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FBG-Based Optical Interface to Support a Multisector Antenna in a Spectrally Efficient Fiber Radio System

机译:基于FBG的光接口,可在频谱高效的光纤无线电系统中支持多扇区天线

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摘要

We propose and demonstrate a fiber Bragg grating (FBG)-based optical interface for use in a spectrally efficient fiber-radio network with multisector antennas. The system has the novel feature of being specifically developed for use in existing wavelength-division-multiplexed network infrastructures. The proposed scheme supports transport of a remote local oscillator (LO) and three subcarrier multiplexed data channels, destined for different antenna sectors, using a single wavelength. The composite signal was contained within a 25-GHz band, selected via a 25-GHz dispersion-flattened FBG. Recovery of the LO and data channels is performed via optical filtering, using either a novel single grating incorporating multiple phase shifts or multiple narrow bandwidth gratings. Our measurements show that all channels within the 25-GHz band are successfully recovered with less than 2-dB optical power penalty between channels. The use of the 25-GHz grating exhibits an improvement in sensitivity of 3 dB for all data channels.
机译:我们提出并演示了一种基于光纤布拉格光栅(FBG)的光学接口,该接口用于具有多扇区天线的频谱高效光纤无线电网络中。该系统具有专门为现有波分复用网络基础设施开发而开发的新颖功能。所提出的方案支持使用单个波长传输目的地为不同天线扇区的远程本地振荡器(LO)和三个子载波多路复用数据信道。复合信号包含在25 GHz频段内,该频段是通过25 GHz色散平坦化FBG选择的。 LO和数据通道的恢复是通过使用包含多个相移的新型单个光栅或多个窄带宽光栅的光学滤波来完成的。我们的测量表明,成功恢复了25 GHz频带内的所有信道,并且信道之间的光功率损失小于2 dB。对于所有数据通道,使用25 GHz光栅可将灵敏度提高3 dB。

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