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首页> 外文期刊>Journal of Lightwave Technology >DMT Transmission in Short-Reach Optical Interconnection Employing a Novel Bit-Class Probabilistic Shaping Scheme
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DMT Transmission in Short-Reach Optical Interconnection Employing a Novel Bit-Class Probabilistic Shaping Scheme

机译:采用新型比特类概率整形方案的短途达到光学互连中的DMT传输

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A 60-GBaud intensity modulation and direct detection discrete Fourier transform spread (DFT-S) discrete multi-tone (DMT) transmission system employing low-density parity check- (LDPC-) encoded probabilistic shaping 16-ary quadrature amplitude modulation (PS-16QAM) is proposed and experimentally demonstrated. In contrast to classical probability-oriented PS schemes such as arithmetic distribution matching (ADM) and constant composition distribution matching (CCDM), the proposed one is performed based on a novel bit-weighted distribution matching (BWDM) algorithm having the advantage of simpler operations along with lower computation and hardware complexity, which merely relies on bit-class processing. As the key content of the BWDM, the bit weight intervention operation is utilized to enlarge the probability of bit ‘0’ in the first two out of four serial binary sequences before PS-16QAM mapping. Different from the labels indicating probability distribution in ADM and CCDM, the end product of the BWDM is a group of bits mapped from input data source, which can be seamlessly compatible with the following LDPC-based forward error correction. In our experiments, system performance is respectively investigated with three LDPC code rates (3/4, 5/6, and 9/10) as well as three PS parameter values ( k = 4, 5, and 7), which leads to various symbol probability distribution. Compared with standard uniformly-distributed 16QAM, up to 0.407-dB shaping gain can be achieved to approach Shannon limit in the low signal-to-noise ratio region. Moreover, the experimental results show that appreciable receiver power sensitivity improvement can be obtained by the PS-16QAM DMT based on BWDM over 2-km standard single-mode fiber for short-reach optical interconnection. Additionally, the reference-based pre-equalization is equipped to compensate for the high frequency loss by ultra-wide signal bandwidth.
机译:一种60-gbaud强度调制和直接检测离散傅里叶变换扩展(DFT-S)离散多音(DMT)传输系统采用低密度奇偶校验检查(LDPC-)编码概率整形16-ary正交幅度调制(PS-建议和实验证明了16QAM)。与诸如算术分布匹配(ADM)和常数构成分布匹配(CCDM)的经典概率取向的PS方案相反,基于具有更简单操作的优点的新型比特加权分布匹配(BWDM)算法来执行所提出的概率随着较低的计算和硬件复杂性,这只依赖于比特类处理。作为BWDM的关键内容,利用位权重干预操作来扩大PS-16QAM映射之前的四个串行二进制序列中的前两个中的比特'0'的概率。不同于ADM和CCDM中的概率分布的标签,BWDM的最终产品是从输入数据源映射的一组位,其可以与以下基于LDPC的前向纠错无缝兼容。在我们的实验中,分别用三个LDPC码率(3/4,5 / 6和9/10)调查系统性能以及三个PS参数值(<斜体xmlns:mml =“http://www.w3 .org / 1998 / math / mathml“xmlns:xlink =”http://www.w3.org/1999/xlink“> k = 4,5和7),这导致各种符号概率分布。与标准均匀分布的16QAM相比,可以实现高达0.407-DB的成形增益,以便在低信噪比区域中接近Shannon极限。此外,实验结果表明,可通过基于2公里标准的单模光纤的PS-16QAM DMT获得可观的接收器功率敏感性改进,用于短到达光学互连。另外,配备基于参考的预均衡化以通过超宽信号带宽来补偿高频损耗。

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