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SSB Single Carrier and Multicarrier in C-Band FSO Transmission With KK Receiver

机译:使用KK接收器C波段的SSB单载波和多载波

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摘要

With the increasing demand of bandwidth, a higher capacity communication system is required for optical short link and access network. Intensity modulation/direct detection (IM-DD) is considered as a reasonable method in access network, due to its low cost and power consumption. However, it reduces the spectral efficiency compared with IQ modulation. In addition, single-sideband (SSB) signal occupies less bandwidth than double-sideband signal (DSB). However, SSB systems suffer from signal-signal beat interference (SSBI) from photodiodes (PDs). Recently, Kramers–Kronig (KK) receiver is proposed to mitigate SSBI. Meanwhile, single-sideband (SSB) signal is the prerequisite for KK scheme, and this kind of signal is also tolerant to fiber chromatic dispersion and multipath-fading. On the other hand, free-space optical (FSO) communication is becoming a promising candidate for next generation optical access network. Thus we experimentally demonstrate the KK scheme in 20 km SSMF and 20 m FSO links with both single carrier signal and multicarrier signal. We compare the performance between them with and without pre-equalization (pre-EQ). With the help of probabilistically shaped (PS) mapping to gives an increase in the sensitivity over an additive white Gaussian noise (AWGN). We reach a 117bit/s transmission with a spectral efficiency of 5.85 bit/s/Hz of 20 Ghz bandwidth with single modulator and single photodiode (PD) in fiber-FSO system.
机译:随着带宽需求的越来越大,光学短链路和接入网络需要更高容量的通信系统。由于其低成本和功耗,强度调制/直接检测(IM-DD)被认为是接入网络中的合理方法。然而,与IQ调制相比,它降低了光谱效率。另外,单边带(SSB)信号占用比双边带信号(DSB)较少的带宽。然而,SSB系统遭受来自光电二极管(PDS)的信号信号拍干扰(SSBI)。最近,建议kramers-kronig(kK)接收器来缓解SSBI。同时,单边带(SSB)信号是KK方案的先决条件,这种信号也耐受光纤色散和多径衰落。另一方面,自由空间光学(FSO)通信正在成为下一代光学接入网络的有希望的候选者。因此,我们通过单载波信号和多载波信号进行实验地展示了20公里的SSMF和20 M FSO链接的KK方案。我们将它们之间的性能进行比较,无需预均衡(EQ预均衡)。在概率形状(PS)映射的帮助下,通过添加白色高斯噪声(AWGN)的敏感性增加。我们达到117位比特频率,光谱效率为5.85位/ S / Hz的20 GHz带宽,用单个调制器和光纤-FSO系统中的单个光电二极管(PD)。

著录项

  • 来源
    《Journal of Lightwave Technology》 |2020年第18期|5000-5007|共8页
  • 作者单位

    Shanghai Institute for Advanced Communication and Data Science Key Laboratory for Information Science of Electromagnetic Waves Fudan University Shanghai China;

    Shanghai Institute for Advanced Communication and Data Science Key Laboratory for Information Science of Electromagnetic Waves Fudan University Shanghai China;

    Shanghai Institute for Advanced Communication and Data Science Key Laboratory for Information Science of Electromagnetic Waves Fudan University Shanghai China;

    Shanghai Institute for Advanced Communication and Data Science Key Laboratory for Information Science of Electromagnetic Waves Fudan University Shanghai China;

    Shanghai Institute for Advanced Communication and Data Science Key Laboratory for Information Science of Electromagnetic Waves Fudan University Shanghai China;

    Shanghai Institute for Advanced Communication and Data Science Key Laboratory for Information Science of Electromagnetic Waves Fudan University Shanghai China;

    Shanghai Institute for Advanced Communication and Data Science Key Laboratory for Information Science of Electromagnetic Waves Fudan University Shanghai China;

    Shanghai Institute for Advanced Communication and Data Science Key Laboratory for Information Science of Electromagnetic Waves Fudan University Shanghai China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Receivers; Quadrature amplitude modulation; OFDM; Optical fiber networks;

    机译:接收器;正交幅度调制;OFDM;光纤网络;

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