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基于非正交离散傅里叶变换预编码的基于分布反馈激光器的正交频分复用光系统的非线性失真缓解

Nonlinear distortion mitigation of DML-based OFDM optical systems with non-orthogonal DFT-precoding.

作者信息

Song Peiji, Hu Zhouyi, Dai Yizhan, Chan Chun-Kit

出版信息

Opt Lett. 2023 Sep 1;48(17):4613-4616. doi: 10.1364/OL.496312.

Abstract

We propose a non-orthogonal discrete Fourier transform (DFT) matrix precoding scheme for the mitigation of nonlinear distortion induced by the interaction between laser chirp and fiber dispersion in a directly modulated laser (DML)-based orthogonal frequency division multiplexing (OFDM) transmission system. Compared with conventional OFDM, the proposed method can decrease the peak-to-average power ratio (PAPR) and significantly reduce the nonlinear distortion without sacrificing spectral efficiency (SE). The cascaded binary-phase-shift-keying iterative detection (CBID) algorithm is used to eliminate the inter-carrier interference (ICI) that is purposely induced by the non-orthogonal precoding. The performance of the proposed scheme is experimentally evaluated, achieving ∼0.4-dB sensitivity improvement at the KP4-forward error correction (FEC) threshold over the T/2-spaced third-order Volterra nonlinear equalizer (VNLE). Meanwhile, compared to the VNLE, the reduction in computational complexity of one OFDM frame is 90% for multiplication and 88.32% for addition in this work.

摘要

我们提出了一种非正交离散傅里叶变换(DFT)矩阵预编码方案,用于减轻基于直接调制激光器(DML)的正交频分复用(OFDM)传输系统中激光啁啾与光纤色散相互作用所引起的非线性失真。与传统OFDM相比,该方法能够降低峰均功率比(PAPR),并在不牺牲频谱效率(SE)的情况下显著降低非线性失真。级联二进制相移键控迭代检测(CBID)算法用于消除由非正交预编码故意引入的载波间干扰(ICI)。我们通过实验评估了该方案的性能,在KP4前向纠错(FEC)阈值下,相较于T/2间隔的三阶沃尔泰拉非线性均衡器(VNLE),灵敏度提高了约0.4 dB。同时,与VNLE相比,在这项工作中,一个OFDM帧的计算复杂度乘法降低了90%,加法降低了88.32%。

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