Broadband photonic-assisted microwave receiver with high cross-channel interference suppression and image rejection

被引:8
作者
Zeng, Shengkang [1 ]
Zhang, Jiejun [1 ]
LI, Lingzhi [1 ]
Zheng, Ruiqi [1 ]
Guan, Yiran [1 ]
Chen, Jingxu [1 ]
Zhang, Qiulin [1 ]
Yao, Jianping [1 ,2 ]
机构
[1] Jinan Univ, Inst Photon Technol, Guangdong Prov Key Lab Opt Fiber Sensing & Commun, Guangzhou 511443, Peoples R China
[2] Univ Ottawa, Sch Elect Engn & Comp Sci, Microwave Photon Res Lab, Ottawa, ON K1N 6N5, Canada
基金
中国国家自然科学基金;
关键词
OPTOELECTRONIC OSCILLATOR; WIDE-BAND; PHASE MODULATION; CONVERSION; FILTER; DOWNCONVERSION; GAIN;
D O I
10.1364/OE.489806
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
A broadband photonic-assisted microwave receiver with high cross-channel inter-ference suppression and image rejection is proposed and experimentally demonstrated. At the input of the microwave receiver, a microwave signal is injected into an optoelectronic oscillator (OEO), which functions as a local oscillator (LO) to generate a low-phase noise LO signal as well as a photonic-assisted mixer to down-convert the input microwave signal to the intermediate frequency (IF). A microwave photonic filter (MPF), realized by the joint operation of a phase modulator (PM) in the OEO and a Fabry-Perot laser diode (FPLD), is used as a narrowband filter to select the IF signal. Thanks to the wide bandwidth of the photonic-assisted mixer and the wide frequency tunable range of the OEO, the microwave receiver can support broadband operation. The high cross-channel interference suppression and image rejection are enabled by the narrowband MPF. The system is evaluated experimentally. A broadband operation from 11.27 to 20.85 GHz is demonstrated. For a multi-channel microwave signal with a channel spacing of 2 GHz, a cross-channel interference suppression ratio of 21.95 dB and an image rejection ratio of 21.51 dB are realized. The spurious-free dynamic range (SFDR) of the receiver is also measured to be 98.25 dB center dot Hz2/3. The performance of the microwave receiver for multi-channel communications is also experimentally evaluated.(c) 2023 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement
引用
收藏
页码:16833 / 16844
页数:12
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