1) optical communication
光定通信
2) optical fiber communication
光纤通信
1.
The research on mine communications' application strategy based on optical fiber communications;
基于光纤通信的矿井通信应用策略研究
2.
Introduction on "Acceptance specification for electric power optical fiber communication engineering" about engineering file management;
《电力光纤通信工程验收规范》解读——工程文件验收
3.
Discussion on Fujian electric power optical fiber communication network;
福建电力光纤通信网综述
3) optical communication
光通信
1.
Discussion on ultra-long span optical communication engineering construction;
超长站距光通信工程建设问题探讨
2.
Influence on optical fiber differential protection devices from operation and maintenance of optical communication equipment;
光通信设备的运维对光纤差动保护装置的影响
3.
Discussion on the optical communication program in Fujian Power Company during the 11th Five-Year Plan period;
“十一五”期间福建电力光通信规划方案探讨
4) optical cable communication
光缆通信
1.
A kind of new installation equipment, fitting product of pre-stranded wire, is used in electric power and optical cable communication industries extensively, which has the short history in production, sales and uses in China, but the demand of market is increasing continuously and the market prospect is wide, a lot of enterprises has been already attracted to enter this field.
一种广泛用于电力行业和光缆通信行业的新型安装设备——预绞丝金具产品在我国生产、销售和使用的历史虽然不长,但市场的需求却在不断增加,市场前景广阔,已吸引了许多企业进入该行业。
5) optical communications
光通信
1.
Optical fiber technologies: development and applications in optical communications;
光纤技术的发展及其在光通信中的应用
2.
Progress of VCSEL for optical communications;
光通信用垂直腔面发射激光器的进展
3.
Scanning acquisition process of optical communications
星间光通信扫瞄捕获过程分析
6) laser communication
激光通信
1.
Analysis of the turbulent channels for near-space free-space laser communications;
临近空间激光通信信道特性及系统分析
2.
Technology on antenna acquisition for laser communication system between two ground stations;
定点激光通信系统天线捕获技术
3.
Initial alignment of antenna for laser communication system between aircraft and ground station;
飞机-地面间激光通信天线的初始对准
补充资料:光纤通信
光纤通信 optical fibre cable communication 通过光学纤维传输信息的现代通信的主体传输技术。在发信端,信息被转换和处理成便于传输的电信号,电信号控制光源,使它发出满足传输要求的光信号,从而实现信号的电-光转换。发信端发出的光信号通过光纤传输到远方的收信端,经光电二极管转换成电信号,从而实现信号的光-电转换。电信号再经过处理和转换而恢复为与原发信端相同的信息。它的最大特点是具有极宽的通过频带,可以同时容纳数十万路电话信号或数百路电视信号,传输能力比数字微波通信高几个数量级。光纤通信的其他优点还包括:特别适合于传输数字信息,不受电磁干扰(包括核爆炸产生的核辐射干扰)的影响,光纤的材料来源丰富,价格低廉,可以节省大量的金属材料,等等。随着社会信息化进程的不断深化,通信可视化的要求不断高涨,包含彩色电视和高清晰度电视在内的宽带多媒体通信日益成为必不可少的业务。在这种需求的牵引下,光纤通信将不可避免地成为国家通信网的骨干传输体系;它们与宽带综合交换系统一起,将成为宽带综合业务数字网的基本结构。
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