articleTop 1% cited
Compensation of Dispersion and Nonlinear Impairments Using Digital Backpropagation
Journal of Lightwave Technology · 2008 · Vol. 26(20) · pp. 3416–3425
Ezra Ip✉(Stanford University)Joseph M. Kahn(Stanford University)
Abstract
Optical fiber transmission is impacted by linear and nonlinear impairments. We study the use of digital backpropagation (BP) in conjunction with coherent detection to jointly mitigate dispersion and fiber nonlinearity. We propose a noniterative asymmetric split-step Fourier method (SSFM) for solving the inverse nonlinear Schrodinger equation (NLSE). Using simulation results for RZ-QPSK transmitted over terrestrial systems with inline amplification and dispersion compensation, we obtain heuristics for the step size and sampling rate requirements, as well as the optimal dispersion map.
Optical Network TechnologiesAdvanced Photonic Communication SystemsAdvanced Fiber Laser TechnologiesNonlinear systemDispersion (optics)Polarization mode dispersionBackpropagationOptical fiberNonlinear Schrödinger equationCompensation (psychology)Fourier transformOptical communicationElectronic engineering
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1,122
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42.30
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References
Coherent optical OFDM: theory and design
Optics Express · 2008 · 732 citations
Coherent detection in optical fiber systems
Optics Express · 2008 · 880 citations
Optimization of the split-step fourier method in modeling optical-fiber communications systems
Journal of Lightwave Technology · 2003 · 571 citations
Coherent detection of optical quadrature phase-shift keying signals with carrier phase estimation
Journal of Lightwave Technology · 2006 · 427 citations
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