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Time Domain Equalization and Digital Back-Propagation Method-Based Receiver for Fiber Optic Communication Systems

机译:用于光纤通信系统的时域均衡和基于数字背传播方法的接收器

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Fiber optic communication systems (FOCSs) have attained a lot of attention by revolutionizing the telecommunication industry and offering new possibilities with the technical advancements in state-of-the-art high speed digital electronics. Advanced modulation formats make use of the phase, amplitude, and polarization of the optical signals at the same time to provide high spectral efficiency as compared with 1?bit/s/Hz for the intensity modulation direct detection system (IMDD), but are highly prone to transmission impairments. Thus, the effects that add up to the optical fiber impairments such as optical fiber chromatic dispersion (OFCD), polarization model dispersion (PMD), and phase offset and noise (POaN) need to be addressed at the receiver side. The development of components and algorithms to minimize these effects in next generation FOCSs with 100?Gbps data rate and beyond with long-haul transmission is still a challenging issue. In this paper, digital signal processing- (DSP-) assisted dispersion and nonlinear compensation techniques are presented to compensate for physical layer impairments including OFCD, PMD, and POaN. The simulations are performed considering Dual Polarization- (DP-) QPSK modulation format to achieve two-fold data rate to achieve spectral efficiency of 3.28?bits/s/Hz by making use of the polarization diversity and system performance is investigated in terms of bit error rate (BER), constellation diagrams, and quality factor (Q-factor) for different values of optical signal-to-noise ratio (OSNR), launch power (PL), and fiber length.
机译:光纤通信系统(Focss)通过彻底改变电信行业并提供新的可能性高速数字电子产品的技术进步,达到了很多关注。高级调制格式使用相位,幅度和光学信号的偏振,同时提供高频效率,与1?比特/ S / Hz相比强度调制直接检测系统(IMDD),但高度容易发生传动障碍。因此,需要在接收器侧寻址诸如光纤色散(OFCD),偏振模型分散(MPD),偏振模型分散(PMD),偏振模型分散(OFCD)和相位偏移和噪声(POAN)的效果。组件和算法的开发,以最小化下一代Focs中的这些效果,具有100?Gbps数据速率,超越长途传输仍然是一个具有挑战性的问题。本文提出了数字信号处理 - (DSP-)辅助分散和非线性补偿技术,以补偿包括OFCD,PMD和POAN的物理层损伤。考虑到双极化 - (DP-)QPSK调制格式进行模拟,以实现两倍数据速率,以实现3.28的频谱效率,通过利用偏振分集和系统性能,在比特方面进行了研究错误率(BER),星座图和质量因子(Q系数)对于不同的光学信噪比(OSNR),发射功率(PL)和光纤长度。

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