Yu Zhenming, Zhao Yilun, Hu Shaohua, Wan Zhiquan, Shu Liang, Zhang Jing, Xu Kun
Opt Express. 2021 Mar 1;29(5):6657-6667. doi: 10.1364/OE.418456.
We propose a polarization dependent loss (PDL) and chromatic dispersion (CD) insensitive, low-complexity adaptive equalizer (AEQ) for short-reach coherent optical transmission systems. The AEQ contains a 1-tap butterfly finite impulse response (FIR) filter and two N-tap FIR filters. It first performs polarization demultiplexing using the 1-tap filter, of which the coefficients are obtained based on Stokes space. Then it mitigates the inter-symbol interference (ISI) using the two N-tap finite impulse response (FIR) filters and adjust the filter's coefficients by utilizing constant modulus algorithm (CMA). Through theoretical and experimental analysis, we verify that this proposed AEQ can perform robust polarization demultiplexing when PDL and CD exists. Besides, our proposed AEQ has faster convergence speed compared with recently proposed AEQs. In addition, it reduces the number of multipliers and thus reduce the computational complexity of conventional butterfly filter structure AEQ. And this proposed AEQ suffers little bit error ratio loss compared with the conventional AEQ. Due to the low-complexity and robustness to PDL and CD, this proposed AEQ is well-suited for future low-cost short-reach optical communication system.
我们为短距离相干光传输系统提出了一种对偏振相关损耗(PDL)和色散(CD)不敏感的低复杂度自适应均衡器(AEQ)。该AEQ包含一个单抽头蝶形有限脉冲响应(FIR)滤波器和两个N抽头FIR滤波器。它首先使用单抽头滤波器进行偏振解复用,其系数基于斯托克斯空间获得。然后,它使用两个N抽头有限脉冲响应(FIR)滤波器减轻符号间干扰(ISI),并利用恒模算法(CMA)调整滤波器系数。通过理论和实验分析,我们验证了所提出的AEQ在存在PDL和CD时能够进行稳健的偏振解复用。此外,与最近提出的AEQ相比,我们提出的AEQ具有更快的收敛速度。此外,它减少了乘法器的数量,从而降低了传统蝶形滤波器结构AEQ的计算复杂度。与传统AEQ相比,该AEQ的误码率损失很小。由于其低复杂度以及对PDL和CD的鲁棒性,该AEQ非常适合未来低成本的短距离光通信系统。