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Coherent detection and digital signal processing for fiber optic communications.

机译:光纤通信的相干检测和数字信号处理。

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摘要

The drive towards higher spectral efficiency in optical fiber systems has generated renewed interest in coherent detection.;We review different detection methods, including noncoherent, differentially coherent, and coherent detection, as well as hybrid detection methods. We compare the modulation methods that are enabled and their respective performances in a linear regime. An important system parameter is the number of degrees of freedom (DOF) utilized in transmission. Polarization-multiplexed quadrature-amplitude modulation maximizes spectral efficiency and power efficiency as it uses all four available DOF contained in the two field quadratures in the two polarizations. Dual-polarization homodyne or heterodyne downconversion are linear processes that can fully recover the received signal field in these four DOF. When downconverted signals are sampled at the Nyquist rate, compensation of transmission impairments can be performed using digital signal processing (DSP). Software based receivers benefit from the robustness of DSP, flexibility in design, and ease of adaptation to time-varying channels.;Linear impairments, including chromatic dispersion (CD) and polarization-mode dispersion (PMD), can be compensated quasi-exactly using finite impulse response filters. In practical systems, sampling the received signal at 3/2 times the symbol rate is sufficient to enable an arbitrary amount of CD and PMD to be compensated for a sufficiently long equalizer whose tap length scales linearly with transmission distance. Depending on the transmitted constellation and the target bit error rate, the analog-to-digital converter (ADC) should have around 5 to 6 bits of resolution.;Digital coherent receivers are naturally suited for the implementation of feedforward carrier recovery, which has superior linewidth tolerance than phase-locked loops, and does not suffer from feedback delay constraints. Differential bit encoding can be used to prevent catastrophic receiver failure due to cycle slips.;In systems where nonlinear effects are concentrated mostly at fiber locations with small accumulated dispersion, nonlinear phase de-rotation is a low-complexity algorithm that can partially mitigate nonlinear effects. For systems with arbitrary dispersion maps, however, backpropagation is the only universal technique that can jointly compensate dispersion and fiber nonlinearity. Backpropagation requires solving the nonlinear Schrodinger equation at the receiver, and has high computational cost. Backpropagation is most effective when dispersion compensation fibers are removed, and when signal processing is performed at three times oversampling. Backpropagation can improve system performance and increase transmission distance.;With anticipated advances in analog-to-digital converters and integrated circuit technology, DSP-based coherent receivers at bit rates up to 100 Gb/s should become practical in the near future.
机译:光纤系统中更高光谱效率的驱动力引起了对相干检测的新兴趣。我们回顾了不同的检测方法,包括非相干,差分相干和相干检测以及混合检测方法。我们比较了启用的调制方法及其在线性状态下的各自性能。一个重要的系统参数是传输中使用的自由度(DOF)数。极化多路复用正交幅度调制可最大化频谱效率和功率效率,因为它使用了两个极化中两个场正交中包含的所有四个可用自由度。双极化零差或外差下变频是线性过程,可以完全恢复这四个自由度中的接收信号场。当以奈奎斯特速率对下变频信号进行采样时,可以使用数字信号处理(DSP)进行传输损伤的补偿。基于软件的接收器受益于DSP的鲁棒性,设计的灵活性以及易于适应时变信道的优势;线性色散(包括色散(CD)和偏振模色散(PMD))可以使用准精确补偿有限脉冲响应滤波器。在实际系统中,以3/2倍的符号率对接收信号进行采样足以使CD和PMD的任意量得到补偿,以补偿抽头长度与传输距离成线性比例的足够长的均衡器。取决于传输的星座图和目标误码率,模数转换器(ADC)的分辨率应约为5到6位。数字相干接收机自然适合于实现前馈载波恢复,具有卓越的线宽容限比锁相环大,并且不受反馈延迟的约束。差分位编码可用于防止由于周跳而导致的灾难性接收机故障。在系统中非线性影响主要集中在累积色散较小的光纤位置的系统中,非线性相位消旋是一种低复杂度算法,可以部分缓解非线性影响。但是,对于具有任意色散图的系统,反向传播是唯一可以共同补偿色散和光纤非线性的通用技术。反向传播需要在接收器处求解非线性Schrodinger方程,并且具有很高的计算成本。当去除色散补偿光纤时,以及在三倍过采样时执行信号处理时,反向传播最为有效。反向传播可以改善系统性能并增加传输距离。随着模数转换器和集成电路技术的预期发展,比特率高达100 Gb / s的基于DSP的相干接收机将在不久的将来成为现实。

著录项

  • 作者

    Ip, Ezra.;

  • 作者单位

    Stanford University.;

  • 授予单位 Stanford University.;
  • 学科 Engineering Electronics and Electrical.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 217 p.
  • 总页数 217
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;光学;
  • 关键词

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