Modulation Format Independent Joint Polarization and Phase Tracking for Coherent Receivers
Journal article, 2016

© 1983-2012 IEEE. The state of polarization and the carrier phase drift dynamically during transmission in a random fashion in coherent optical fiber communications. The typical digital signal processing solution to mitigate these impairments consists of two separate blocks that track each phenomenon independently. Such algorithms have been developed without taking into account mathematical models describing the impairments. We study a blind, model-based tracking algorithm to compensate for these impairments. The algorithm dynamically recovers the carrier phase and state of polarization jointly for an arbitrary modulation format. Simulation results show the effectiveness of the proposed algorithm, having a fast convergence rate and an excellent tolerance to phase noise and dynamic drift of the polarization at low complexity, which make the algorithm a strong candidate for future optical systems.

phase recovery

model-based phase noise

polarization recovery

Coherent optical fiber communication

polarization demultiplexing

polarization drift

Author

Cristian Bogdan Czegledi

Chalmers, Signals and Systems, Kommunikationssystem, informationsteori och antenner

Erik Agrell

Chalmers, Signals and Systems, Kommunikationssystem, informationsteori och antenner

Magnus Karlsson

Chalmers, Microtechnology and Nanoscience (MC2), Photonics

Pontus Johannisson

Chalmers, Microtechnology and Nanoscience (MC2), Photonics

Journal of Lightwave Technology

0733-8724 (ISSN)

Vol. 13 14 3354-3364 7466068

Areas of Advance

Information and Communication Technology

Subject Categories (SSIF 2011)

Telecommunications

Communication Systems

Signal Processing

Infrastructure

C3SE (Chalmers Centre for Computational Science and Engineering)

DOI

10.1109/JLT.2016.2564427

More information

Created

10/7/2017