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Enhanced Channel Equalizers for Adaptive Zero-Guard-Interval CO-OFDM Systems

机译:自适应零保护间隔CO-OFDM系统的增强型信道均衡器

摘要

We propose the design and implementation of frequency domain block least mean square and block recursive least square equalizers for adaptive zero-guard-interval (ZGI) coherent optical (CO) orthogonal frequency division multiplexing (OFDM) systems. We experimentally demonstrate the improvements in fiber nonlinear tolerance and channel estimation accuracy over conventional training symbol (TS)-based equalizers and data aided zero-forcing (ZF) equalizers, in single channel 112-Gb/s quadrature phase shift keying (QPSK), and 250-Gb/s 16 quadrature amplitude modulation (QAM) ZGI CO-OFDM systems. The transmission distance is increased by 20% and 7% for QPSK, and 53% and 35% for 16-QAM systems, compared with the TS-based and decision aided ZF adaptive equalizers, respectively. In addition, simulation results demonstrate the improved temporal tracking ability of the proposed algorithms over the previous ZF equalizer.
机译:我们提出了针对自适应零保护间隔(ZGI)相干光(CO)正交频分复用(OFDM)系统的频域块最小均方和块递归最小二乘均衡器的设计和实现。我们通过实验证明,在单通道112 Gb / s正交相移键控(QPSK)中,与传统的基于训练符号(TS)的均衡器和数据辅助零强制(ZF)均衡器相比,光纤非线性容限和信道估计精度有所提高, 250 Gb / s和16正交幅度调制(QAM)ZGI CO-OFDM系统。与基于TS和基于决策辅助的ZF自适应均衡器相比,QPSK的传输距离分别增加了20%和7%,16-QAM系统的传输距离分别增加了53%和35%。此外,仿真结果证明了所提出算法在以前的ZF均衡器之上的改进的时间跟踪能力。

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