Field Experiments With a Grooming Switch for OTDM Meshed Networking

Typeset version

 

TY  - JOUR
  - Zarris, G,Hugues-Salas, E,Gonzalez, NA,Weerasuriya, R,Parmigiani, F,Hillerkuss, D,Vorreau, P,Spyropoulou, M,Ibrahim, SK,Ellis, AD,Morais, R,Monteiro, P,Petropoulos, P,Richardson, DJ,Tomkos, I,Leuthold, J,Simeonidou, D
  - 2010
  - January
  - Journal of Lightwave Technology
  - Field Experiments With a Grooming Switch for OTDM Meshed Networking
  - Validated
  - ()
  - Optical communication synchronization optical signal processing time-division multiplexing ultrafast optics DIGITAL OPTICAL REGENERATOR MODULATION FORMATS CLOCK RECOVERY WDM INTERCONNECTION TRANSMISSION WAVELENGTH CORE OFDM
  - 28
  - 316
  - 327
  - Field experiments of 42.7/128.1 Gb/s wavelength-division multiplexed, optical time-division multiplexed (WDM-OTDM) transmultiplexing and all-optical dual-wavelength regeneration at the OTDM rate are presented in this paper. By using the asynchronous retiming scheme, we achieve error-free bufferless data grooming with time-slot interchange capability for OTDM meshed networking. We demonstrate excellent performance from the system, discuss scalability, applicability, and the potential reach of the asynchronous retiming scheme for transparent OTDM-domain interconnection.
  - DOI 10.1109/JLT.2009.2034121
DA  - 2010/01
ER  - 
@article{V43334623,
   = {Zarris,  G and Hugues-Salas,  E and Gonzalez,  NA and Weerasuriya,  R and Parmigiani,  F and Hillerkuss,  D and Vorreau,  P and Spyropoulou,  M and Ibrahim,  SK and Ellis,  AD and Morais,  R and Monteiro,  P and Petropoulos,  P and Richardson,  DJ and Tomkos,  I and Leuthold,  J and Simeonidou,  D },
   = {2010},
   = {January},
   = {Journal of Lightwave Technology},
   = {Field Experiments With a Grooming Switch for OTDM Meshed Networking},
   = {Validated},
   = {()},
   = {Optical communication synchronization optical signal processing time-division multiplexing ultrafast optics DIGITAL OPTICAL REGENERATOR MODULATION FORMATS CLOCK RECOVERY WDM INTERCONNECTION TRANSMISSION WAVELENGTH CORE OFDM},
   = {28},
  pages = {316--327},
   = {{Field experiments of 42.7/128.1 Gb/s wavelength-division multiplexed, optical time-division multiplexed (WDM-OTDM) transmultiplexing and all-optical dual-wavelength regeneration at the OTDM rate are presented in this paper. By using the asynchronous retiming scheme, we achieve error-free bufferless data grooming with time-slot interchange capability for OTDM meshed networking. We demonstrate excellent performance from the system, discuss scalability, applicability, and the potential reach of the asynchronous retiming scheme for transparent OTDM-domain interconnection.}},
   = {DOI 10.1109/JLT.2009.2034121},
  source = {IRIS}
}
AUTHORSZarris, G,Hugues-Salas, E,Gonzalez, NA,Weerasuriya, R,Parmigiani, F,Hillerkuss, D,Vorreau, P,Spyropoulou, M,Ibrahim, SK,Ellis, AD,Morais, R,Monteiro, P,Petropoulos, P,Richardson, DJ,Tomkos, I,Leuthold, J,Simeonidou, D
YEAR2010
MONTHJanuary
JOURNAL_CODEJournal of Lightwave Technology
TITLEField Experiments With a Grooming Switch for OTDM Meshed Networking
STATUSValidated
TIMES_CITED()
SEARCH_KEYWORDOptical communication synchronization optical signal processing time-division multiplexing ultrafast optics DIGITAL OPTICAL REGENERATOR MODULATION FORMATS CLOCK RECOVERY WDM INTERCONNECTION TRANSMISSION WAVELENGTH CORE OFDM
VOLUME28
ISSUE
START_PAGE316
END_PAGE327
ABSTRACTField experiments of 42.7/128.1 Gb/s wavelength-division multiplexed, optical time-division multiplexed (WDM-OTDM) transmultiplexing and all-optical dual-wavelength regeneration at the OTDM rate are presented in this paper. By using the asynchronous retiming scheme, we achieve error-free bufferless data grooming with time-slot interchange capability for OTDM meshed networking. We demonstrate excellent performance from the system, discuss scalability, applicability, and the potential reach of the asynchronous retiming scheme for transparent OTDM-domain interconnection.
PUBLISHER_LOCATION
ISBN_ISSN
EDITION
URL
DOI_LINKDOI 10.1109/JLT.2009.2034121
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