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Photonic instantaneous frequency measurement of wideband microwave signals

机译:宽带微波信号的光子瞬时频率测量

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摘要

We propose a photonic system for instantaneous frequency measurement (IFM) of wideband microwave signals with a tunable measurement range and resolution based on a polarization-maintaining fiber Bragg grating (PM-FBG). Firstly, in order to be insensitive to laser power fluctuation, we aim at generating two different frequency to amplitude characteristics so that we can normalize them to obtain an amplitude comparison function (ACF). Then we encode these two different wavelengths in two perpendicular polarizations by using the PM-FBG which shows different transmission profiles at two polarizations. The ACF is capable of being adjusted by tuning polarization angle, therefore the measurement range and resolution are tunable. By theoretical analyses and simulated verification, a frequency measurement range of 0~17.2 GHz with average resolution of ±0.12 GHz can be achieved, which signifies a wide measurement range with relatively high resolution. Our system does not require large optical bandwidth for the components because the wavelength spacing can be small, making the system affordable, stable, and reliable with more consistent characteristics due to the narrowband nature of the optical parts. PM-FBG with high integration can be potentially used for more polarization manipulating systems and the use of a single-polarization dual-wavelength laser can simplify the architecture and enhance the stability.
机译:我们提出了一种基于保偏光纤布拉格光栅(PM-FBG)的,具有可调范围和分辨率的宽带微波信号瞬时频率测量(IFM)的光子系统。首先,为了对激光功率波动不敏感,我们旨在生成两个不同的频率到幅度特性,以便我们可以将它们归一化以获得幅度比较函数(ACF)。然后,我们使用PM-FBG在两个垂直偏振中对这两个不同的波长进行编码,该PM-FBG在两个偏振中显示出不同的传输曲线。可以通过调整偏振角来调整ACF,因此测量范围和分辨率是可调的。通过理论分析和模拟验证,可以实现0〜17.2 GHz的频率测量范围,平均分辨率为±0.12 GHz,这意味着较宽的测量范围和较高的分辨率。我们的系统不需要为组件提供大的光学带宽,因为波长间隔可以很小,由于光学部件的窄带特性,使得该系统价格合理,稳定且可靠,并具有更一致的特性。具有高集成度的PM-FBG可以潜在地用于更多的偏振操纵系统,并且使用单偏振双波长激光器可以简化架构并增强稳定性。

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