Open Access

Evaluation of Signal Regeneration Impact on the Power Efficiency of Long-Haul DWDM Systems


Cite

1. Iyer, S., & Singh, S.P. (2016). Spectral and power efficiency investigation in single- and multi-line-rate optical wavelength division multiplexed (WDM) networks. Photonics Network Communications. doi:10.1007/s11107-016-0618-3 Search in Google Scholar

2. Keiser, G. E. (1998). A review of WDM technology and applications. GTE Systems & Technology, 21.Search in Google Scholar

3. Pavlovs, D., Grinčišins, A., Bobrovs, V., Gavars, P., & Ivanovs, Ģ. (2016). Research of 10 Gbps NRZ-OOK signal spectral and energy efficiency. In Proc. ELECTRONICS 2016, 13 - 15 June 2016 (pp. 25-29). Lithuania: Kaunas University of Technology. Search in Google Scholar

4. Pavlovs, D., & Bobrovs, V. (2016). Relationship between spectral efficiency and energy efficiency in 10 Gbps NRZ-OOK, 40 Gbps NRZ-DPSK and 100 Gbps DP-QPSK WDM transmission systems. In Progress in Electromagnetic Research Symposium (PIERS 2016), 8-11 August 2016 (pp.1434-1438). Shanghai, China. doi:10.1109/PIERS.2016.7734673 Search in Google Scholar

5. Haykin, S., & Moher, M. (2007). An introduction to analog and digital communications. John Wiley & Sons. Search in Google Scholar

6. Morea, A., & Spadaro, S., Rival, O., Perelló, J., Agraz, F., & Verchere, D. (2011). Power Management of Optoelectronic Interfaces for Dynamic Optical Networks. DOI: 10.1364/ECOC.2011.We.8.K.3 10.1364/ECOC.2011.We.8.K.3Open DOISearch in Google Scholar

7. Chiani, M., Win, M. Z., & Zanella, A. (2003). Error probability for optimum combining of M-ary PSK signals in the presence of interference and noise. IEEE Transactions On Communications, 51(11). doi: 10.1109/TCOMM.2003.819197 Search in Google Scholar

8. Meghdadi, V. (2008). BER calculation. Wireless Communications by Andrea Goldsmith. Search in Google Scholar

9. Van Heddeghem, W., Idzikowski, F., Vereecken, W., Colle, D., Pickavet, M., & Demeester, P. (2012). Power consumption modeling in optical multilayer networks. Photonics Network Communications, 24(2), 86-102. doi:10.1007/s11107-011-0370-7Search in Google Scholar

10. Verbrugge, S., Colle, D., Demeester, P., Huelsermann, R., & Jaeger, M. (2005). General availability model for multilayer transport networks. In Proc. 5th International Workshop on Design of Reliable Communication Networks, 16-19 October 2005. Lacco Ameno, Island of Ischa, Italy. DOI: 10.1109/DRCN.2005.156384810.1109/DRCN.2005.1563848Search in Google Scholar

eISSN:
0868-8257
Language:
English
Publication timeframe:
6 times per year
Journal Subjects:
Physics, Technical and Applied Physics