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Multi-Dimensional Coded Modulation in Long-Haul Fiber Optic Transmission
Multi-dimensional-coded modulation approaches the nonlinear Shannon limit due to its high SNR sensitivity and large Euclidean distance between multi-dimensional symbols. It also eliminates phase ambiguity to avoid cycle slips. In this paper, we review the design principles of bit-interleaved-coded m...
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Published in: | Journal of lightwave technology 2015-07, Vol.33 (13), p.2876-2883 |
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container_title | Journal of lightwave technology |
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creator | Hongbin Zhang Batshon, Hussam G. Davidson, Carl R. Foursa, Dmitri G. Pilipetskii, Alexei |
description | Multi-dimensional-coded modulation approaches the nonlinear Shannon limit due to its high SNR sensitivity and large Euclidean distance between multi-dimensional symbols. It also eliminates phase ambiguity to avoid cycle slips. In this paper, we review the design principles of bit-interleaved-coded modulation with multi-dimensional mapping, and its performance in long-haul transmission experiments with different spectral efficiencies in both dispersion managed and dispersion unmanaged fiber optic systems. |
doi_str_mv | 10.1109/JLT.2015.2419821 |
format | article |
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source | IEEE Xplore (Online service) |
subjects | coded modulation coherent communications coherent detection Dispersion Euclidean distance fiber optics communications Forward error correction maximum a posteriori probability (MAP) detection optical communications Parity check codes Phase shift keying Quadrature amplitude modulation |
title | Multi-Dimensional Coded Modulation in Long-Haul Fiber Optic Transmission |
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