论文标题
优化400G数据中心互连的离散多色调传输
Optimizing Discrete Multi-tone Transmission for 400G Data Center Interconnects
论文作者
论文摘要
离散多色调传输(DMT)是未来400G数据中心互连的有前途的候选人。八个通道,每个携带56 GB/s的数据都可以在50 GHz通道网格中组合,以形成400 GB/s的超级通道。对于满载的96通道DWDM系统,这将导致总容量为4.8 TB/s。为了满足目标应用的要求,就成本效率和低功耗而言,保持数字信号处理的复杂性尽可能低。对于DMT,复杂性主要取决于快速傅立叶变换(FFT)的长度。由于数据中心互连只需要桥接一个通常80 km的距离,因此我们在这里调查了其他参数之间的fft长度的影响,而其他参数对56 GB/s DMT的可实现性能仅在此距离中。在C波段中进行传输以启用DWDM,并且不应用光学色散补偿。我们考虑双边带(DSB)以及残留侧带(VSB)DMT。可以看出,FFT的长度为128足以以位误差比以达到所需的性能,但是,更高的长度可以显着提高性能。
Discrete multi-tone transmission (DMT) is a promising candidate for future 400G data center interconnects. Eight channels, each carrying 56 Gb/s of data can be combined in a 50-GHz channel grid to form a 400 Gb/s superchannel. For a fully loaded 96 channel DWDM system this leads to a total capacity of 4.8 Tb/s. To meet the requirements of the targeted application in terms of cost efficiency and low power consumption, it is important to keep the complexity for the digital signal processing as low as possible. For DMT, the complexity is mainly determined by the length of the fast Fourier transformation (FFT). Since data center interconnects only have to bridge a distance of typically 80 km, we here investigate among other parameters the influence of the FFT length among other parameters on the achievable performance for 56 Gb/s DMT only for this distance. Transmission is performed in C-band to enable DWDM and no optical dispersion compensation is applied. We consider double sideband (DSB) as well as vestigial sideband (VSB) DMT. It can be seen that an FFT length of 128 is sufficient to reach the required performance in terms of bit error ratio, however, a higher length can significantly improve the performance.