Title :
Relative Phase Noise-Induced Phase Error and System Impairment in Pump Depletion/Nondepletion Regime
Author :
Jingchi Cheng ; Ming Tang ; Songnian Fu ; Shum, Perry Ping ; Dawei Yu ; Liang Wang ; Deming Liu
Author_Institution :
Sch. of Opt. & Electron. Inf., Huazhong Univ. of Sci. & Technol., Wuhan, China
Abstract :
Although the pump relative intensity noise transfer phenomenon in traditional Raman amplified amplitude-shift keying fiber communication systems has been investigated intensively, the stochastic intensity fluctuation of Raman pump laser will interplay with fiber nonlinearity and leads to additional phase noise of signal in the multilevel modulated coherent optical communication system. Such phase noise is defined as relative phase noise (RPN). In this paper, we present comprehensive analysis regarding the characteristics and impairments of RPN through both theoretical derivation and Monte Carlo simulation. We derive the analytical expressions of phase error variance for M-ary PSK and 16QAM modulation formats in consideration of RPN using decision-aided maximum-likelihood phase estimation algorithm. The analysis can be used to predict RPN induced impairment theoretically. Bit error rate (BER) performance is evaluated and compared for QPSK, 8PSK, 16PSK, and 16QAM modulation formats, and the result shows that in the context of RPN 16QAM signal outperforms 16PSK which has the same spectral efficiency. Finally, we extend the analytical result obtained in pump nondepletion regime to depletion regime via numerical analysis. It is observed by comparison that Q-factor penalty will increase in depletion regime.
Keywords :
Monte Carlo methods; Raman lasers; error statistics; laser noise; maximum likelihood estimation; optical fibre amplifiers; optical fibre communication; optical modulation; optical pumping; phase estimation; phase noise; quadrature amplitude modulation; quadrature phase shift keying; 16PSK; 16QAM modulation formats; 8PSK; BER performance; M-ary PSK; Monte Carlo simulation; Q-factor penalty; QPSK; RPN 16QAM signal; Raman pump laser; bit error rate performance; decision-aided maximum-likelihood phase estimation algorithm; fiber nonlinearity; multilevel modulated coherent optical communication system; numerical analysis; phase error variance; pump depletion-nondepletion regime; pump relative intensity noise transfer phenomenon; relative phase noise-induced phase error; spectral efficiency; stochastic intensity fluctuation; system impairment; traditional Raman amplified amplitude-shift keying fiber communication systems; Optical fiber amplifiers; Optical fiber communication; Phase noise; Phase shift keying; Stimulated emission; Transfer functions; Bit-error ratio (BER); distributed fiber Raman amplifiers; phase-shift keying (PSK); pump depletion; quadrature amplitude modulation (QAM); relative intensity noise (RIN); relative phase noise (RPN);
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2014.2324015