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Upper bound on the capacity of the nonlinear Schrödinger channel

机译:非线性Schrödinger通道容量的上限

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摘要

It is shown that the capacity of the channel modeled by (a discretized version of) the stochastic nonlinear Schrödinger (NLS) equation is upper-bounded by log(l + SNR) with SNR = P/σ(z), where P is the average input signal power and σ(z) is the total noise power up to distance z. The result is a consequence of the fact that the deterministic NLS equation is a Hamiltonian energy-preserving dynamical system.
机译:结果表明,由随机非线性薛定ding(NLS)方程(的离散化版本)建模的信道容量由SNR = P /σ(z)的log(l + SNR)上界,其中P是平均输入信号功率,σ(z)是直至距离z的总噪声功率。结果是确定性NLS方程是哈密顿能量保持动力学系统的事实的结果。

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