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On Probabilistic Shaping of Quadrature Amplitude Modulation for the Nonlinear Fiber Channel

机译:非线性光纤通道正交幅度调制的概率整形

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摘要

Different aspects of probabilistic shaping for a multispan optical communication system are studied. First, a numerical analysis of the additive white Gaussian noise (AWGN) channel investigates the effect of using a small number of input probability mass functions (PMFs) for a range of signal-to-noise ratios (SNRs), instead of optimizing the constellation shaping for each SNR. It is shown that if a small penalty of at most 0.1 dB SNR to the full shaping gain is acceptable, just two shaped PMFs are required per quadrature amplitude modulation (QAM) over a large SNR range. For a multispan wavelength division multiplexing optical fiber system with 64QAM input, it is shown that just one PMF is required to achieve large gains over uniform input for distances from 1400 to 3000 km. Using recently developed theoretical models that extend the Gaussian noise (GN) model and full-field split-step simulations, we illustrate the ramifications of probabilistic shaping on the effective SNR after fiber propagation. Our results show that, for a fixed average optical launch power, a shaping gain is obtained for the noise contributions from fiber amplifiers and modulation-independent nonlinear interference (NLI), whereas shaping simultaneously causes a penalty as it leads to an increased NLI. However, this nonlinear shaping loss is found to have a relatively minor impact, and optimizing the shaped PMF with a modulation-dependent GN model confirms that the PMF found for AWGN is also a good choice for a multi-span fiber system.
机译:研究了多跨光通信系统的概率整形的不同方面。首先,对加性高斯白噪声(AWGN)通道的数值分析研究了针对一定范围的信噪比(SNR)使用少量输入概率质量函数(PMF)而不是优化星座的效果为每个SNR整形。结果表明,如果对整个整形增益的SNR最高损失0.1 dB的小代价是可以接受的,则在较大的SNR范围内,每个正交幅度调制(QAM)仅需要两个整形的PMF。对于具有64QAM输入的多跨度波分复用光纤系统,表明从1400到3000 km的距离,只需一个PMF即可在均匀输入上获得大增益。使用最近开发的扩展高斯噪声(GN)模型的理论模型和全场分步仿真,我们说明了光纤传播后概率整形对有效SNR的影响。我们的结果表明,对于固定的平均光发射功率,可以从光纤放大器和与调制无关的非线性干扰(NLI)中获得噪声贡献的整形增益,而整形同时会导致惩罚,因为它会导致NLI增加。但是,发现这种非线性成形损失的影响相对较小,并且使用依赖于调制的GN模型优化成形的PMF证实了为AWGN找到的PMF对于多跨光纤系统也是不错的选择。

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