DocumentCode
1151577
Title
Analytical study of binary differential impulse radio-ultra wide band over single-mode fibre systems using two receiver structures
Author
Jazayerifar, M. ; Salehi, Jawad ; Cabon, Beatrice
Author_Institution
Electr. Eng. Dept., Sharif Univ. of Technol., Tehran, Iran
Volume
3
Issue
2
fYear
2009
fDate
2/1/2009 12:00:00 AM
Firstpage
309
Lastpage
320
Abstract
A binary differential impulse radio-ultra wide band (IR-UWB) communication scheme over a single-mode optical fibre is examined. For a receiver structure, the conventional electrical receiver as well as an optical receiver structure, which is similar to the optical receiver used for digital, optically phase-modulated differential phase shift keying, are considered. The optical receiver can alleviate the IR-UWB receiver implementation challenges and it is studied for the first time in the context of IR-UWB. Considering various important noises, for example, phase noise, laser intensity noise, thermal noise and shot noise, analytical expressions for the error probability of the aforementioned receivers are derived. The mathematical models for optical components including laser diode and single-mode fibre, along with the analytical expressions for the receiver´s error probability, are used to evaluate the overall performance of an UWB communication system over a fibre transmission medium. Furthermore, the electrical receiver is compared with the optical receiver and it is shown that the performance of the optical receiver can be as good as that of the electrical receiver and even better. The impact of wireless channel fading, bias current of laser diode and the coherence time of laser diode on the UWB over fibre system performance is also examined.
Keywords
differential phase shift keying; error statistics; fading channels; optical fibre communication; optical receivers; radio-over-fibre; semiconductor lasers; ultra wideband communication; binary differential impulse radio-ultra wide band communication; electrical receiver; error probability; laser diode bias current; mathematical model; optical component; optical receiver structure; phase-modulated differential phase shift keying; single-mode optical fibre system; wireless channel fading;
fLanguage
English
Journal_Title
Communications, IET
Publisher
iet
ISSN
1751-8628
Type
jour
DOI
10.1049/iet-com:20080124
Filename
4777685
Link To Document