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首页> 外文期刊>IEEE Photonics Technology Letters >Hardware Efficient Adaptive Equalizer for Coherent Short-Reach Optical Interconnects
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Hardware Efficient Adaptive Equalizer for Coherent Short-Reach Optical Interconnects

机译:相干短程光学互连的硬件有效自适应均衡器

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摘要

We propose a novel adaptive equalization (AEQ) algorithm for short-reach coherent optical interconnects targeting intra-datacenter applications. The algorithm consists of 1-tap 2 x 2 complex-valued multiple-input multiple-output (MIMO) finite impulse response (FIR) filter for polarization division de-multiplexing, four N-tap real-valued FIR filters for digital equalization, and a post three-tap T-spaced 4 x 4 real-valued MIMO FIR filter for the timing skew mitigation. Up to 8-km standard single-mode fiber (SSMF) transmission experiments with 28-Gbaud PDM-16QAM signals verifies that less than the 1-dB receiver sensitivity penalty can be tolerated in comparison with conventional 4 x 4 MIMO AEQ, while the number of multipliers can be reduced by similar to 59% if both algorithms use 25 taps. The tolerance of timing skew and chromatic dispersion for the AEQ algorithm is numerically investigated.
机译:我们针对目标内部数据中心应用的短距离相干光互连提出了一种新颖的自适应均衡(AEQ)算法。该算法由用于极化分割解复用的1抽头2 x 2复数值多输入多输出(MIMO)有限脉冲响应(FIR)滤波器,用于数字均衡的四个N抽头实值FIR滤波器和后三抽头T间隔4 x 4实值MIMO FIR滤波器,用于缓解时序偏斜。使用28 Gbaud PDM-16QAM信号进行的长达8公里的标准单模光纤(SSMF)传输实验证明,与传统的4 x 4 MIMO AEQ相比,可以接受的接收器灵敏度损失小于1 dB。如果两种算法都使用25个抽头,则乘法器的数量可减少约59%。数值研究了AEQ算法对时间偏斜和色散的容忍度。

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