概括
本研究介绍了一种高效的上游方案和序言设计,用于连贯的时间和频率分割多重化被动光学网络 (TFDM PONs). 这项创新加速了数字信号处理的融合,在未来的光网络中实现了更高的带宽和更低的延迟.
科学领域:
- 光学通信网络是指光学通信网络.
- 电信工程 电信工程 电信工程
- 信号处理 信号处理
背景情况:
- 连贯的技术对于未来需要更高带宽的被动光学网络 (PON) 至关重要.
- 时间和频率分割多重复合 (TFDM) PON 提供灵活的带宽和低延迟,但面临上游爆发模式检测挑战.
研究的目的:
- 提出一个高效的上游系统方案和一个连贯的TFDM PON的序言设计.
- 以最少的序言长度加速数字信号处理 (DSP) 的融合.
主要方法:
- 一种使用单极化,残余载波调制和专用频谱分配的方案.
- 一个集成的序言设计用于同步,频率偏移估计 (FOE),偏振补偿和频道估计.
主要成果:
- 在20公里标准单模光纤 (SSMF) 上进行200Gb/sTFDM上游传输的实验验证.
- 在1×10-2的BER值下,通过使用20.48ns的序言和256个训练符号 (TS) 实现了大约-27dBm的接收器灵敏度.
结论:
- 拟议的方案和序言设计有效地解决了在连贯的TFDM PON中上游爆发模式检测的挑战.
- 集成的序言大大缩短了长度,使得DSP的融合速度更快,并提高了系统性能.
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