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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Demonstration of C-band 112G PAM-4 transmission over 80-km stand-single mode fiber based on direct-detection
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Demonstration of C-band 112G PAM-4 transmission over 80-km stand-single mode fiber based on direct-detection

机译:基于直接检测的C波段112G PAM-4传输的C波段展示

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摘要

In this paper, we experimentally demonstrate the intensity modulation and direct-detection (IM/DD) 112-Gb/s single carrier pulse amplitude modulation (PAM)-4 transmission system over 80-km standard signal-mode fiber (SSMF) without any optical chromatic dispersion (CD) compensation at the 3.8x10(-3) BER threshold for 7% the hard-decision forward error correction (HD-FEC). The training based pre-equalization (pre-EQ) and the nonlinear look-up-table (LUT) based pre-distortion (pre-DT) in the transmitter (Tx)-side are employed to reduce the computation complexity and deal with the modulation bandwidth and the nonlinearity impairments of electro-optical modulators and detectors. On the other hand, the system without optical CD compensation modules is obviously more simple and flexible. Therefore, the nonlinear LUT pre-DT simultaneously used for CD compensation will further simplify the system. The BER is about 20% without any digital signal processing (DSP) such as equalization, pre-distortion, pre-equalization or compensation. After signal recovery, the BERs of BTB and 80-km SSMF system can achieve 3.07x10(-5 )and 1.50x10(-3) respectively. The principle of the LUT based pre-DT and the pre-EQ are introduced in the paper.
机译:在本文中,我们在实验上展示了80公里标准信号模式光纤(SSMF)上的强度调制和直接检测(IM / DD)112-GB / S单载波脉冲幅度调制(PAM)-4传输系统,没有任何3.8x10(-3)BER阈值的光学色散(CD)补偿7%的硬决策前进纠错(HD-FEC)。基于训练的预均衡(PRE-EQ)和基于非线性查找表(LUT)的发射器(TX) - 侧的预失真(PRE-DT)用于降低计算复杂性并处理调制带宽和电光调制器和探测器的非线性损伤。另一方面,没有光学CD补偿模块的系统显然更简单且灵活。因此,同时用于CD补偿的非线性LUT预DT将进一步简化系统。 BER约为20%,没有任何数字信号处理(DSP),例如均衡,失真,预均衡或补偿。信号恢复后,BTB的BERS和80 km SSMF系统可分别实现3.07×10(-5)和1.50x10(-3)。纸张中介绍了基于LUT基于DT和前EQ的原理。

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