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首页> 外文期刊>Journal of Lightwave Technology >Iterative Unreplicated Parallel Interference Canceler for MDL-Tolerant Dense SDM (12-Core × 3-Mode) Transmission Over 3000 km
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Iterative Unreplicated Parallel Interference Canceler for MDL-Tolerant Dense SDM (12-Core × 3-Mode) Transmission Over 3000 km

机译:迭代的,无复制的并行干扰消除器,用于MDL容错密集SDM(12核×3模式)传输超过3000公里

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摘要

We propose a novel multiple-input multiple-output (MIMO) detection scheme based on iterative unreplicated parallel interference cancelling (UPIC) technique for mode dependent loss (MDL)-impaired few-mode fibre (FMF) transmission. An optical MIMO channel over an FMF exhibits a mode-dependent property where each mode division multiplexed signal is passed through a different lossy channel, known as an MDL phenomena. One challenging issue for realising future deployable space division multiplexing (SDM) systems is establishing reliable and robust signal transmission techniques in the presence of MDL. The main contributions of this paper include first, a proposal of newly developed iterative interference cancellation technique with parallel processing for MDL-impact mitigation, second, a comparative study on performance of MIMO detection schemes, and third, a demonstration of the longest dense SDM transmission over multicore (MC)-FMF. The proposed UPIC with iterative processing is experimentally shown to improve Q-factors by more than 3 dB, and record-long dense SDM transmission reach exceeding 3000 km over 12-core x 3-mode MC-FMF was achieved.
机译:我们提出了一种基于迭代无复制并行干扰消除(UPIC)技术的新型多输入多输出(MIMO)检测方案,用于模式依赖损耗(MDL)损害的少模光纤(FMF)传输。 FMF上的光MIMO信道表现出与模式有关的特性,其中,每个模分复用信号都通过不同的有损耗信道(称为MDL现象)。实现未来可部署的空分复用(SDM)系统的一个具有挑战性的问题是在存在MDL的情况下建立可靠且健壮的信号传输技术。本文的主要贡献包括:首先,提出了一种新的迭代干扰消除技术的建议,该技术具有并行处理以减轻MDL的影响;其次,对MIMO检测方案的性能进行了比较研究;其次,论证了最长的密集SDM传输通过多核(MC)-FMF。实验证明,所提出的具有迭代处理能力的UPIC可以将Q因子提高3 dB以上,并且在12芯x 3模式MC-FMF上实现了长达3000 km的记录长密集SDM传输,达到了记录长。

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