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International Journal of Research and Innovation in Applied Science (IJRIAS)

210 Km Long Incoherent WDM Spectrum-Sliced System Running at 10 Gb/S Incorporating Semiconductor Optical Amplifier (SOA) Enhancements

byDavid I. Forsyth

Published January 30, 2026  •  Vol. 11, Issue 1, pp. 396–400Open Access
DOI: 10.51584/IJRIAS.2026.11010034

Abstract

The deployment of more economical and cost-effective wavelength division multiplexing (WDM) solutions for access and metro networks still remains a key research focus. This paper reports on significant performance enhancement improvements of a highly economical, four channel totally incoherent spectrum-sliced WDM system with the incorporation of a Semiconductor Optical Amplifier (SOA) placed in one of its channels. The baseline system was shown to operate well at 10 Gb/s at a maximum link length of 210 km, demonstrating average Q-factor and signal-to-noise ratios (SNRS) over the four channels. However, the introduction of a single saturated SOA and a single filter placed on one channel yielded a sizable improvement in the Q-factor and exceptional improvement in the measured signal-to-noise ratio (SNR), effectively allowing a further 130 km link travel length whilst still yielding acceptable signal quality – making a total link length of 340 km for one channel.

Keywords: spectrum, slicing, amplifier, link

JournalInternational Journal of Research and Innovation in Applied Science (IJRIAS)
ISSN2454-6194
Volume / IssueVolume 11, Issue 1
Pages396–400
Publication dateJanuary 30, 2026
DOI10.51584/IJRIAS.2026.11010034
PublisherRSIS International
LicenseOpen Access

How to cite this article

David I. Forsyth (2026). 210 Km Long Incoherent WDM Spectrum-Sliced System Running at 10 Gb/S Incorporating Semiconductor Optical Amplifier (SOA) Enhancements. International Journal of Research and Innovation in Applied Science (IJRIAS), 11(1), 396-400. https://doi.org/10.51584/IJRIAS.2026.11010034

BibTeX

@article{David2026,
  title   = {210 Km Long Incoherent WDM Spectrum-Sliced System Running at 10 Gb/S Incorporating Semiconductor Optical Amplifier (SOA) Enhancements},
  author  = {David I. Forsyth},
  journal = {International Journal of Research and Innovation in Applied Science (IJRIAS)},
  volume  = {11},
  number  = {1},
  pages   = {396--400},
  year    = {2026},
  doi     = {10.51584/IJRIAS.2026.11010034},
  publisher = {RSIS International}
}