DocumentCode
1181303
Title
Optically preamplified receiver performance due to VSB filtering for 40-Gb/s optical signals modulated with various formats
Author
Lee, Jaehoon ; Kim, Seongha ; Kim, YongHoon ; Oh, Yunje ; Hwang, Seongtaek ; Jeong, Jichai
Author_Institution
Dept. of Radio Eng., Korea Univ., Seoul, South Korea
Volume
21
Issue
2
fYear
2003
Firstpage
521
Lastpage
527
Abstract
Optically preamplified receiver performance according to the vestigial sideband (VSB) filtering has been numerically investigated for 40-Gb/s optical signals modulated with nonreturn-to-zero, duobinary nonreturn-to-zero (NRZ), return-to-zero (RZ), carrier-suppressed RZ, and duobinary carrier-suppressed RZ formats. The VSB filtering enables the spectral widths of NRZ, duobinary NRZ, and RZ signals to be reduced without severe power penalties at the receiver. On the other hand, carrier-suppressed RZ and duobinary carrier-suppressed RZ signals have no large advantages over VSB filtering because of the characteristics of their signals. Our results suggest that RZ signals are the most suitable modulation format for VSB filtering, without considering the filter loss, because of the tolerance of the intersymbol interference and a large spectral width. However, duobinary NRZ signals are the most suitable modulation format for VSB filtering, considering the filter loss, because of their narrow spectral width.
Keywords
intersymbol interference; optical fibre filters; optical modulation; optical receivers; 40 Gbit/s; RZ signals; VSB filtering; carrier-suppressed RZ signals; duobinary NRZ signals; duobinary carrier-suppressed RZ format; filter loss; intersymbol interference tolerance; nonreturn-to-zero format; optical signal modulation formats; optically preamplified receiver performance; spectral width; vestigial sideband filtering; Arrayed waveguide gratings; Bandwidth; Filtering; Optical distortion; Optical filters; Optical modulation; Optical receivers; Optical sensors; Optical signal processing; Wavelength division multiplexing;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/JLT.2003.808777
Filename
1193838
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