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Experimental Demonstration of Non-Integer Fractionally-Spaced Equalization for Flexible Coherent Receivers

机译:对柔性相干接收器的非整数间隔均衡的实验演示

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In this paper we present a general approach for dual polarization non-integer butterfly fractionally-spaced equalization (FSE) combined with a static frequency-domain electronic dispersion compensation (EDC). We experimentally demonstrate the ability of the above mentioned digital signal processing (DSP) scheme to compensate for linear impairments in optical transmission systems for various sampling rates corresponding to a number of samples-per-symbol (SPS) ranging from 1.25 to 2.5. We successfully transmit a 10 GBaud quaternary phase-shift keying (QPSK) signal over up to 3666 km standard single mode fiber (SSMF) using the suggested DSP. The non-integer FSE shows similar performance with enhanced flexibility in the receiver DSP, together with the capability of relaxing the required analog-to-digital conversion (ADC) sampling rates, compared with an integer FSE. The non-integer FSE with less than two SPS, shows a comparable performance with FSE realizations with two SPS or more, and outperforms symbol-spaced equalization by up to 4 dB in Q factor.
机译:本文介绍了一种用于双偏振非整数蝴蝶分离间隔均衡(FSE)的一般方法与静态频域电子色散补偿(EDC)组合。我们通过实验证明了上述数字信号处理(DSP)方案的能力,以补偿光传输系统中的线性损伤,用于对应于从1.25到2.5的每符号(SP)的多个样本(SP)的各种采样率。我们使用所建议的DSP成功传送了10 GBaud四元相移键控(QPSK)信号超过3666km标准的单模光纤(SSMF)。非整数FSE在接收器DSP中具有增强的灵活性,以及​​放松所需的模数转换(ADC)采样率的能力,与整数FSE相比,具有相似的性能。具有少于两个SP的非整数FSE,显示了具有两个SPS或更大的FSE实现的可比性,并且Q因子中最多优于4 dB的符号间隔均衡。

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