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Phase estimation receiver for full-field detection: a novel receiver structure for electronic dispersion compensation of metropolitan area networks

机译:用于全场检测的相位估计接收机:一种用于城域网电子色散补偿的新型接收机结构

摘要

The development of ultra high speed (~20 Gsamples/s) analogue to digital converters (ADCs), and the delayed deployment of 40 Gbit/s transmission due to the economic downturn, has stimulated the investigation of digital signal processing (DSP) techniques for compensation of optical transmission impairments. In the future, DSP will offer an entire suite of tools to compensate for optical impairments and facilitate the use of advanced modulation formats. Chromatic dispersion is a very significant impairment for high speed optical transmission. This thesis investigates a novel electronic method of dispersion compensation which allows for cost-effective accurate detection of the amplitude and phase of the optical field into the radio frequency domain. The first electronic dispersion compensation (EDC) schemes accessed only the amplitude information using square law detection and achieved an increase in transmission distances. This thesis presents a method by using a frequency sensitive filter to estimate the phase of the received optical field and, in conjunction with the amplitude information, the entire field can be digitised using ADCs. This allows DSP technologies to take the next step in optical communications without requiring complex coherent detection. This is of particular of interest in metropolitan area networks. The full-field receiver investigated requires only an additional asymmetrical Mach-Zehnder interferometer and balanced photodiode to achieve a 50% increase in EDC reach compared to amplitude only detection.
机译:超高速(〜20 Gsamples / s)模数转换器(ADC)的发展以及由于经济不景气而导致40 Gbit / s传输的延迟部署刺激了对数字信号处理(DSP)技术的研究。补偿光传输损伤。将来,DSP将提供一整套工具来补偿光学损伤并促进高级调制格式的使用。色散对于高速光传输是非常显着的损害。本文研究了一种新颖的色散补偿电子方法,该方法可以经济有效地准确检测进入射频域的光场的幅度和相位。第一种电子色散补偿(EDC)方案使用平方律检测仅访问幅度信息,并实现了传输距离的增加。本文提出了一种使用频率敏感滤波器来估计接收到的光场相位的方法,并结合幅度信息,可以使用ADC将整个场数字化。这使DSP技术无需复杂的相干检测即可在光通信中迈出下一步。这在城域网中特别重要。与仅振幅检测相比,所研究的全场接收器仅需要一个额外的非对称Mach-Zehnder干涉仪和平衡的光电二极管即可将EDC范围增加50%。

著录项

  • 作者

    McCarthy Mary E.;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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