DocumentCode
111557
Title
In-Field Experiments of the First Photonics-Based Software-Defined Coherent Radar
Author
Scotti, F. ; Laghezza, F. ; Serafino, G. ; Pinna, Sergio ; Onori, D. ; Ghelfi, P. ; Bogoni, Antonella
Author_Institution
Dept. of CNIT, Nat. Lab. of Photonic Networks, Pisa, Italy
Volume
32
Issue
20
fYear
2014
fDate
Oct.15, 15 2014
Firstpage
3365
Lastpage
3372
Abstract
The complete scheme of the first photonics-based fully digital coherent radar system demonstrator is presented. The proposed architecture relies on a novel flexible photonic transceiver, based on the software-defined radio paradigm, capable of generating and receiving signals with arbitrary waveform and carrier frequency. The system core is a single mode-locked laser, whose inherent phase and amplitude stability allows generating high-quality carriers over an extremely broad frequency range, as well as directly digitizing high-frequency signals with unprecedented precision. The implementation of the field trial demonstrator is presented in detail, focusing on both the photonic transceiver and the antenna´s front-end, as well as on the employed digital signal processing. The excellent performance is proved by the results of the in-field experiments carried out with noncooperative targets in real scenarios. The outcomes from the aerial and naval target detections are here presented and discussed.
Keywords
radar signal processing; transceivers; antenna front end; digital coherent radar system demonstrator; digital signal processing; field trial demonstrator; first photonics; flexible photonic transceiver; infield experiments; photonic transceiver; receiving signals; single mode locked laser; software defined coherent radar; software defined radio paradigm; Laser radar; Optical pulses; Optical transmitters; Photonics; Radio frequency; Receivers; Analog to digital converter (ADC); coherent radar; microwave photonics; mode-locked laser (MLL);
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/JLT.2014.2322904
Filename
6813599
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