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  4. Numerical and experimental investigation of the effect of dispersion regime
 
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2007
Conference Paper
Title

Numerical and experimental investigation of the effect of dispersion regime

Abstract
The authors propose a novel Karhunen-Loeve expansion method and show numerically and experimentally that the effect of dispersion can improve the system performance. Additionally, the gain is found to be larger for low-OSNR than for high-OSNR. It suggests that a system can have the same performance either employing compensation of nonlinear phase noise or FEC (forward error correction). It is also verified that the performance of a fully compensated span is solely given by the mean nonlinear phase shift. This result gives the basic relation between reach-distance and power for a given system performance. Entnommen aus <a_href="http://www.fiz-technik.de/db/b_tema.htm" target="_blank">TEMA</a>
Author(s)
Coelho, L.D.
Molle, L.
Gross, D.
Hanik, N.
Freund, R.
Caspar, C.
Schmidt, E.D.
Mainwork
ECOC 2007, 33rd European Conference and Exhibition on Optical Communication. CD-ROM  
Conference
European Conference on Optical Communication (ECOC) 2007  
Language
English
Fraunhofer-Institut für Nachrichtentechnik, Heinrich-Hertz-Institut HHI  
Keyword(s)
  • Dispersion (Welle)

  • geringe Verlustleistung

  • Karhunen-Loeve Transformation

  • Methodenvergleich

  • Modellsimulation

  • faseroptische Nachrichtenübertragung

  • Phasenrauschen

  • Phasenverschiebung

  • Rauschunterdrückung

  • Signal-Rausch-Abstand

  • Signalverarbeitung

  • Übertragungsqualität

  • Versuchsergebnis

  • Phasendifferenzmodulation

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