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Low-Complexity Equalization Scheme for Multicarrier Offset-QAM Systems

机译:多载波偏移QAM系统的低复杂度均衡方案

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摘要

Multicarrier offset quadrature amplitude modulation (MC-OQAM) systems show a high degree of spectral efficiency and flexibility. However, the typical equalization method for MC-OQAM systems, the phase-corrected equalizer, has a large complexity because it uses several equalizers in parallel in order to cope with the inter-carrier interference problem. In this letter, we propose a low-complexity scheme for frequency-domain equalization with interleaved training sequences (FDE-ITS). Despite its low complexity, the FDE-ITS achieves the same phase noise tolerance and bit error rate (BER) performance against amplified spontaneous emission noise as the phase-corrected equalizer in MC-OQAM polarization division multiplexing (PDM) system simulations. In a 206.6-Gb/s PDM MC-16OQAM back-to-back experiment, the FDE-ITS and the conventional phase-corrected equalizer show 1.4-dB optical signal-to-noise ratio penalty over the additive white Gaussian noise theory at a BER of $10^{-3}$ . Due to its good performance and low computational complexity, the FDE-ITS is a promising equalization scheme for MC-OQAM systems.
机译:多载波偏移正交幅度调制(MC-OQAM)系统显示出很高的频谱效率和灵活性。但是,用于MC-OQAM系统的典型均衡方法,即相位校正均衡器,具有很大的复杂性,因为它并行使用了多个均衡器以应对载波间干扰问题。在这封信中,我们提出了一种具有交织训练序列(FDE-ITS)的频域均衡的低复杂度方案。尽管其复杂度较低,但FDE-ITS在放大的自发发射噪声方面仍具有与MC-OQAM偏振分复用(PDM)系统仿真中的相位校正均衡器相同的相位噪声容限和误码率(BER)性能。在206.6 Gb / s的PDM MC-16OQAM背对背实验中,FDE-ITS和传统的相位校正均衡器显示出在相加的高斯白噪声理论下,光信号的信噪比损失为1.4 dB。 $ 10 ^ {-3} $的误码率。由于其良好的性能和较低的计算复杂度,FDE-ITS是一种很有希望的MC-OQAM系统均衡方案。

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