Budker Institute of Nuclear Physics of Siberian Branch Russian Academy of Sciences, Novosibirsk, 630090 Russia.
Physical Department, Novosibirsk State University, Novosibirsk, 630090 Russia.
Phys Rev E. 2017 Jun;95(6-1):062133. doi: 10.1103/PhysRevE.95.062133. Epub 2017 Jun 26.
We consider a model nondispersive nonlinear optical fiber channel with an additive Gaussian noise. Using Feynman path-integral technique, we find the optimal input signal distribution maximizing the channel's per-sample mutual information at large signal-to-noise ratio in the intermediate power range. The optimal input signal distribution allows us to improve previously known estimates for the channel capacity. We calculate the output signal entropy, conditional entropy, and per-sample mutual information for Gaussian, half-Gaussian, and modified Gaussian input signal distributions. We demonstrate that in the intermediate power range the capacity (the per-sample mutual information for the optimal input signal distribution) is greater than the per-sample mutual information for half-Gaussian input signal distribution considered previously as the optimal one. We also show that the capacity grows as loglogP in the intermediate power range, where P is the signal power.
我们考虑了一个具有加性高斯噪声的非色散非线性光纤信道模型。利用费曼路径积分技术,我们在中等信号噪声比和中间功率范围内找到了最大化信道样本互信息的最优输入信号分布。最优输入信号分布使我们能够改进之前已知的信道容量估计。我们计算了高斯、半高斯和修正高斯输入信号分布的输出信号熵、条件熵和样本互信息。我们证明,在中等功率范围内,容量(最优输入信号分布的样本互信息)大于之前被认为是最优的半高斯输入信号分布的样本互信息。我们还表明,容量在中等功率范围内呈对数对数增长,其中 P 是信号功率。