高效率的宽带全数字发射器,带有第四阶达-西格玛调制器,用于移动前程
Optics express
|September 23, 2025
概括
这项研究在FPGA上引入了一个全数字并行发射器,实现了高特-西格玛调制器 (DSM) 位效率和更好的资源使用. 该设计允许高效的光学前程应用,使用先进的调制方案.
科学领域:
- 数字通信系统 数字通信系统
- 集成电路设计 集成电路设计
- 光学网络的建立是因为光学网络.
背景情况:
- 高效率的数字发射器对于可扩展的光学前线运输至关重要.
- 现有的现场可编程网关阵列 (FPGA) 实现面临的挑战是三角信号调制器 (DSM) 位效率和资源利用.
研究的目的:
- 在FPGA上实现的高效率,全数字并行发射器.
- 为了提高DSM比特效率和FPGA资源利用,用于高级调制方案.
主要方法:
- 实施一个第四阶段的DSM与优化噪声传输函数 (NTF) 的零放置.
- 开发一个乘数效率高的并行架构,增加DSM时钟频率.
- 实时生成64/256-/1024-方格振幅调制 (QAM) 信号. 在实时生成64/256-/1024-方格振幅调制 (QAM) 信号.
主要成果:
- 实现了50%的DSM位效率,这是实时演示中报告的最高值.
- 将FPGA资源使用量减少到原始需求的57.8%.
- 经过验证的10公里光学传输使用25G级小形式因子插入式 (SFP28) 模块.
结论:
- 开发的发射器在比特效率和资源利用方面提供了最先进的性能.
- 该设计适用于可扩展和具有成本效益的光学前线运输应用.
- 建筑改进显著提高了发射器的性能和效率.
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