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Improvement of fiber optic system performance by synchronous phase modulation and filtering at the transmitter.

机译:通过在发射机处进行同步相位调制和滤波来改善光纤系统的性能。

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摘要

In this dissertation the performance of a novel variant of a return-to-zero (RZ) modulation format, based on square-wave phase modulation and filtering of a continuous-wave (CW) signal, is investigated and compared with various modulation formats considered in the literature. We call this modulation format continuous-wave square-wave (CWSW). With CWSW an RZ pulse train is generated by phase modulating the CW signal by a periodic square-wave phase function having an amplitude of pi/2 and frequency of half the bit rate, and then filtering the signal. The filter performs phase-to-amplitude conversion, resulting in an alternate-sign RZ pulse train, which is shown to be resistant to fiber dispersion. The alternate-sign RZ pulse train is then amplitude modulated with the data before the transmission. Alternate signs between adjacent pulses makes this signal format robust to impairments caused by the optical fiber, similar to a conventional alternate-sign RZ signal format. However, the unique property of the CWSW signal format is that individual pulses can induce peak intensity enhancement (PIE), a phenomenon by which the peak of a pulse increases during the initial propagation in the presence of dispersion. The PIE in effect delays the decrease in the pulse peak, which represents the signal level for bit 1. Thus, the eye opening at the receiver is improved. An analytically tractable model is developed to explain the occurrence of the PIE, which cannot be achieved with a conventional pulse shape. The sources of performance degradations for different modulation formats in single-channel 40 Gb/s systems are also discussed in this dissertation. Various transmission system configurations of practical interest are considered and the performance of CWSW is compared with alternative modulation formats. It is found that the CWSW signal format performs significantly better than the other considered modulation formats in systems not employing dispersion compensation and is comparable to the others in dispersion-managed systems. Furthermore, the transmitter configuration of the CWSW signal format is simpler than the other approaches.
机译:本文研究了基于方波相位调制和连续波(CW)信号滤波的归零(RZ)调制格式新颖变体的性能,并将其与考虑的各种调制格式进行了比较在文学中。我们称这种调制格式为连续波方波(CWSW)。对于CWSW,通过使用振幅为pi / 2且频率为比特率一半的周期性方波相位函数对CW信号进行相位调制,然后对信号进行滤波,可以生成RZ脉冲序列。该滤波器执行相位到幅度的转换,从而产生一个交替符号的RZ脉冲序列,该序列显示出可以抵抗光纤色散。然后在传输之前用数据对交替符号RZ脉冲序列进行幅度调制。类似于常规的交替符号RZ信号格式,相邻脉冲之间的交替符号使该信号格式对光纤引起的损伤具有鲁棒性。但是,CWSW信号格式的独特属性是单个脉冲可以引起峰值强度增强(PIE),在存在色散的情况下,脉冲的峰值在初始传播期间会增加,从而引起峰值强度增强(PIE)。实际上,PIE延迟了脉冲峰值的减小,该脉冲峰值表示位1的信号电平。因此,可以改善接收器处的眼睛睁开程度。开发了一种易于分析的模型来解释PIE的发生,这是常规脉冲形状无法实现的。本文还讨论了单通道40 Gb / s系统中不同调制格式的性能下降的根源。考虑了具有实际意义的各种传输系统配置,并将CWSW的性能与其他调制格式进行了比较。已经发现,在不使用色散补偿的系统中,CWSW信号格式的性能明显优于其他考虑的调制格式,并且与色散管理系统中的其他信号相当。此外,CWSW信号格式的发射机配置比其他方法更简单。

著录项

  • 作者

    Wongpaibool, Virach.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Electrical engineering.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 283 p.
  • 总页数 283
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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