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基于调频连续波的光子辅助快速宽带微波矢量网络分析仪

Photonic-assisted fast broadband microwave vector network analyzer based on FMCW.

作者信息

Xiaoen Chen, Long Wang, Min Ding, Jianping Chen, Guiling Wu

出版信息

Opt Express. 2023 Nov 6;31(23):38761-38770. doi: 10.1364/OE.506110.

DOI:10.1364/OE.506110
PMID:38017972
Abstract

In the paper, we propose a photonic-assisted fast broadband microwave vector network analyzer (FB-VNA) based on frequency modulated continuous wave (FMCW). A photonic recirculating frequency shift (RFS) loop is used to extend the bandwidth of optical FMCW. The bandwidth-extended optical FMCW beats with the continuous wave (CW) light to generate the broadband electrical FMCW, which serves as the incident signal of the device under test (DUT). The response signals of the DUT are modulated on the bandwidth-extended optical FMCW to perform de-chirping. After coherently beating the de-chirped light with the CW light, the broadband response signals of DUT are down-converted to a single-tone intermediate frequency (IF) signal carrying the frequency response of DUT, and the scattering parameters of DUT can be obtained. The single-tone IF signal relaxes the demand on the bandwidth and sampling rate of the electrical backend. Thanks to the RFS loop and the short period of FMCW, the measurement frequency range is highly extended and measurement speed is greatly accelerated at the same time, which can be applied in monitoring sudden changes of DUT features. A bandwidth multiplication of the FMCW from 6-18 GHz to 6-498 GHz is experimentally implemented. With available photodetectors (PDs) and Mach-Zehnder modulators (MZMs), a 6-54 GHz FB-VNA is demonstrated, and the S parameters of a 25-GHz low-pass filter (LPF) is measured within 6 s. The sudden changes of S parameter of DUT simulated by fast adjusting the bias voltage of the MZM used for de-chirping are also characterized by the proposed FB-VNA. The sudden changes as short as 0.01 s can be captured.

摘要

在本文中,我们提出了一种基于调频连续波(FMCW)的光子辅助快速宽带微波矢量网络分析仪(FB-VNA)。采用光子循环频移(RFS)环来扩展光学FMCW的带宽。带宽扩展后的光学FMCW与连续波(CW)光拍频以产生宽带电FMCW,其作为被测设备(DUT)的入射信号。DUT的响应信号在带宽扩展后的光学FMCW上进行调制以执行去啁啾操作。将去啁啾后的光与CW光相干拍频后,DUT的宽带响应信号被下变频为携带DUT频率响应的单音中频(IF)信号,从而可获得DUT的散射参数。单音IF信号放宽了对电后端带宽和采样率的要求。得益于RFS环和FMCW的短周期,测量频率范围得到极大扩展,同时测量速度大幅加快,可应用于监测DUT特性的突然变化。通过实验实现了FMCW从6 - 18 GHz到6 - 498 GHz的带宽倍增。利用现有的光电探测器(PD)和马赫-曾德尔调制器(MZM),展示了一台6 - 54 GHz的FB-VNA,并在6 s内测量了一个25 GHz低通滤波器(LPF)的S参数。通过快速调整用于去啁啾的MZM的偏置电压来模拟DUT的S参数突然变化,所提出的FB-VNA也对其进行了表征。能够捕获短至0.01 s的突然变化。

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