Title :
Coded Modulation for Fiber-Optic Networks: Toward better tradeoff between signal processing complexity and optical transparent reach
Author :
Beygi, Lotfollah ; Agrell, Erik ; Kahn, Joseph M. ; Karlsson, Magnus
Author_Institution :
Dept. of Signals & Syst., Chalmers Univ. of Technol., Gothenburg, Sweden
Abstract :
In this tutorial, we study the joint design of forward error correction (FEC) and modulation for fiber-optic communications. To this end, we use an information-theoretic design framework to investigate coded modulation (CM) techniques for standard additive white Gaussian noise (AWGN) channels and fiber-optic channels. This design guideline helps us provide a comprehensive overview of the CM schemes in the literature. Then, by invoking recent advances in optical channel modeling for nondispersion-managed links, we discuss two-dimensional (2-D) and four-dimensional (4-D) CM schemes. Moreover, we discuss the electronic computational complexity and hardware constraints of CM schemes for optical communications. Finally, we address CM schemes with signal shaping and rate-adaptation capabilities to accommodate the data transmission scheme to optical links with different signal qualities.
Keywords :
AWGN; forward error correction; modulation coding; optical fibre dispersion; optical fibre networks; AWGN channel; FEC; coded modulation; fiber optic channels; fiber optic communication; fiber optic network; forward error correction; information theoretic design; nondispersion managed links; optical channel modeling; optical transparent reach; signal processing complexity; standard additive white Gaussian noise; Decoding; Digital signal processing; Modulation; Optical fiber amplifiers; Optical fiber dispersion; Optical fiber networks; Optical fiber polarization;
Journal_Title :
Signal Processing Magazine, IEEE
DOI :
10.1109/MSP.2013.2290805