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首页> 外文期刊>Journal of electrical and computer engineering >Efficient Parallel Carrier Recovery for Ultrahigh Speed Coherent QAM Receivers with Application to Optical Channels
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Efficient Parallel Carrier Recovery for Ultrahigh Speed Coherent QAM Receivers with Application to Optical Channels

机译:超高速相干QAM接收机的高效并行载波恢复及其在光信道上的应用

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摘要

This work presents a new efficient parallel carrier recovery architecture suitable for ultrahigh speed intradyne coherent optical receivers (e.g., ≥100Gb/s) with quadrature amplitude modulation (QAM). The proposed scheme combines a novel low-latency parallel digital phase locked loop (DPLL) with a feedforward carrier phase recovery (CPR) algorithm. The new low-latency parallel DPLL is designed to compensate not only carrier frequency offset but also frequency fluctuations such as those induced by mechanical vibrations or power supply noise. Such carrier frequency fluctuations must be compensated since they lead to higher phase error variance in traditional feedforward CPR techniques, significantly degrading the receiver performance. In order to enable a parallel-processing implementation in multigigabit per second receivers, a new approximation to the DPLL computation is introduced. The proposed technique reduces the latency within the feedback loop of the DPLL introduced by parallel processing, while at the same time it provides a bandwidth and capture range close to those achieved by a serial DPLL. Simulation results demonstrate that the effects caused by frequency deviations can be eliminated with the proposed low latency parallel carrier recovery architecture.
机译:这项工作提出了一种新的高效并行载波恢复架构,适用于具有正交幅度调制(QAM)的超高速内达因相干光接收机(例如≥100Gb/ s)。所提出的方案结合了新颖的低延迟并行数字锁相环(DPLL)和前馈载波相位恢复(CPR)算法。新型低延迟并行DPLL不仅可以补偿载波频率偏移,还可以补偿频率波动,例如由机械振动或电源噪声引起的频率波动。这种载波频率波动必须加以补偿,因为它们会导致传统前馈CPR技术中较高的相位误差方差,从而大大降低接收机性能。为了在每秒几千兆位的接收器中实现并行处理实现,引入了对DPLL计算的新近似。所提出的技术减少了并行处理引入的DPLL反馈环路内的等待时间,同时它提供的带宽和捕获范围接近串行DPLL所实现的带宽和捕获范围。仿真结果表明,采用建议的低延迟并行载波恢复架构可以消除由频率偏差引起的影响。

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  • 来源
    《Journal of electrical and computer engineering》 |2013年第2013期|25.1-25.14|共14页
  • 作者单位

    Laboratorio de Comunicaciones Digitales, Universidad Nacional de Cordoba (CONICET), Avenida Velez Sarsfield 1611, X5016GCA Cordoba, Argentina;

    Laboratorio de Comunicaciones Digitales, Universidad Nacional de Cordoba (CONICET), Avenida Velez Sarsfield 1611, X5016GCA Cordoba, Argentina;

    Laboratorio de Comunicaciones Digitales, Universidad Nacional de Cordoba (CONICET), Avenida Velez Sarsfield 1611, X5016GCA Cordoba, Argentina;

    Laboratorio de Comunicaciones Digitales, Universidad Nacional de Cordoba (CONICET), Avenida Velez Sarsfield 1611, X5016GCA Cordoba, Argentina;

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