Digital coherent superposition of optical OFDM subcarrier pairs with Hermitian symmetry for phase noise mitigation
Author(s) -
Xingwen Yi,
Xuemei Chen,
Dinesh Kumar Sharma,
Chao Li,
Ming Luo,
Qi Yang,
Zhaohui Li,
Kun Qiu
Publication year - 2014
Publication title -
optics express
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.394
H-Index - 271
ISSN - 1094-4087
DOI - 10.1364/oe.22.013454
Subject(s) - subcarrier , orthogonal frequency division multiplexing , phase noise , physics , optics , superposition principle , hermitian function , interference (communication) , transmission (telecommunications) , modulation (music) , noise (video) , phase modulation , electronic engineering , telecommunications , computer science , hermitian matrix , channel (broadcasting) , engineering , acoustics , quantum mechanics , artificial intelligence , image (mathematics)
Digital coherent superposition (DCS) provides an approach to combat fiber nonlinearities by trading off the spectrum efficiency. In analogy, we extend the concept of DCS to the optical OFDM subcarrier pairs with Hermitian symmetry to combat the linear and nonlinear phase noise. At the transmitter, we simply use a real-valued OFDM signal to drive a Mach-Zehnder (MZ) intensity modulator biased at the null point and the so-generated OFDM signal is Hermitian in the frequency domain. At receiver, after the conventional OFDM signal processing, we conduct DCS of the optical OFDM subcarrier pairs, which requires only conjugation and summation. We show that the inter-carrier-interference (ICI) due to phase noise can be reduced because of the Hermitain symmetry. In a simulation, this method improves the tolerance to the laser phase noise. In a nonlinear WDM transmission experiment, this method also achieves better performance under the influence of cross phase modulation (XPM).
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