概括
这项研究展示了一种新的离散频谱调制非线性频率分割复杂化 (DS-NFDM) 系统,使用多个自身值和16振幅相位转移键 (16-APSK). 该系统实现了创纪录的多重化固有值和数据速率,以实现增强的光通信.
科学领域:
- 光学通信是指光学通信.
- 光子学是指光子学的使用方法.
- 信号处理 信号处理
背景情况:
- 非线性频率分割复杂化 (NFDM) 提供高光谱效率.
- 离散频谱调制 (DSM) 提高了NFDM的性能.
- 多个自身值的复杂化是增加数据容量的有希望的技术.
研究的目的:
- 实验证明一个基于多个自身值的多重复合的DS-NFDM系统.
- 在这个系统中调查更高阶调制格式的性能.
- 为了实现创纪录的多重化固有值和数据速率.
主要方法:
- 设计固有值集合系数和16振幅相位移键 (16-APSK) 星座点.
- 实现14-,30-和46个自身值的多重化DS-NFDM信号.
- 在非零分散转移光纤 (NZDSF) 上测试信号传输.
主要成果:
- 成功实现了多达46个固有值的DS-NFDM信号.
- 46个自身值的信号传输50公里,30个自身值的信号传输400公里.
- 在2.4E-2.0的软决策前置错误校正 (SD-FEC) 门下实现传输.
结论:
- 使用16-APSK的多自值复杂化DS-NFDM系统经过实验验证.
- 这项工作为这种系统中的多重自值数和数据速率创造了新的记录.
- 结果强调了这项技术在未来高容量光学网络中的潜力.
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