4-channel, 10-Gbit/s capacity self-healing WDM ring network with wavelength add/drop multiplexers
Philippe Perrier, S. Ruggeri, C. Coeurjolly, A. Noury, Paulette Gavignet, S. Gauchard, V. Havard, L. Berthelon, I.J. Fevrier, J. Dupraz
Abstract
Philippe Perrier, S. Ruggeri, C. Coeurjolly, A. Noury, Paulette Gavignet, S. Gauchard, V. Havard, L. Berthelon, I.J. Fevrier, J. Dupraz
Abstract
With wavelength-division multiplexed (WDM) terrestrial links currently being proposed commercially it is reasonable to expect that these systems will evolve to include networking functions. Already, several wavelength add/drop multiplexers (WADM) have been investigated. A novel, nonsynchronous N-channel W-ADM architecture, with full connectivity capability, is investigated.
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With wavelength-division multiplexed (WDM) terrestrial links currently being proposed commercially it is reasonable to expect that these systems will evolve to include networking functions. Already, several wavelength add/drop multiplexers (WADM) have been investigated. A novel, nonsynchronous N-channel W-ADM architecture, with full connectivity capability, is investigated.
Key concepts: Multiplexer, Wavelength-division multiplexing, Optical add-drop multiplexer, Drop (telecommunication), Multiplexing, Gigabit, Wavelength, Channel (broadcasting)