This dissertation focuses on investigations of key technologies and issues in ultrahigh-speed photonics networks, included ultra-short-pulse generation technology, all optical wavelength conversion, ultra-fast multiplexing/demultiplexing systems and all optical switching network structures.
本论文针对超高速全光网络中的关键技术以及影响网络性能的关键问题进行了研究,研究内容包括超短光脉冲产生、全光波长变换、超高速全光OTDM系统复用/解复用,以及光交换网络结构等。
参考来源 - 超高速光通信系统关键技术研究及其系统实现·2,447,543篇论文数据,部分数据来源于NoteExpress
The advanced laser techniques for microscope are based on the femtosecond pulse generation mechanism.
介绍基于飞秒脉冲产生机理用于多光子显微镜的先进激光技术。
The pulse generation unit is divided into a prepulse generation unit and a post pulse generation unit.
所述脉冲产生单元分为前、后 脉冲产生单元;
Traditional SCR power-regulator are fully substituted by solid-state relay and pulse generation software.
采用固体继电器和脉冲形成软件代替传统的SCR调功器。
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