DocumentCode
1245469
Title
Performance evaluation of EDFA preamplified receivers taking into account intersymbol interference
Author
Ribeiro, Luìs F B ; Da Rocha, José R F ; Pinto, João L.
Author_Institution
Dept. de Electron. e Telecoms, Aveiro Univ., Portugal
Volume
13
Issue
2
fYear
1995
fDate
2/1/1995 12:00:00 AM
Firstpage
225
Lastpage
232
Abstract
Exact mathematical derivation of the moment generating function for an optically preamplified receiver output current is carried out. Amplified spontaneous emission noise as well as Poisson shot-noise and thermal noise originated at the receiver front-end are considered. Optical bandpass filter is also taken into account. This new global description of the stochastic processes involved in optical signal detection enables analytical assessment of the overall receiver performance without restrictions on the optical input pulse and the electronic filter response. Various bit error rate evaluation methods such as Chernoff bound, modified Chernoff bound, Gaussian approximation and saddlepoint approximation are developed based on the moment generating function and their precision compared
Keywords
approximation theory; erbium; fibre lasers; optical filters; optical noise; optical receivers; optical signal detection; performance evaluation; shot noise; stochastic processes; superradiance; Chernoff bound; EDFA preamplified receivers; Gaussian approximation; Poisson shot-noise; amplified spontaneous emission noise; bit error rate evaluation; electronic filter response; exact mathematical derivation; intersymbol interference; moment generating function; optical bandpass filter; optical input pulse; optical signal detection; optically preamplified receiver output current; overall receiver performance; performance evaluation; receiver front-end; saddlepoint approximation; stochastic processes; thermal noise; Band pass filters; Erbium-doped fiber amplifier; Optical filters; Optical noise; Optical receivers; Optical signal detection; Signal analysis; Spontaneous emission; Stimulated emission; Stochastic processes;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/50.365210
Filename
365210
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