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Nonlinear Electrical Compensation for the Coherent Optical OFDM System

机译:相干光OFDM系统的非线性电补偿

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摘要

A main drawback of Coherent Optical Orthogonal Frequency Division Multiplexing (CO-OFDM) system is its sensitivity to fiber nonlinearity. Nonlinear electrical equalizer based on Volterra model has been demonstrated capable of compensating fiber nonlinear distortion in an OOK or PSK optical communication system. However, the implementation complexity of a Volterra model based electrical equalizer prohibits its deployment in a real-life CO-OFDM system. In this paper, we demonstrate that the number of kernels of a Volterra model based equalizer can be significantly reduced using the modified Gram-Schmidt method with reorthogonalization techniques. The resulting “sparse” Volterra model based electrical equalizer and the electrical equalizer based on the “full” Volterra model have comparable performance and can compensate intra-channel nonlinearity of a 16-QAM 100 Gbit/s CO-OFDM System.
机译:相干光正交频分复用(CO-OFDM)系统的主要缺点是对光纤非线性的敏感性。已经证明基于Volterra模型的非线性电均衡器能够补偿OOK或PSK光通信系统中的光纤非线性失真。但是,基于Volterra模型的电气均衡器的实现复杂性阻止了其在现实生活中的CO-OFDM系统中的部署。在本文中,我们证明了使用改进的Gram-Schmidt方法和正交校正技术可以显着减少基于Volterra模型的均衡器的内核数。所得的基于“稀疏” Volterra模型的电均衡器和基于“完整” Volterra模型的电均衡器具有相当的性能,并且可以补偿16-QAM 100 Gbit / s CO-OFDM系统的信道内非线性。

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