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Performance Limits of Nyquist-WDM and CO-OFDM in High-Speed PM-QPSK Systems

IEEE Photonics Technology Letters · 2010 · Vol. 22(15) · pp. 1129–1131
Gabriella BoscoAndrea CarenaVittorio CurriP. PoggioliniF. Forghieri

Abstract

We compare by simulation the performance of two techniques for generating polarization-multiplexed quadrature phase-shift keying with a high spectral efficiency (SE). The first is based on coherent optical orthogonal frequency-division multiplexing (CO-OFDM). The second, which we call Nyquist wavelength-division multiplexing (N-WDM), is based on the use of optical pulses having an “almost” rectangular spectrum, with bandwidth ideally equal to the Baud-rate. We show that the two techniques have the same sensitivity and SE under idealized assumptions. However, we found that CO-OFDM requires a much larger receiver bandwidth and proportionally faster speed of the analog-to-digital converters. We also tested CO-OFDM and N-WDM over long-haul nonlinear links and found N-WDM to outperform CO-OFDM in this case, too.

Optical Network TechnologiesAdvanced Photonic Communication SystemsAdvanced Fiber Laser TechnologiesOrthogonal frequency-division multiplexingBaudWavelength-division multiplexingPhase-shift keyingMultiplexingSpectral efficiencyElectronic engineeringBandwidth (computing)Computer scienceQuadrature amplitude modulation
Citations
310
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36.40
field-weighted impact
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12
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References
Coherent optical orthogonal frequency division multiplexing
Electronics Letters · 2006 · 597 citations
Digital filters for coherent optical receivers
Optics Express · 2008 · 1,201 citations
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