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An efficient modulation technique for suppressing intrachannel FWM in 40Gb/s optical transmission systems

机译:一种抑制40Gb / s光传输系统中通道内FWM的有效调制技术

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In high bit-rate return-to-zero (RZ) on-off keying (OOK) systems operating at 40Gb/s and beyond ghost pulses induced by intrachannel four-wave mixing (IFWM), and intrachannel cross-phase modulation (IXPM) are dominant factors affecting the performance of a high-speed optical transmission system. As the creation of ghost pulses is a phase sensitive effect, the common approach to deal with IFWM is to remove short-term phase coherence by employing a proper modulation format. Another approach, known as constrained or line coding, is to identify the most troublesome sequences and to forbid them during encoding process. This paper presents an efficient method for testing the efficiency of a modulation techniques for countering the effects of IFWM by calculating the sum of all the contributors at a given resonance position. For a modulation technique to counter these effects the initial pulses phases must be chosen properly so that different contributors to the ghost pulse creation cancel each other in bit being in "resonance". In addition to this method, we are proposing a modulation technique that shows a significant Q-factor improvement of up to 7.5dB (depending on the number of spans and the phase sequence implemented) over the uncoded RZ-OOK as will be demonstrated. Finally, implementation of this phase modulation technique is very efficient in extending the non-linearity tolerance and enhancing the performance of a high-speed optical transmission system.
机译:在高比特率归零(RZ)开关键控(OOK)系统中,该通道以40Gb / s的速率运行,并且超出由通道内四波混频(IFWM)和通道内交叉相位调制(IXPM)引起的幻影脉冲是影响高速光传输系统性能的主要因素。由于重影脉冲的产生是相位敏感效应,因此处理IFWM的常用方法是通过采用适当的调制格式来消除短期相位相干性。另一种称为约束编码或行编码的方法是识别最麻烦的序列,并在编码过程中禁止使用。本文提出了一种有效的方法,可以通过计算给定谐振位置上所有贡献者的总和来测试用于抵消IFWM效应的调制技术的效率。对于一种抵消这些影响的调制技术,必须正确选择初始脉冲相位,以使产生虚影脉冲的不同因素在“共振”中彼此抵消。除此方法外,我们还将提出一种调制技术,该技术将在未编码的RZ-OOK上显示高达7.5dB的显着Q因子改善(取决于跨度和所实现的相序数)。最后,这种相位调制技术的实现在扩展非线性容限和增强高速光传输系统的性能方面非常有效。

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