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Wideband Optical Multipath Interference Cancellation Based on a Dispersive Element

机译:基于色散元素的宽带光多径干扰消除

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摘要

A novel scheme is proposed for analog multipath interference cancellation based on two polarization modulators (PolMs) and a dispersive element. Multiple optical compensation branches are formed by an array of tunable lasers. By adjusting the wavelength and the optical power of each tunable laser, the delay and the magnitude of the known interference signal can be finely tuned, so that the multipath interference can be accurately reconstructed for counter-phase cancellation. The dispersion-induced RF power fading in a dispersive optical link can also be compensated because of the PolM-based intensity modulation scheme, so the best cancellation depth can be obtained at any desired frequency. Experimental result shows that the proposed system can achieve more than 44-dB cancellation depth for wideband signals.
机译:提出了一种基于两个偏振调制器(PolMs)和色散元件的模拟多径干扰消除方案。多个光学补偿分支由可调谐激光器阵列形成。通过调节每个可调激光器的波长和光功率,可以对已知干扰信号的延迟和幅度进行微调,从而可以准确地重构多径干扰,以进行反相消除。由于基于PolM的强度调制方案,还可以补偿色散光链路中色散引起的RF功率衰减,因此可以在任何所需频率下获得最佳消除深度。实验结果表明,所提出的系统可以实现超过44 dB的宽带信号消除深度。

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