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Rate Adaptation and Reach Increase by Probabilistically Shaped 64-QAM: An Experimental Demonstration

Journal of Lightwave Technology · 2015 · Vol. 34(7) · pp. 1599–1609
Fred BuchaliFabian SteinerGeorg BöchererLaurent SchmalenPatrick SchulteW. Idler

Abstract

A transmission system with adjustable data rate for single-carrier coherent optical transmission is proposed, which enables high-speed transmission close to the Shannon limit. The proposed system is based on probabilistically shaped 64-QAM modulation formats. Adjustable shaping is combined with a fixed-QAM modulation and a fixed forward-error correction code to realize a system with adjustable net data rate that can operate over a large reach range. At the transmitter, an adjustable distribution matcher performs the shaping. At the receiver, an inverse distribution matcher is used. Probabilistic shaping is implemented into a coherent optical transmission system for 64-QAM at 32 Gbaud to realize adjustable operation modes for net data rates ranging from 200 to 300 Gb/s. It is experimentally demonstrated that the optical transmission of probabilistically shaped 64-QAM signals outperforms the transmission reach of regular 16-QAM and regular 64-QAM signals by more than 40% in the transmission reach.

Optical Network TechnologiesAdvanced Photonic Communication SystemsError Correcting Code TechniquesQuadrature amplitude modulationQAMTransmission (telecommunications)Electronic engineeringTransmitterComputer scienceModulation (music)Data transmissionTransmission systemOptical modulation amplitude

Funding

  • Institute for Advanced Study
Citations
603
FWCI
27.22
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50
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References
Bandwidth Efficient and Rate-Matched Low-Density Parity-Check Coded Modulation
IEEE Transactions on Communications · 2015 · 803 citations
Capacity Limits of Optical Fiber Networks
Journal of Lightwave Technology · 2010 · 2,273 citations
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