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无光学放大的深储层计算辅助的高速短距通信。

Optical amplification-free deep reservoir computing-assisted high-baudrate short-reach communication.

出版信息

Opt Lett. 2023 Apr 15;48(8):2122-2125. doi: 10.1364/OL.485830.

Abstract

An optical amplification-free deep reservoir computing (RC)-assisted high-baudrate intensity modulation direct detection (IM/DD) system is experimentally demonstrated using a 100G externally modulated laser operated in C-band. We transmit 112 Gbaud 4-level pulse amplitude modulation (PAM4) and 100 Gbaud 6-level PAM (PAM6) signals over a 200-m single-mode fiber (SMF) link without any optical amplification. The decision feedback equalizer (DFE), shallow RC, and deep RC are adopted in the IM/DD system to mitigate impairment and improve transmission performance. Both PAM transmissions over a 200-m SMF with bit error rate (BER) performance below 6.25% overhead hard-decision forward error correction (HD-FEC) threshold are achieved. In addition, the BER of the PAM4 signal is below the KP4-FEC limit after 200-m SMF transmission enabled by the RC schemes. Thanks to the use of a multiple-layer structure, the number of weights in deep RC has been reduced by approximately 50% compared with the shallow RC, whereas the performance is comparable. We believe that the optical amplification-free deep RC-assisted high-baudrate link has a promising application in intra-data center communications.

摘要

实验演示了一种无光学放大的深度储层计算 (RC) 辅助高速率强度调制直接检测 (IM/DD) 系统,该系统使用工作在 C 波段的外部调制激光器。我们在 200m 单模光纤 (SMF) 链路中传输了 112Gbaud 4 电平脉冲幅度调制 (PAM4) 和 100Gbaud 6 电平 PAM (PAM6) 信号,而无需任何光放大。在 IM/DD 系统中采用判决反馈均衡器 (DFE)、浅层 RC 和深层 RC 来减轻损伤并提高传输性能。两种 PAM 传输在 200m SMF 上的误码率 (BER) 性能低于 6.25%开销硬判决前向纠错 (HD-FEC) 阈值。此外,通过 RC 方案,PAM4 信号在经过 200m SMF 传输后,BER 低于 KP4-FEC 限制。得益于使用多层结构,与浅层 RC 相比,深层 RC 中的权重数量减少了约 50%,而性能相当。我们相信,无光学放大的深度 RC 辅助高速率链路在数据中心内部通信中有很好的应用前景。

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