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Non-Binary Coded Modulation for FMF-Based Coherent Optical Transport Networks

机译:基于FMF的相干光传输网络的非二进制编码调制

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摘要

The Internet has fundamentally changed the way of modern communication. Current trends indicate that high-capacity demands are not going to be saturated anytime soon. From Shannon's theory, we know that information capacity is a logarithmic function of signal-to-noise ratio (SNR), but a linear function of the number of dimensions. Ideally, we can increase the capacity by increasing the launch power, however, due to the nonlinear characteristics of silica optical fibers that imposes a constraint on the maximum achievable optical-signal-to-noise ratio (OSNR). So there exists a nonlinear capacity limit on the standard single mode fiber (SSMF). In order to satisfy never ending capacity demands, there are several attempts to employ additional degrees of freedom in transmission system, such as few-mode fibers (FMFs), which can dramatically improve the spectral efficiency. On the other hand, for the given physical links and network equipment, an effective solution to relax the OSNR requirement is based on forward error correction (FEC), as the response to the demands of high speed reliable transmission. In this dissertation, we first discuss the model of FMF with nonlinear effects considered. Secondly, we simulate the FMF based OFDM system with various compensation and modulation schemes. Thirdly, we propose tandem-turbo-product nonbinary byte-interleaved coded modulation (BICM) for next-generation high-speed optical transmission systems. Fourthly, we study the Q factor and mutual information as threshold in BICM scheme. Lastly, an experimental study of the limits of nonlinearity compensation with digital signal processing has been conducted.
机译:互联网从根本上改变了现代交流的方式。当前的趋势表明,高容量需求不会在短期内饱和。根据Shannon的理论,我们知道信息容量是信噪比(SNR)的对数函数,而是维数的线性函数。理想情况下,我们可以通过增加发射功率来增加容量,但是,由于二氧化硅光纤的非线性特性会限制最大可达到的光信噪比(OSNR)。因此,在标准单模光纤(SSMF)上存在非线性容量限制。为了满足永无止境的容量需求,有几种尝试在传输系统中采用额外的自由度,例如少模光纤(FMF),可以极大地提高频谱效率。另一方面,对于给定的物理链路和网络设备,放宽OSNR要求的有效解决方案是基于前向纠错(FEC),作为对高速可靠传输需求的响应。本文首先讨论了考虑非线性影响的FMF模型。其次,我们使用各种补偿和调制方案对基于FMF的OFDM系统进行仿真。第三,我们为下一代高速光传输系统提出了串联涡轮乘积非二进制字节交织编码调制(BICM)。第四,我们以BICM方案中的Q因子和互信息为阈值进行研究。最后,对数字信号处理的非线性补偿极限进行了实验研究。

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    Lin Changyu;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en_US
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