Browse > Article
http://dx.doi.org/10.12673/jant.2019.23.6.570

Dispersion-Managed Link with Different Numbers of Fiber Spans and Asymmetric Distribution of RDPS  

Hong, Sung-Hwa (Division of Navigational Information System, Mokpo National Maritime University)
Lee, Seong-Real (Division of Navigational Information System, Mokpo National Maritime University)
Abstract
The configuration of dispersion-managed optical link with optical phase conjugator, which is placed at the non-midway of total transmission length, is proposed for implementing of the flexible optical network. The optical phase conjugator is located between the former half transmission section and the latter half transmission section, which are consisted of 6 fiber spans and 14 fiber spans respectively, and the averaged RDPS of each half transmission section are inconsistence. And, the artificial distribution of each fiber span's RDPS, which are gradually increased/decreased as the span numbers are increased, is adopted to compensate for the distorted wavelength division multiplexed channels. From the simulation results, it is confirmed that the compensation in dispersion-managed link configured by a special distribution pattern among 16 proposed patterns, in which the RDPS of each fiber spans are gradually decreased/increased in the former/latter half section with the small deviation, is suitable to compensate for the distorted wavelength division multiplexed channels.
Keywords
Asymmetric dispersion-managed link; Optical phase conjugation; Residual dispersion per span; Artificial distribution; RDPS deviation;
Citations & Related Records
Times Cited By KSCI : 3  (Citation Analysis)
연도 인용수 순위
1 S. Waiyapot, S. K. Turitsyn, and V. K. Mezentsev, "Optical regeneration at 40 Gb/s in dispersion-managed transmission lines with in-line synchronous modulators," Journal of Lightwave Technology, Vol. 20, No. 12, pp. 2220-2228, Dec. 2002.   DOI
2 X. Liu, Y. Qiao, and Y. Ji, "Reduction of the fiber nonlinearity impairment using optical phase conjugation in 40 Gb/s CO-OFDM systems," Optics Communications, Vol. 283, pp. 2749-2753, 2010.   DOI
3 M. D. Pelusi, "WDM signal all-optical precompensation of Kerr nonlinearity in dispersion-managed fibers," IEEE Photonics Technology Letters, Vol. 25, No. 1, pp. 71-74, 2013.   DOI
4 M. Morshed, A. J. Lowery, and L. B. Du, "Improving performance of optical conjugation by splitting the nonlinear element," Optics Express, vol. 21, pp. 4567-4577, 2013.   DOI
5 I. Sackey, F. D. Ros, J. K. Fischer, T. Richter, M. Jazayerifar, C. Peucheret, K. Petermann, and C. Schubert, "Kerr nonlinearity mitigation: mid-link spectral inversion versus digital backpropagation in $5{\times}28$-GBd PDM 16-QAM signal transmission," Journal of Lightwave Technology, vol. 33, no. 9, pp. 1821-1827, May 2015.   DOI
6 M. Morshed, L. B. Du, and A. J. Lowery, "Mid-span spectral inversion for coherent optical OFDM systems: fundamental limits to performance," Journal of Lightwave Technology, vol. 31, no. 1, pp. 58-66, Jan., 2013.   DOI
7 S. L. Jansen, S. Spälter, G.-D. Khoe, H. de Waardt, H. E. Escobar, L. Marshall, and M. Sher, "16x40 Gb/s over 800 km of SSMF using mid-link spectral inversion," IEEE Photonics Technology Letters, vol. 16, no. 7, pp. 1763-1765, July 2004.   DOI
8 S. R. Lee, "Dispersion-managed links formed of SMFs and DCFs with irregular dispersion coefficients and span lengths," Journal of Information Communication Convergence Engineering, vol.16, no.2, pp.67-71, June, 2018.   DOI
9 X. Xiao, C. Yang, S. Gao, and Y. Tian, "Partial compensation of Kerr nonlinearities by optical phase conjugation in optical fiber transmission systems without power symmetry," Optical Communications, vol. 265, no. 1, pp. 326-330. 2016.
10 A. Chowdhury and R. J. Essiambre, "Optical phase conjugation and pseudolinear transmission," Optics Letters, vol. 29, no. 10, pp. 1105-1107, 2014.   DOI
11 S. R. Lee, "Compensation for the distorted WDM channels in the long-haul transmission link with the randomly distributed SMF lengths and RDPS," Journal of Advanced Navigation Technology, Vol. 19, No. 4, pp. 323-329, Aug. 2015.   DOI
12 S. R. Lee, "Dispersion-managed optical links combined with asymmetrical optical phase conjugation for compensating for distorted WDM signals," Journal of Information and Communication Convergence Engineering, Vol. 14, No. 2, pp. 71-77, Jun. 2016.   DOI
13 H. B. Yim and S..R. Lee, "Compensation for the distorted WDM signals through dispersion-managed optical links combined with non-midway optical phase conjugation," International Journal of Control and Automation, Vol. 11,
14 G. P. Agrawal, Nonlinear Fiber Optics, 3rd ed. San Francisco:CA, Academic Press, 2001.
15 N. Kikuchi and S. Sasaki, "Analytical evaluation technique of self-phase modulation effect on the performance of cascaded optical amplifier systems," Journal of Lightwave Technology, Vol. 13, No. 5, pp. 868-878. 1995.   DOI