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Relative impact of channel symbol rate on transmission capacity

机译:信道符号率对传输容量的相对影响

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Through C+L band transmission experiments and theoretical modeling, we investigate the impact of channel symbol rate (30, 40, 60, and 85 GBd) on the performance of data center interconnection, metropolitan, and core network distances. Two different transponder architectures are investigated: (a) single-carrier receiver and (b) multi-carrier receiver, where multiple subcarriers are received together in a single wideband receiver. The architectures of both receivers experience a reduction in the achievable information rate as the channel symbol rate increases due to dominating transceiver noise; this holds over all tested transmission distances. However, the multi-carrier receiver shows a weaker performance dependency on symbol rate, as receiver-related impairments dominate. When testing the single-carrier receiver after 630 km, we find that by increasing the channel symbol rate from 40 to 85 GBd, gross capacity decreases by 16%; however, the required number of transceivers to fill the transmission window decreases by 52%. Using the multi-carrier receiver reduces receiver count further. This potentially impacts the cost and complexity of deploying fully loaded transmission systems. (C) 2020 Optical Society of America.
机译:通过C + L频带传输实验和理论模型,我们研究了信道符号率(30、40、60和85 GBd)对数据中心互连性能,城域和核心网络距离的影响。研究了两种不同的应答器体系结构:(a)单载波接收机和(b)多载波接收机,其中在一个宽带接收机中一起接收多个子载波。由于主要的收发信机噪声导致信道符号率增加,两个接收器的体系结构都会降低可达到的信息速率。这适用于所有测试的传输距离。但是,由于与接收机相关的损害占主导地位,因此多载波接收机对符号率的性能依赖性较弱。在630 km之后测试单载波接收机时,我们发现通过将信道符号率从40 GBd增加到85 GBd,总容量减少了16%。但是,填充传输窗口所需的收发器数量减少了52%。使用多载波接收机可以进一步减少接收机数量。这潜在地影响了部署满载传输系统的成本和复杂性。 (C)2020年美国眼镜学会。

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    UCL Dept Elect & Elect Engn Opt Networks Grp Torrington Pl London WC1E 7JE England;

    Xtera Bates House Church Rd Harold Wood Essex England;

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