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Dual-wavelength linearization of analog photonic link based on PM-IM conversion

机译:基于PM-IM转换的模拟光子链路双波长线性化

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摘要

A novel method for linearization of phase-modulated analog photonic link is proposed in this paper. Heterodyne carrier source (HCS) is obtained by polarization multiplexing of two different-wavelength optical carriers. A Z-cut phase modulator (PM) which exhibits different electro-optic modulation indexes in orthogonal polarization states is used to modulate radio frequency signal onto the heterodyne optical carriers. Two channels of a WDM are used to filter out the positive or negative optical sidebands respectively and thus implement PM-IM conversion. The third-order intermodulation distortions (IMD3s) of the two different WDM channels are opposite in phase. IMD3 can be suppressed by combining signals from the two different WDM channels and adjusting the power ratio of the two optical carriers. Apart from the obvious improvement of SFDR, no need for bias control and easy adjusting of the power ratio make the method easy to implement. Experimental results show that the spurious free dynamic range (SFDR) of the system is improved by 14.54 dB.
机译:本文提出了一种新的相位调制模拟光子连接线性化方法。通过两种不同波长光学载波的偏振复用来获得外差载波源(HCS)。在正交偏振状态下表现出不同的电光调制指标的Z型相位调制器(PM)用于调制射频信号到外差光学载体上。 WDM的两个通道用于分别滤除正或负光学边带,从而实现PM-IM转换。两个不同WDM信道的三阶互调失真(IMD3S)相对相反。可以通过组合来自两个不同的WDM信道的信号并调整两个光载波的功率比来抑制IMD3。除了SFDR的明显改进外,不需要偏置控制,轻松调整功率比使该方法易于实现。实验结果表明,系统的虚假自由动态范围(SFDR)得到了14.54 dB。

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