Presentation 2015-01-23
Tolerance to Nonlinearity Effects of 100Gbit/s Dual-Carrier DP-BPSK over Long Haul Transmission
Masashi BINKAI, Keisuke MATSUDA, Tsuyoshi YOSHIDA, Hiroki GOTO, Kenichi UTO,
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Abstract(in English) We experimentally investigated the transmission performance of 100 Gbit/s dual-carrier DP-BPSK signals transmitted on a 3,080 km in-line chromatic dispersion compensated fiber link with real-time digital signal processing. A dual-carrier DP-BPSK signal can have about 2 dB higher optical power than a single-carrier DP-QPSK signal. We analyze the constellation of BPSK and QPSK after highly nonlinear long-haul transmission. It is confirmed that amplitude noise can be suppressed allowing larger nonlinear phase noise in BPSK because of more phase margin compared with QPSK. This enables BPSK to outperform QPSK in long-haul transmission accompanying with large nonlinear phase noise.
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Keyword(in English) coherent optical transmission / digital signal processing / DP-BPSK / nonlinear effect
Paper # OCS2014-101
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Committee OCS
Conference Date 2015/1/15(1days)
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Registration To Optical Communication Systems (OCS)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Tolerance to Nonlinearity Effects of 100Gbit/s Dual-Carrier DP-BPSK over Long Haul Transmission
Sub Title (in English)
Keyword(1) coherent optical transmission
Keyword(2) digital signal processing
Keyword(3) DP-BPSK
Keyword(4) nonlinear effect
1st Author's Name Masashi BINKAI
1st Author's Affiliation Information Technology R&D Center, Mitsubishi Electric Corporation()
2nd Author's Name Keisuke MATSUDA
2nd Author's Affiliation Information Technology R&D Center, Mitsubishi Electric Corporation
3rd Author's Name Tsuyoshi YOSHIDA
3rd Author's Affiliation Information Technology R&D Center, Mitsubishi Electric Corporation
4th Author's Name Hiroki GOTO
4th Author's Affiliation Information Technology R&D Center, Mitsubishi Electric Corporation
5th Author's Name Kenichi UTO
5th Author's Affiliation Information Technology R&D Center, Mitsubishi Electric Corporation
Date 2015-01-23
Paper # OCS2014-101
Volume (vol) vol.114
Number (no) 403
Page pp.pp.-
#Pages 5
Date of Issue