WDM:波分复用
Wavelength-Division Multiplexing,简称WDM,是光纤通信领域中的关键技术,通过将不同波长的光信号合并传输,实现单根光纤中多路信号的并行传送。该技术有效提升了通信容量与传输效率,广泛应用于电信网络、数据中心等场景。在学术研究及工程实践中,“波分复用”已成为光通信系统的核心术语,其缩写形式便于文献撰写与技术交流。
Wavelength-Division Multiplexing具体释义
Wavelength-Division Multiplexing的英文发音
例句
- This session explores the application of high-density service aggregation over dense wavelength-division multiplexing ( DWDM ) as a strategy for business continuance and disaster recovery.
- 本课程将探讨密集波分复用(WDM)(DWDM)的高密度服务聚合应用程序用于业务持续性和灾难恢复的一种策略。
- The experimental results that a single element based on the Talbot self-imaging effect realizing both beam splitting and wavelength-division multiplexing functions are presented.
- 给出一个单一器件同时具有分波器和大规模分束器功能的实验结果,其设计原理基于塔尔博特自成像效应。
- With the appearance and development of Wavelength-Division Multiplexing(WDM) ( WDM ) technology, network bandwidth resources are fully utilized.
- 随着波分复用(WDM)(Wavelength-DivisionMultiplexing,WDM)技术的提出和发展,网络的带宽资源得到了充分的利用。
- It is an effective way to resolve this problem by adopting dense wavelength-division multiplexing ( DWDM ) technology.
- 解决这一问题的密集波分复用(WDM)(DWDM)技术已成为数据传输的高效手段。
- With the development of wavelength-division multiplexing, all-optical regeneration is considered as the most important techniques in all-optical networks.
- 随着波分复用(WDM)技术的发展,全光再生技术成为未来全光网络的核心技术之一。
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