DocumentCode :
24379
Title :
Impact of Amplitude Noise in Millimeter-Wave Radio-Over-Fiber Systems
Author :
Khayatzadeh, Ramin ; Elwan, Hamza Hallak ; Poette, Julien ; Cabon, Beatrice
Author_Institution :
L´Inst. de Microelectron. Electromagn. et Photonique et le Lab. d´Hyperfreq. et de Caracterisation, Grenoble, France
Volume :
33
Issue :
13
fYear :
2015
fDate :
July1, 1 2015
Firstpage :
2913
Lastpage :
2919
Abstract :
In this paper, a complete theoretical and experimental study of amplitude noise impact on performance of radio-over-fiber (RoF) communication system in millimeter-wave (MMW) frequency band is presented. A simulation method is also presented, using which one can determine the origin of the amplitude noise which has the most impact on error vector magnitude (EVM). This method is based on analyzing the trends of EVM versus received optical power. The impact of different optical and electrical noise such as relative intensity noise, shot noise and thermal noise on EVM is precisely studied employing experimental and theoretical analysis. In the proposed RoF system, two techniques are used to generate MMW signal, and the EVM results are compared from amplitude noise viewpoint. In the first technique, two independent distributed feedback lasers are used to generate MMW signal at the output of a photodetector, and the second technique is based on a passively mode-locked laser diode. Impact of optical sources phase noise on performance of the system is removed using a noncoherent down-conversion method based on envelope detector. Using this method, a very good matching between the experimental and the simulation results is observed.
Keywords :
distributed feedback lasers; laser noise; millimetre waves; phase noise; photodetectors; radio-over-fibre; semiconductor lasers; EVM; MMW frequency band; RoF system; amplitude noise; distributed feedback laser; electrical noise; envelope detector; error vector magnitude; millimeter wave radio-over-fiber communication system; noncoherent down-conversion method; optical noise; optical sources phase noise; passively mode-locked laser diode; photodetector; Laser noise; Laser theory; Optical attenuators; Optical mixing; Optical noise; Signal to noise ratio; Distributed Feedback (DFB) Laser; Distributed feedback (DFB) laser; Envelope detector; Error Vector Magnitude (EVM); Millimeter Wave (MMW); Passively Mode Locked Laser Diode (PMLLD); Phase noise; Radio-over-Fiber (RoF); Relative Intensity Noise (RIN); Shot Noise; envelope detector; error vector magnitude (EVM); millimeter wave (MMW); passively mode-locked laser diode (PMLLD); phase noise; radio-over-fiber (RoF); relative intensity noise (RIN); shot noise;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2015.2422572
Filename :
7084584
Link To Document :
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