Phase Noise Influence in Coherent Optical OFDM Systems with RF Pilot Tone: Digital IFFT Multiplexing and FFT Demodulation
Gunnar Jacobsen, Tianhua Xu, Sergei Popov, Jie Li, Ari T. Friberg,, Yimo Zhang

TL;DR
This study compares phase noise effects in CO-OFDM systems using hardware and software multiplexing, revealing similar BER performance and the impact of transmission distance and EEPN on system reliability.
Contribution
It introduces a software-based evaluation method for phase noise variance in CO-OFDM systems and compares it with hardware-based approaches, highlighting their similar BER behavior.
Findings
Phase noise influence is similar in both OFDM implementations.
BER increases with transmission distance due to phase noise and EEPN.
Maximum transmission distance for <10^-4 BER is under 277 km at 400 Gb/s capacity.
Abstract
We present a comparative study of the influence of dispersion induced phase noise for CO-OFDM systems using Tx channel multiplexing and Rx matched filter (analogue hardware based); and FFT multiplexing/IFFT demultiplexing techniques (software based). An RF carrier pilot tone is used to mitigate the phase noise influence. From the analysis, it appears that the phase noise influence for the two OFDM implementations is very similar. The software based system provides a method for a rigorous evaluation of the phase noise variance caused by Common Phase Error (CPE) and Inter-Carrier Interference (ICI) and this, in turns, leads to a BER specification. Numerical results focus on a CO-OFDM system with 1GS/s QPSK channel modulation. Worst case BER results are evaluated and compared to the BER of a QPSK system with the same capacity as the OFDM implementation. Results are evaluated as a function…
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Taxonomy
TopicsOptical Network Technologies · Advanced Photonic Communication Systems · Semiconductor Lasers and Optical Devices
