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Computationally Efficient Nonlinearity Compensation for Coherent Fiber-Optic Systems

机译:相干光纤系统的计算有效非线性补偿

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Split-step digital backward propagation (DBP) can be combined with coherent detection to compensate for fiber nonlinear impairments. A large number of DBP steps is usually needed for a long-haul fiber system, and this creates a heavy computational load. In a trade-off between complexity and performance, interchannel nonlinearity can be disregarded in order to simplify the DBP algorithm. The number of steps can also be reduced at the expense of performance. In periodic dispersion-managed long-haul transmission systems, optical waveform distortion is dominated by chromatic dispersion. As a result, the nonlinearity of the optical signal repeats in every dispersion period. Because of this periodic behavior, DBP of many fiber spans can be folded into one span. Using this distance-folded DBP method, the required computation for a transoceanic transmission system with full inline dispersion compensation can be reduced by up to two orders of magnitude with negligible penalty. The folded DBP method can be modified to compensate for nonlinearity in fiber links with non-zero residua dispersion per span.
机译:分步数字后向传播(DBP)可以与相干检测相结合,以补偿光纤非线性损伤。对于长距离光纤系统,通常需要大量的DBP步骤,这会产生很大的计算负担。在复杂性和性能之间进行权衡时,可以忽略通道间的非线性,以简化DBP算法。也可以减少步骤数,但会降低性能。在周期性色散管理的长距离传输系统中,光波形失真主要由色散引起。结果,光信号的非线性在每个色散周期中重复。由于这种周期性的行为,许多光纤跨度的DBP可以折叠成一个跨度。使用这种距离折叠的DBP方法,具有完整的线内色散补偿的跨洋传输系统所需的计算量最多可以减少两个数量级,而损失却可以忽略不计。可以修改折叠DBP方法,以补偿每跨段具有非零残留色散的光纤链路中的非线性。

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