Title :
Link-Level Resource Allocation for Flexible-Grid Nonlinear Fiber-Optic Communication Systems
Author :
Li Yan ; Agrell, Erik ; Wymeersch, Henk ; Johannisson, Pontus ; Di Taranto, Rocco ; Brandt-Pearce, Maite
Author_Institution :
Chalmers Univ. of Technol., Gothenburg, Sweden
Abstract :
Resource allocation for transport optical networks has traditionally used a transmission reach constraint to estimate physical impairments. For flexible-grid networks, nonlinear impairments are not sufficiently well characterized by the transmission reach since various modulations and bandwidths can coexist on the same link. We propose a resource allocation algorithm for a single flexible-grid fiber link based on a nonlinear signal distortion model, as a first step toward whole-network design. An optimization problem is formulated to provide a close-to-optimal resource allocation that guarantees the quality of transmission for every channel. Compared with a simpler algorithm based on transmission reach, our proposed algorithm shows the potential of bandwidth savings. It is demonstrated to be insensitive to channel ordering.
Keywords :
light transmission; optical distortion; optical fibre networks; optical links; optical modulation; optimisation; resource allocation; close-to-optimal resource allocation; flexible-grid nonlinear fiber-optic communication system; link-level resource allocation; nonlinear signal distortion model; optical modulation; optical transmission; optimization problem; physical nonlinear impairment estimation; single flexible-grid fiber link network; transport optical network; Bandwidth; Modulation; Optical fiber networks; Optimization methods; Resource management; Signal to noise ratio; Resource allocation; nonlinear channel;
Journal_Title :
Photonics Technology Letters, IEEE
DOI :
10.1109/LPT.2015.2415586