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Performance evaluation of hybrid DPSK-MPPM techniques in long-haul optical transmission

机译:长途光传输中杂交DPSK-MPPM技术的性能评价

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摘要

In this paper, we evaluate the performance of hybrid differential phase shift keying-multipulse pulse position modulation (DPSK-MPPM) techniques in long-haul nonlinear-dispersive optical fiber transmission. An expression for the nonlinear interference variance is obtained analytically using the Gaussian noise (GN) model. We derive upper-bound expressions that take into account the fiber nonlinearity impact on the DPSK-MPPM system's performance for both bit- and symbol-error rates (BER and SER). The tightness of the BER's upper bound is verified using Monte Carlo simulation. The numerical analysis is carried out based on the proposed setup supplemented by a realistic simulation scenario for the DPSK-MPPM long-haul optical transmission system. Our results reveal that while the hybrid DPSK-MPPM technique outperforms both traditional DPSK and MPPM techniques under amplified spontaneous emission (ASE) noise (linear limit), it is less robust when fiber nonlinearity is considered. However, under the impact of low nonlinearity, the performance of a hybrid technique still surpasses the traditional ones. We also discuss the effect of some wavelength-division multiplexing (WDM) parameters on optimal system performance. The nonlinear interference penalties on the maximum reachable distances by both hybrid and traditional modulation systems are then investigated at a forward-error correction (FEC) requirement (BER = 10(-3)). In particular, at an average launch power of -8 dBm, the hybrid DQPSK-MPPM system with a total frame length of eight time slots including two signal time slots outreaches a traditional DQPSK system by 950 km. (C) 2016 Optical Society of America
机译:在本文中,我们评估了长途非线性分散光纤传输中的混合差分相移键控键控脉冲位置调制(DPSK-MPPM)技术的性能。使用高斯噪声(GN)模型分析地获得非线性干扰方差的表达。我们推出了上限表达式,以考虑到DPSK-MPPM系统对位和符号错误率(BER和SER)对DPSK-MPPM系统的性能的影响。使用Monte Carlo仿真验证BER的上限的紧张性。基于DPSK-MPPM长途光传输系统的现实仿真方案补充的建议设置来执行数值分析。我们的研究结果表明,虽然混合DPSK-MPPM技术优于传统的DPSK和MPPM技术,但在放大的自发发射(ASE)噪声(线性极限)下,当考虑光纤非线性时,它不太稳健。然而,在非线性低的影响下,混合技术的性能仍然超越了传统的技术。我们还讨论了一些波分复用(WDM)参数对最优系统性能的影响。然后在正向纠错(FEC)要求(BER = 10(-3))上研究了混合动力和传统调制系统的最大可达距离的非线性干扰惩罚。特别是,在-8 dBm的平均发射功率下,混合DQPSK-MPPM系统,具有八个时隙的总帧长度,包括两个信号时隙将传统DQPSK系统延伸到950公里。 (c)2016年美国光学学会

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