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1)  Electronic Dispersion Compensation(EDC)
电子色散补偿
1.
As a new technology for fiber dispersion compensation,Electronic Dispersion Compensation(EDC) is gradually being applied in practical projects.
电子色散补偿(EDC)技术作为一种新的光纤色散补偿技术正在逐步进入实用化阶段。
2)  EDC
电色散补偿
1.
We study the performances of several electrical dispersion compensation (EDC) equalizers with the numerical simulation in 10Gb/s optical communication system.
采用数值仿真的方法对几种使用在10Gb/s光通信系统中的电色散补偿(EDC)均衡器的性能进行了研究,包括判决反馈均衡器、线性均衡器、最大似然序列估计器(MLSE)。
2.
In this paper,the structural principle and dispersion-tolerance performance of the optical duobinary encoding technology are introduced and analyzed and the general principle of the Electronic Dispersion Compensation(EDC) technology studied.
文章介绍和分析了光双二进制的构造原理及其色散容差性能,研究了电色散补偿(EDC)技术的一般性原理。
3)  dispersion compensation coefficient
色散补偿因子
1.
On the basis of the transmission system model given in this paper, the impact of the parameters, such as input power, dispersion compensation coefficient, dispersion compensation factor, length of standard single mode fiber and pulse duty cycle on the system performance, which is evaluated by bit error rate and Q value of the system, is studied through extensive numerical simulation.
提出了一种比特率为40 Gb/s的单通道传输系统的设计方案,通过大量的数值仿真研究了在单波长传输系统中放大器间隔、脉冲占空比、色散补偿因子、色散补偿系数、光纤的入纤功率等参数对系统传输性能的影响,并根据这些影响关系设计了一个九段的光纤传输系统,其传输距离为928 km。
4)  Dispersion compensated soliton
色散补偿孤子
5)  Electronic Dispersion Compensation
电域色散补偿
1.
Research of Different Categories of Electronic Dispersion Compensation;
光传输系统中电域色散补偿技术性能研究
2.
Though this method works, but comparing with Electronic Dispersion Compensation, they have many disadvantages such as the less adaptability.
随着IC芯片处理速度的提高,人们对电域色散补偿,简称为EDC(Electronic dispersion compensation)的研究开始升温。
6)  Dispersion compensation
色散补偿
1.
Research on dispersion compensation with chirped fiber grating;
啁啾光纤光栅的色散补偿研究
2.
Chromatic dispersion compensation forhigh-speed communication systems;
高速光通信系统中的色散补偿技术
3.
Study on dispersion compensation with chirped fiber gratings;
利用啁啾光纤光栅进行色散补偿的研究
补充资料:电子-电子双共振
      在垂直静磁场H的方向,施加两个微波电磁场:①较弱的微波电磁场,激发电子从能级2向能级3跃迁,不致于饱和;②强的微波电磁场,激发电子从能级1向能级4跃迁,使达到饱和,从而导致能级4的电子转移至能级3,以观察反映2→3跃迁的电子自旋共振信号强度的变化,故称为电子-电子双共振。它与电子-核双共振不同之处是不涉及核的跃迁,并且观察的与电子自旋共振有关的能级和未观察的跃迁能级之间无共享的公共能级。
  

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