首页> 外文学位 >Influence of the number of degrees of freedom on the capacity of incoherent optical fiber communication systems.
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Influence of the number of degrees of freedom on the capacity of incoherent optical fiber communication systems.

机译:自由度数对非相干光纤通信系统容量的影响。

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摘要

The purpose of this dissertation is to find the channel capacity in optical fiber communication systems when incoherent detection is used with single (polarization filtering) and two-polarizations (no polarization filtering).; Optical fiber systems employ photodetectors that convert optical intensity to electrical current. Bandpass vector fields may be represented by four orthogonal baseband components corresponding to two quadrature phases and two orthogonal polarizations. Intensity is proportional to the sum of the squares of these four components. In the case of a coherent receiver, a strong optical local oscillator (in phase and with same polarization as the signal) is added to the signal prior to the photodetector. This results in the removal of the quadrature phase and polarization components, and reduces to the one degree of freedom (DOF) case of signal plus local oscillator shot noise for which the Shannon channel capacity formula applies. Electrical noise following the photodetector may also be neglected if there is an optical amplifier before the photodetector in the receiver. The amplifier introduces amplified spontaneous emission noise containing both quadrature phase components and both polarizations (4 DOFs), but the 2 DOF case would result if a polarization filter were used. Although the 1 and 2 DOF cases are of less practical interest than the 4 DOF case, they provide useful benchmarks for comparing performance limits.; We evaluate both spectral efficiency limits (bps/Hz) in the limit of high and low SNR for the 1,2 and 4 DOF cases and also find the power efficiency (minimum number of photons per bit) for each of these cases. It is shown that for high SNR the spectral efficiency is the same independent of the number of DOFs and that the half-Gaussian distribution is the optimum distribution. We are able to thus obtain a compact equation for spectral efficiency which behaves in a similar way to the Shannon capacity formula but with the SNR scaled by a constant.; We also show that for low SNR the half-Gaussian distribution is not the optimum distribution as the slope of the mutual information changes with the square of SNR which would lead to the number of photons per bit becoming infinite in the limit of SNR going to zero. We use a modified half-Gaussian distribution which has a discrete component (an impulse function at the origin) and provide a simple proof that this distribution results in a mutual information that goes to zero linearly with SNR resulting in a minimum number of photons per bit. Furthermore, by increasing the magnitude of the discrete component at the origin, it is shown that the minimum number of photons per bit for the incoherent channel approaches that of the coherent channel.
机译:本文的目的是在单相(偏振滤波)和两相(非偏振滤波)非相干检测中找到光纤通信系统中的信道容量。光纤系统采用将光强度转换为电流的光电探测器。带通矢量场可以由对应于两个正交相位和两个正交极化的四个正交基带分量表示。强度与这四个分量的平方和成正比。在相干接收机的情况下,在光电检测器之前,将一个强光学本地振荡器(同相且具有与信号相同的偏振)添加到信号中。这样就消除了正交相位和极化分量,并将信号加本地振荡器散粒噪声的一种自由度(DOF)情况减小了,适用香农信道容量公式。如果接收器中光电探测器之前有一个光放大器,则也可以忽略光电探测器之后的电噪声。放大器会引入放大的自发发射噪声,该噪声既包含正交相位分量又包含两个偏振(4个自由度),但是如果使用偏振滤波器,则会导致2个自由度的情况。尽管1和2 DOF案例比4 DOF案例没有实际意义,但它们为比较性能限制提供了有用的基准。我们评估了1,2和4 DOF情况下的高和低SNR限制中的频谱效率限制(bps / Hz),并且还找到了每种情况的功率效率(每位最小光子数)。结果表明,对于高SNR,频谱效率是相同的,与DOF的数量无关,并且半高斯分布是最佳分布。因此,我们能够获得一个紧凑的频谱效率方程,其行为与香农容量公式相似,但信噪比由一个常数定标。我们还表明,对于低SNR,半高斯分布不是最佳分布,因为互信息的斜率随SNR的平方而变化,这将导致每比特的光子数在SNR的极限变为零时变为无限大。 。我们使用经过修改的半高斯分布,该分布具有离散分量(原点处的脉冲函数),并提供了简单的证明,即该分布会导致互信息与SNR线性变为零,从而使每位光子数最少。此外,通过增加原点处的离散分量的大小,可以看出,对于非相干通道,每位的最小光子数接近相干通道的光子数。

著录项

  • 作者

    Teotia, Seemant.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 113 p.
  • 总页数 113
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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