Advanced search
Start date
Betweenand


Scaling Optical Networks Using Full-Spectrum Spatial Switching

Full text
Author(s):
Jatoba-Neto, Alaelson C. ; Rothenberg, Christian E. ; Mello, Darli A. A. ; Arik, Sercan O. ; Kahn, Joseph M. ; IEEE
Total Authors: 6
Document type: Journal article
Source: 2017 IEEE 18TH INTERNATIONAL CONFERENCE ON HIGH PERFORMANCE SWITCHING AND ROUTING (IEEE HPSR); v. N/A, p. 6-pg., 2017-01-01.
Abstract

Accommodating sustained exponential traffic growth in optical networks requires scaling the spatial dimension using space-division multiplexing. Numerous uncoupled spatial channels may be realized by activating multiple parallel fibers or cores in multicore fibers. A multiplicity of uncoupled spatial channels will render the granularity provided by multiple wavelength channels less essential in enabling optical switching. In this paper, we investigate a possible paradigm shift in optical node architectures, in which nodes based on wavelength-selective switching are replaced by those based on simple spatial switching. We compare spatial switching of full-spectrum superchannels to wavelength switching of uncoupled spatial superchannels, considering the evolution of traffic over time. Our results show that spatial switching may achieve more efficient scaling than wavelength switching in roughly 10 to 17 years, depending on the traffic growth rate assumed. (AU)

FAPESP's process: 15/04382-0 - Resource allocation in optical networks with space division multiplexing
Grantee:Darli Augusto de Arruda Mello
Support Opportunities: Regular Research Grants