DocumentCode :
910915
Title :
No-Guard-Interval Coherent Optical OFDM for 100-Gb/s Long-Haul WDM Transmission
Author :
Sano, Akihide ; Yamada, Eiichi ; Masuda, Hiroji ; Yamazaki, Etsushi ; Kobayashi, Takayuki ; Yoshida, Eiji ; Miyamoto, Yutaka ; Kudo, Riichi ; Ishihara, Koichi ; Takatori, Yasushi
Author_Institution :
NTT Network Innovation Labs., NTT Corp., Yokosuka, Japan
Volume :
27
Issue :
16
fYear :
2009
Firstpage :
3705
Lastpage :
3713
Abstract :
This paper describes coherent optical orthogonal frequency division multiplexing (CO-OFDM) techniques for the long-haul transmission of 100-Gb/s-class channels. First, we discuss the configurations of the transmitter and receiver that implement the optical multiplexing/demultiplexing techniques for high-speed CO-OFDM transmission. Next, we review the no-guard-interval (No-GI) CO-OFDM transmission scheme which utilizes optical multiplexing for OFDM signal generation and the intradyne receiver configuration with digital signal processing (DSP). We examine the transmission characteristics of the proposed scheme, and show that No-GI CO-OFDM offers compact signal spectra and superior performance with regard to tolerance against optical amplifier noise and polarization-mode dispersion (PMD). We then introduce long-haul high-capacity transmission experiments employing No-GI CO-OFDM; 13.4 Tb/s (134 times 111 Gb/s) transmission is successfully demonstrated over 3600 km of ITU-T G.652 single-mode fiber without using optical dispersion compensation.
Keywords :
OFDM modulation; optical fibre communication; coherent optical OFDM; digital signal processing; long-haul WDM transmission; long-haul high-capacity transmission; optical amplifier noise; optical dispersion compensation; optical multiplexing; optical multiplexing/demultiplexing techniques; orthogonal frequency division multiplexing; polarization-mode dispersion; Chromatic dispersion; coherent detection; fiber-optic transmission systems; optical nonlinear effect; orthogonal frequency division multiplexing; polarization mode dispersion;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2009.2023369
Filename :
4967951
Link To Document :
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