21.77 Tbps WDM-SDM-PDM Self-Homodyne Coherent Optical Transmission Based on Probabilistic Amplitude Shaping With Cascaded Staircase and Hamming Codes

IF 8.3 2区 计算机科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Communications Pub Date : 2025-01-13 DOI:10.1109/TCOMM.2025.3529251
Yutian Li;Feng Tian;Xiangjun Xin;Tianze Wu;Jianwei Zhou;Qi Zhang;Ze Dong
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Abstract

This paper proposes a probabilistic amplitude shaping (PAS) scheme with systematic cascaded staircase and Hamming codes (CSHC). The integration of low-complexity concatenated codes within PAS and the use of the SIHO decoder are enabled by applying the inter-bit independence assumption. This ensures compatibility with high throughput transmission. In addition, the use of a reduced test pattern set in the SIHO decoder reduces the test pattern cardinality by 34.37%. The proposed scheme is experimentally demonstrated by self-homodyne coherent transmission over a 22.5 km 7-core fiber, with 21 wavelength division multiplexing (WDM) channels in the C-band is demonstrated. The total rate of the WDM-space division multiplexing (SDM) system is 21.77 Tbit/s. The experimental results show that the proposed PAS scheme with CSHC provides a gain of more than 8 dB in the back-to-back (BtB) scenario at the pre-FEC BER of 2.88E-2. Moreover, an average gain of 7.26 dB is achieved at the same threshold in WDM-SDM transmission.
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基于级联阶梯和汉明码概率振幅整形的 21.77 Tbps 波分复用-波分复用-波分复用自同调相干光传输
本文提出了一种基于系统级联阶梯和汉明码的概率幅度成形(PAS)方案。通过应用位间独立性假设,可以在PAS中集成低复杂度的连接代码并使用SIHO解码器。这确保了高吞吐量传输的兼容性。此外,在SIHO解码器中使用简化的测试模式集将测试模式基数减少了34.37%。通过实验验证了该方案在22.5 km的7芯光纤中具有21个波分复用(WDM)通道的自差相干传输。wdm -空分复用(SDM)系统的总速率为21.77 tbps。实验结果表明,在前fec码差为2.88E-2的背对背(BtB)场景下,所提出的带CSHC的PAS方案提供了超过8 dB的增益。在相同阈值下,WDM-SDM传输的平均增益为7.26 dB。
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来源期刊
IEEE Transactions on Communications
IEEE Transactions on Communications 工程技术-电信学
CiteScore
16.10
自引率
8.40%
发文量
528
审稿时长
4.1 months
期刊介绍: The IEEE Transactions on Communications is dedicated to publishing high-quality manuscripts that showcase advancements in the state-of-the-art of telecommunications. Our scope encompasses all aspects of telecommunications, including telephone, telegraphy, facsimile, and television, facilitated by electromagnetic propagation methods such as radio, wire, aerial, underground, coaxial, and submarine cables, as well as waveguides, communication satellites, and lasers. We cover telecommunications in various settings, including marine, aeronautical, space, and fixed station services, addressing topics such as repeaters, radio relaying, signal storage, regeneration, error detection and correction, multiplexing, carrier techniques, communication switching systems, data communications, and communication theory. Join us in advancing the field of telecommunications through groundbreaking research and innovation.
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