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EXPERIMENTAL DEMONSTRATION OF MITIGATION OF LINEAR AND NONLINEAR IMPAIRMENTS IN FIBER-OPTIC COMMUNICATION SYSTEMS BY LDPC-CODED TURBO EQUALIZATION

机译:LDPC编码涡轮均衡技术在光纤通信系统中减轻线性和非线性损伤的实验演示

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摘要

The ever-increasing demands for transmission capacity are the cause for the quick evolution of optical communication systems. Channel transmission at 100 Gb/s is already being considered by network operators. The major transmission impairments at these high rates are intra-channel and inter-channel nonlinearities, nonlinear phase noise, and polarization mode dispersion. By implementing LDPC-coded modulation schemes with soft decoding and Bahl-Cocke-Jelinek-Raviv (BCJR) algorithm for equalization we have demonstrated significant improvements in system performance experiencing several impairments simultaneously. The new turbo-equalization scheme is used as a mean to simultaneously mitigate both linear and nonlinear impairments. This approach is general and applicable to both direct and coherent detection.We provide comprehensive study of LDPC codes suitable for implementation in high-speed optical transmission systems. We determine channel capacity based on the forward step of the BCJR algorithm and show that by using LDPC codes we can closely approach the maximum transmission capacity that is possible. We propose the multilevel maximum a posteriori probability (MAP) turbo equalization scheme based on multilevel BCJR algorithm and an LDPC decoder, which considers independent symbols transmitted over both polarizations as two dimensional super-symbols. The use of multilevel modulation schemes provide higher spectral efficiency, while all related signal processing is performed at lower symbol rates, where dealing with PMD compensation and fiber nonlinearities mitigation is more manageable. We show significant improvement in system performance over a system employing an equalizer that considers symbols transmitted in different polarizations as independent.
机译:对传输容量的不断增长的需求是光通信系统快速发展的原因。网络运营商已经在考虑100 Gb / s的信道传输。在这些高速率下的主要传输障碍是通道内和通道间的非线性,非线性相位噪声和偏振模色散。通过实施带有软解码的LDPC编码调制方案和Bahl-Cocke-Jelinek-Raviv(BCJR)算法进行均衡,我们证明了同时遭受若干损害的系统性能有了显着提高。新的涡轮均衡方案被用作同时减轻线性和非线性损伤的一种手段。这种方法是通用的,适用于直接检测和相干检测。我们对适用于高速光传输系统的LDPC码进行了全面的研究。我们根据BCJR算法的前进步骤确定信道容量,并表明通过使用LDPC码,我们可以接近可能的最大传输容量。我们提出了一种基于多级BCJR算法和LDPC解码器的多级最大后验概率(MAP)Turbo均衡方案,该方案将通过两个极化传输的独立符号视为二维超级符号。多级调制方案的使用可提供更高的频谱效率,而所有相关信号处理均以较低的符号率执行,从而在PMD补偿和光纤非线性缓解方面更易于管理。与采用均衡器的系统相比,我们看到了系统性能的显着提高,该均衡器将以不同极化方式传输的符号视为独立符号。

著录项

  • 作者

    Minkov Lyubomir L.;

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