributed to the remote antenna unit (RAU). One laser carries 12.5 Gbaud optical baseband QPSK data, and the other acts as a carrier frequency generating laser. The two signals are heterodyne mixed at a photodetector in the RAU, and the baseband QPSK signal is transparently up-converted to the W-band. After the wireless transmission, the received signal is first down-converted to an intermediate frequency (IF) at 13.5 GHz at an electrical balanced mixer before being sampled and converted to the digital domain. A digital-signal-processing (DSP)-based receiver is employed for offline digital down-conversion and signal demodulation. We successfully demonstrate a 25 Gbit/s QPSK wireless data transmission link over a 22.8 km SSMF plus up to 2.13 m air distance with a bit-error-rate performance below the $2 times 10^{-3}$ forward error correction (FEC) limit. The proposed system may have the potential for the integration of the in-building wireless networks with the fiber access networks, e.g., fiber-to-the-building (FTTB).
机译:在本文中,我们演示了在W波段(75–110 GHz)上进行光子上转换的25 Gbit / s光纤无线正交相移键控(QPSK)数据传输链路。通过将两个间隔为87.5 GHz的自由运行激光器发射到中心局的标准单模光纤(SSMF)中,生成了W波段光纤无线电(RoF)信号并将其分配给远程天线单元(RAU) )。一种激光器携带12.5 Gbaud光学基带QPSK数据,另一种充当载频产生激光器。这两个信号在RAU中的光电检测器处被外差混频,基带QPSK信号透明地上变频到W波段。无线传输之后,首先在电平衡混频器中将接收到的信号在13.5 GHz下变频到中频(IF),然后再采样并转换到数字域。基于数字信号处理(DSP)的接收器用于离线数字下变频和信号解调。我们成功地演示了在22.8 km SSMF上的25 Gbit / s QPSK无线数据传输链路以及高达2.13 m的空中距离,其误码率性能低于2乘10 ^ {-3} $前向纠错(FEC)限制。所提出的系统可能具有将建筑物内无线网络与例如光纤到建筑物(FTTB)的光纤接入网络集成的潜力。

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