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High-Speed, High-Performance DQPSK Optical Links with Reduced Complexity VDFE Equalizers

机译:具有降低复杂度的VDFE均衡器的高速,高性能DQPSK光链路

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Optical transmission technologies optimized for optical network segments sensitive to power consumption and cost, comprise modulation formats with direct detection technologies. Specifically, non-return to zero differential quaternary phase shift keying (NRZ-DQPSK) in deployed fiber plants, combined with high-performance, low-complexity electronic equalizers to compensate residual impairments at the receiver end, can be proved as a viable solution for high-performance, high-capacity optical links. Joint processing of the constructive and the destructive signals at the single-ended DQPSK receiver provides improved performance compared to the balanced configuration, however, at the expense of higher hardware requirements, a fact that may not be neglected especially in the case of high-speed optical links. To overcome this bottleneck, the use of partially joint constructive/destructive DQPSK equalization is investigated in this paper. Symbol-by-symbol equalization is performed by means of Volterra decision feedback-type equalizers, driven by a reduced subset of signals selected from the constructive and the destructive ports of the optical detectors. The proposed approach offers a low-complexity alternative for electronic equalization, without sacrificing much of the performance compared to the fully-deployed counterpart. The efficiency of the proposed equalizers is demonstrated by means of computer simulation in a typical optical transmission scenario.
机译:针对对功耗和成本敏感的光网络段而优化的光传输技术包括具有直接检测技术的调制格式。具体而言,已部署的光纤工厂中的不归零差分四元相移键控(NRZ-DQPSK)与高性能,低复杂度的电子均衡器相结合以补偿接收器端的残留损伤,可以证明是一种可行的解决方案高性能,大容量的光链路。与平衡配置相比,在单端DQPSK接收机上对相长信号和相消信号进行联合处理可提供更高的性能,但是,以更高的硬件要求为代价,这一点尤其在高速情况下可能不容忽视光学链接。为克服此瓶颈,本文研究了部分联合构造/破坏性DQPSK均衡的使用。逐个符号的均衡是通过Volterra判决反馈型均衡器执行的,该均衡器由从光学检测器的相长和相消端口中选择的信号减少子集驱动。所提出的方法为电子均衡提供了一种低复杂度的替代方案,与完全部署的同类方案相比,不会牺牲很多性能。在典型的光传输场景中,通过计算机仿真来证明所提出的均衡器的效率。

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