Tian Yue, Huang Yue-Kai, Zhang Shaoliang, Prucnal Paul R, Wang Ting
NEC Laboratories America, Inc., Princeton, NJ 08540, USA.
Opt Express. 2013 Feb 25;21(4):5099-106. doi: 10.1364/OE.21.005099.
We demonstrate a hybrid optical/digital phase-sensitive boosting (PSB) technique for long-haul wavelength division multiplexing (WDM) transmission systems. The approach uses four-wave mixing (FWM) to generate a phase-conjugated idler alongside the original signal. At the receiver, the signal and idler are jointly detected, and the phases of the idler symbols are conjugated and summed with the signal symbols to suppress noise and nonlinear phase distortion. The proposed hybrid PSB scheme is independent of modulation format and does not require an optical phase-locked loop to achieve phase matching required by conventional phase-sensitive amplifiers. Our simulation and experimental results of 112-Gb/s dual-polarization quadrature phase-shift-keying (DP-QPSK) transmission confirmed the principle of the PSB scheme, attaining a Q-factor improvement of 2.4 dB over conventional single-channel transmission after 4,800 km of dispersion-managed fiber (DMF) link at the expense of 50% reduction in spectral efficiency and extending the system reach by 60% to 7,680 km.
我们展示了一种用于长距离波分复用(WDM)传输系统的混合光学/数字相敏增强(PSB)技术。该方法利用四波混频(FWM)在原始信号旁边生成一个相位共轭闲频。在接收器处,信号和闲频被联合检测,并且闲频符号的相位被共轭并与信号符号相加,以抑制噪声和非线性相位失真。所提出的混合PSB方案与调制格式无关,并且不需要光学锁相环来实现传统相敏放大器所需的相位匹配。我们对112-Gb/s双偏振正交相移键控(DP-QPSK)传输的仿真和实验结果证实了PSB方案的原理,在经过4800公里的色散管理光纤(DMF)链路后,与传统单通道传输相比,Q因子提高了2.4 dB,代价是光谱效率降低了50%,并且将系统传输距离延长了60%,达到7680公里。