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具有下行自零差检测和上行32QAM-FBMC的超高容量波分复用-空分复用光接入网。

Ultra-high capacity WDM-SDM optical access network with self-homodyne detection downstream and 32QAM-FBMC upstream.

作者信息

Feng Zhenhua, Xu Liang, Wu Qiong, Tang Ming, Fu Songnian, Tong Weijun, Shum Perry Ping, Liu Deming

出版信息

Opt Express. 2017 Mar 20;25(6):5951-5961. doi: 10.1364/OE.25.005951.

Abstract

Towards 100G beyond large-capacity optical access networks, wavelength division multiplexing (WDM) techniques incorporating with space division multiplexing (SDM) and affordable spectrally efficient advanced modulation formats are indispensable. In this paper, we proposed and experimentally demonstrated a cost-efficient multicore fiber (MCF) based hybrid WDM-SDM optical access network with self-homodyne coherent detection (SHCD) based downstream (DS) and direct detection optical filter bank multi carrier (DDO-FBMC) based upstream (US). In the DS experiments, the inner core of the 7-core fiber is used as a dedicated channel to deliver the local oscillator (LO) lights while the other 6 outer cores are used to transmit 4 channels of wavelength multiplexed 200-Gb/s PDM-16QAM-OFDM signals. For US transmission, 4 wavelengths with channel spacing of 100 GHz are intensity modulated with 30 Gb/s 32-QAM-FBMC and directly detected by a ~7 GHz bandwidth receiver after transmission along one of the outer core. The results show that a 4 × 6 × 200-Gb/s DS transmission can be realized over 37 km 7-core fiber without carrier frequency offset (CFO) and phase noise (PN) compensation even using 10 MHz linewidth DFB lasers. The SHCD based on MCF provides a compromise and cost efficient scheme between conventional intradyne coherent detection and intensity modulation and direct detection (IM/DD) schemes. Both US and DS have acceptable BER performance and high spectral efficiency.

摘要

对于超大容量光接入网络迈向100G的发展,结合空分复用(SDM)和经济实惠的频谱高效先进调制格式的波分复用(WDM)技术必不可少。在本文中,我们提出并通过实验证明了一种基于低成本多芯光纤(MCF)的混合WDM-SDM光接入网络,其下行链路(DS)采用自零差相干检测(SHCD),上行链路(US)采用直接检测光滤波器组多载波(DDO-FBMC)。在DS实验中,7芯光纤的内芯用作专用通道来传输本地振荡器(LO)光,而其他6个外芯用于传输4通道波长复用的200 Gb/s偏振复用16QAM-OFDM信号。对于US传输,4个通道间隔为100 GHz的波长采用30 Gb/s 32-QAM-FBMC进行强度调制,并在沿其中一个外芯传输后由一个带宽约为7 GHz的接收器直接检测。结果表明,即使使用线宽为10 MHz的分布反馈(DFB)激光器,也可以在37 km的7芯光纤上实现4×6×200 Gb/s的DS传输,而无需载波频率偏移(CFO)和相位噪声(PN)补偿。基于MCF的SHCD在传统的零中频相干检测与强度调制和直接检测(IM/DD)方案之间提供了一种折衷且经济高效的方案。US和DS都具有可接受的误码率性能和高光谱效率。

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