1.北京邮电大学,北京 100876
2.复旦大学信息科学与工程学院,上海 200433
3.南京信息工程大学,江苏南京 210044
4.长飞光纤光缆股份有限公司,湖北武汉 430073
5.中兴通讯,北京 100971
6.中山大学,广东广州 510275
7.华中科技大学,湖北武汉 430074
8.广东工业大学,广东广州 510006
[ "刘博 男,1987年出生,内蒙古人.现任南京信息工程大学副校长,物理与光电工程学院院长,二级教授、博士生导师.主要研究方向为光通信与光网络.以第一/通信作者发表SCI论文70余篇.授权国家发明专利100项(第一发明人60项).国家重点研发计划“P比特级光传输系统”项目首席科学家.获杰青、优青、青年长江、江苏双创团队领军人才项目支持.获国家科技进步二等奖、江苏省科学技术一等奖、中国电子学会技术发明一等奖等.中国电子学会会员编号:E190029722S. E-mail: dabaotoo@qq.com" ]
[ "余建军 男,1968年出生,湖南人.复旦大学教授,教育部“长江学者”,国家杰出青年,美国光学学会会士(OSA Fellow),IEEE国际电子技术与信息科学工程师的学会会士(IEEE Fellow).主要研究方向为高速光纤通信技术、毫米波通信和太赫兹通信技术等.在光纤通信领域顶级的国际期刊和顶级国际学术会议上发表论文600余篇.申请国际专利100余项(其中80余项已被批准),申请国家专利30余项(其中10余项已经授权).先后担任多个国际杂志的编辑,承担多项国家重点课题.曾获得中国光学工程学会科技进步奖一等奖和中国技术市场协会金桥奖个人一等奖.中国电子学会会员编号:E190072220M. E-mail: jianjun@fuan.edu.cn" ]
收稿:2022-12-15,
修回:2023-04-06,
纸质出版:2024-05-25
移动端阅览
刘博,王晨,谭宇璇,等. 基于时频域联合数据辅助MIMO均衡算法的多维度复用千公里级相干传输系统[J]. 电子学报,2024,52(05):1553-1561.
LIU Bo, WANG Chen, TAN Yu-xuan, et al. Multidimensional Multiplexed Coherent Transmission System Based on Joint Time-Frequency Domain Data-Assisted MIMO Equalization[J]. Acta Electronica Sinica, 2024, 52(05): 1553-1561.
刘博,王晨,谭宇璇,等. 基于时频域联合数据辅助MIMO均衡算法的多维度复用千公里级相干传输系统[J]. 电子学报,2024,52(05):1553-1561. DOI:10.12263/DZXB.20221393
LIU Bo, WANG Chen, TAN Yu-xuan, et al. Multidimensional Multiplexed Coherent Transmission System Based on Joint Time-Frequency Domain Data-Assisted MIMO Equalization[J]. Acta Electronica Sinica, 2024, 52(05): 1553-1561. DOI:10.12263/DZXB.20221393
基于少模光纤的模式复用系统利用单根纤芯中的正交模式实现各独立信道的并行传输,能够有效提升系统容量,解决单模光纤系统的容量危机.本文联合使用模式复用、波分复用与偏振复用技术,基于六模渐变型光纤实现了80个波长通道下32 Gbaud四模双偏振16阶正交振幅调制信号的1 000 km相干传输,并在接收端使用时频域联合数据辅助8×8多输入多输出最小均方算法,以补偿由光纤传输导致的模式耦合及模间色散等线性损伤.与传统的纯时域或纯频域多输入输出最小均方均衡算法相比,该算法分别实现了57.1%的收敛速度提升与25.1%的收敛误差下降.经过1 000 km少模光纤传输后,80通道每个模式及偏振态的误码率均低于开销为20%的软判决前向纠错编码阈值
<math id="M1"><mn mathvariant="normal">2.4</mn><mo>×</mo><msup><mrow><mn mathvariant="normal">10</mn></mrow><mrow><mo>-</mo><mn mathvariant="normal">2</mn></mrow></msup></math>
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2.53999996
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11.85333347
,系统净速率达68.2 Tbit/s.
The mode division multiplexing (MDM) system based on the few mode fiber (FMF) can realize the parallel transmission of different independent channels by using the orthogonal modes in a single fiber core
which can effectively improve the system capacity and solve the “capacity crunch” of the single mode fiber (SMF) system. In this paper
we realize the transmission of the 32 Gbaud four-mode dual-polarization 16-ary quadrature amplitude modulation (16QAM) signals in 80 wavelength channels over 1000 km six-mode graded-index fiber by using jointly the MDM
wavelength division multiplexing (WDM) and polarization division multiplexing (
PDM) techniques. In addition
we use the hybrid time-frequency domain data-assisted 8×8 multiple-input multiple-output (MIMO) least mean square (LMS) equalization at the receiver to compensate for the linear damages such as the mode coupling (MC) and differential mode group delay (DMGD) caused by the fiber transmission. Compared with the commonly used time-domain or frequency-domain MIMO-LMS equalization
the joint use of time and frequency domain can realize 57.1% improvement in convergence speed and 25.1% reduction in convergence error. After 1 000 km delivery of FMF
the bit error ratio (BER) of each mode and polarization state of all the 80 channels is lower than the 20% soft-decision forward error correction (SD-FEC) threshold of 2.4×10
-2
and the net transmission rate is up to 68.2 Tbit/s.
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