Presentation 2008-08-28
Transmission of 10-Gsymbol/s 16-QAM Signals using Digital Coherent Optical Receiver
Yojiro MORI, Chao ZHANG, Koji IGARASHI, Kazuhiro KATOH, Kazuro KIKUCHI,
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Abstract(in English) The use of multilevel modulation formats is one of the most effective ways of enhancing the spectral efficiency in optical communication systems. Quadrature amplitude modulation (QAM) is the best candidate among various modulation formats, because we can minimize the power penalty due to the increase in the level of modulation. On the other hand, the digital coherent receiver can demodulate any multi-level coded optical signals without relying upon a complicated optical phase-locked loop. In this paper, using such a digital coherent optical receiver, we demonstrate transmission of a 10-Gsymbol/s 16-QAM signal over a 100-km standard single-mode fiber.
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Keyword(in English) Digital coherent optical receiver / Quadrature amplitude modulation / Digital signal processing / Adaptive equalization
Paper # OCS2008-39
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Committee OCS
Conference Date 2008/8/21(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) Transmission of 10-Gsymbol/s 16-QAM Signals using Digital Coherent Optical Receiver
Sub Title (in English)
Keyword(1) Digital coherent optical receiver
Keyword(2) Quadrature amplitude modulation
Keyword(3) Digital signal processing
Keyword(4) Adaptive equalization
1st Author's Name Yojiro MORI
1st Author's Affiliation Department of Electronic Engineering, The University of Tokyo()
2nd Author's Name Chao ZHANG
2nd Author's Affiliation Department of Electronic Engineering, The University of Tokyo
3rd Author's Name Koji IGARASHI
3rd Author's Affiliation Department of Electronic Engineering, The University of Tokyo
4th Author's Name Kazuhiro KATOH
4th Author's Affiliation Department of Electronic Engineering, The University of Tokyo
5th Author's Name Kazuro KIKUCHI
5th Author's Affiliation Department of Electronic Engineering, The University of Tokyo
Date 2008-08-28
Paper # OCS2008-39
Volume (vol) vol.108
Number (no) 189
Page pp.pp.-
#Pages 6
Date of Issue