Impact of SPM on Dispersion Compensated DPSK Transmission Link under Tight Optical Filtering

S. Gupta, R. Gangopadhyay, G. Prati
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Abstract

The tolerance against self-phase modulation (SPM) of three differential phase-shift keying (DPSK) modulation schemes viz. conventional DPSK (CDPSK), symmetrical DPSK (SDPSK) and pi/4-DPSK in a 40-Gb/s multi-span dispersion compensated single-mode fiber (SMF) link is studied through detailed numerical simulation. The study takes into account the influence of pulse duty-ratio, tight optical filtering, in-line amplifier noise and the impact of delay mismatch in the delay-demodulation receiver while comparing the variants of DPSK systems. The numerical analysis clearly suggests the need for smaller duty ratio for all DPSK formats under tight optical filtering for achieving minimum eye-opening penalty (EOP) due to SPM. Return-to-zero (RZ)-CDPSK exhibits the highest tolerance towards the SPM induced penalty in noisy and noiseless situation whereas SDPSK shows more robustness to the uncertainty in the interferometer delay mismatch
紧光滤波下SPM对色散补偿DPSK传输链路的影响
通过详细的数值模拟研究了40 gb /s多跨色散补偿单模光纤(SMF)链路中传统DPSK (CDPSK)、对称DPSK (SDPSK)和pi/4-DPSK三种差分相移键控(DPSK)调制方式对自相位调制(SPM)的容忍度。在比较DPSK系统的变体时,考虑了脉冲占空比、紧光滤波、在线放大器噪声和延迟解调接收机中延迟失配的影响。数值分析清楚地表明,在严格的光学滤波下,所有DPSK格式都需要更小的占空比,以实现由SPM引起的最小开眼惩罚(EOP)。RZ -CDPSK在有噪声和无噪声情况下对SPM诱导的惩罚表现出最高的容忍度,而SDPSK对干涉仪延迟失配的不确定性表现出更强的鲁棒性
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