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JOURNALS // Kvantovaya Elektronika // Archive

Kvantovaya Elektronika, 2015 Volume 45, Number 1, Pages 69–74 (Mi qe16092)

This article is cited in 10 papers

Optical transmission of information

Dependence of the bit error rate on the signal power and length of a single-channel coherent single-span communication line (100 Gbit s-1) with polarisation division multiplexing

N. V. Gurkina, V. A. Konysheva, O. E. Naniiba, A. G. Novikova, V. N. Treshchikova, R. R. Ubaydullaeva

a "T8" LLC, Moscow
b M. V. Lomonosov Moscow State University, Faculty of Physics

Abstract: We have studied experimentally and using numerical simulations and a phenomenological analytical model the dependences of the bit error rate (BER) on the signal power and length of a coherent single-span communication line with transponders employing polarisation division multiplexing and four-level phase modulation (100 Gbit s-1 DP-QPSK format). In comparing the data of the experiment, numerical simulations and theoretical analysis, we have found two optimal powers: the power at which the BER is minimal and the power at which the fade margin in the line is maximal. We have derived and analysed the dependences of the BER on the optical signal power at the fibre line input and the dependence of the admissible input signal power range for implementation of the communication lines with a length from 30 – 50 km up to a maximum length of 250 km.

Keywords: single-span fibre-optic communication line, differential phase modulation, optical signal-to-noise ratio, coherent detection, electronic chromatic dispersion compensation, nonlinear distortions, nonlinear noise, amplified spontaneous noise.

PACS: 42.79.Sz, 42.81.Dp

Received: 27.01.2014
Revised: 21.04.2014


 English version:
Quantum Electronics, 2015, 45:1, 69–74

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