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首页> 外文期刊>Lasers in engineering >Photonic Microwave Multi-frequency Measurement and Signal Detection Based on Superimposed Chirped Fibre Bragg Gratings
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Photonic Microwave Multi-frequency Measurement and Signal Detection Based on Superimposed Chirped Fibre Bragg Gratings

机译:基于叠加Chi光纤光栅的光子微波多频测量与信号检测

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A photonic approach to implement microwave multi-frequency measurement and signal detection based on superimposed chirped fibre Bragg grating (S-CFBG) is proposed. This receiver can measure microwave signal with multiple frequency components and detect baseband data information located at these frequency simultaneously without local radio frequency (RF) source array. An optical frequency comb (OFC) is generated by using the first S-CFBG. The input broadband RF signal is multicast by the OFC, spectrally sliced by the second S-CFBG and then separated by an optical demux. Multi-frequency signal with measurement range form 0 to 40 GHz and accuracy of 0.5 GHz is achieved. The bit error rate (BER) performance of the received non-return-to-zero (NRZ) signal, which was located at different microwave frequency, is researched.
机译:提出了一种基于chi光纤布拉格光栅(S-CFBG)的微波多频测量和信号检测的光子方法。该接收器可以测量具有多个频率分量的微波信号,并同时检测位于这些频率的基带数据信息,而无需本地射频(RF)源阵列。通过使用第一S-CFBG来产生光频率梳(OFC)。输入的宽带RF信号由OFC进行多播,由第二个S-CFBG进行频谱切片,然后由光解复用器分离。测量范围为0至40 GHz且精度为0.5 GHz的多频信号。研究了位于不同微波频率的非归零(NRZ)信号的误码率(BER)性能。

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