当前位置:
首页
资源下载

搜索资源 - wavelength division
搜索资源列表
-
0下载:
本程序计算AWG波分复用器中平板波导连接接口在耦合到下级光纤时,不同光纤宽度下衍射损耗的分析-The program to calculate the slab waveguide AWG Wavelength Division Multiplexer connection interface coupled to the lower optical fiber, optical fiber widths of different diffraction analysis of wear and
-
-
0下载:
本程序计算AWG波分复用器中平板波导连接接口在耦合到下级光纤时,不同光纤宽度下衍射效率的分析-The program to calculate the slab waveguide AWG Wavelength Division Multiplexer connection interface coupled to the lower optical fiber, optical fiber widths of different diffraction efficiency of the an
-
-
0下载:
针对波分复用(WDM) 网络中单链路出错的生存性流量疏导问题,文章提出了一种基于光路的动态恢复机制(DRAL) 。
DRAL 不预留任何资源,当链路出错时,通过在网络中动态地发现资源来对错误链路进行恢复,将一个出错的光路转发到一条新建立的光路或其他可用的光路上-For wavelength division multiplexing (WDM) network, the existence of a single-link error problem of traffic grooming,
-
-
0下载:
基于液体选择填充光子晶体光纤的波分解复用器研究.-Based on the fluid filled photonic crystal fiber wavelength division multiplexing research.
-
-
0下载:
经过二十余年的快速发展, 空间激光通信的研究重心逐渐从高精度ATP分系统向高速
率通信分系统转移 紧密跟踪空间激光通信的国际发展最新动态,从通信带宽和链路功率两个方面,
针对通信发射单元、接收单元和信道特性,分析了提高空间激光通信传输速率的技术难度与途径.分
别阐述了波长1 550 nm、基于EDFA 功放和前放技术,空间相干技术,光偏振复用技术.光波分复用
技术的基本原理、性能指标及关键技术,为高速率空间激光通信提供了技术参考-After more than 20 years
-
-
0下载:
Design and Implementation of a Network Based on Wavelength Division Multiplexing WDM
-
-
0下载:
摘要
波分复用(WDM)是将两种或多种不同波长的光载波信号(携带各种信息)在发送端经复用器(亦称合波器,Multiplexer)汇合在一起,并耦合到光线路的同一根光纤中进行传输的技术;在接收端,经解复用器(亦称分波器或称去复用器,Demultiplexer)将各种波长的光载波分离,然后由光接收机作进一步处理以恢复原信号。-Abstract
Wavelength division multiplexing (WDM) is to two or more different waveleng
-
-
0下载:
我们设计和实验证明
布拉格光栅波分复用器
三波长的平面光波电路复用
公交车站台。1310和1550 nm的光,被设计成
由一个半周期通过定向耦合器分离后
和一个完整的周期耦合作用与0.07和0.19分贝的损失,
分别。1492 nm的光反射回来的布拉格
光栅对定向耦合器及其制作少损失
超过2分贝。我们也介绍和讨论新概念
-
-
0下载:
Multi-wavelength Optical Code-Division-Multiple-Acce-Multi-wavelength Optical Code-Division-Multiple-Access
-
-
0下载:
The passive optical network (PON) is an optical fiber based network architecture,which can provide much higher bandwidth in the access network compared to traditional copper-based networks. Incorporating wavelength-division multiplexing (WDM) in a PO
-
-
0下载:
Optical Burst Switching (OBS) network is seen as a promising solution as it directly transports Internet-Protocol over Wavelength Division Multiplexing (IP over WDM) networks. OBS network uses a one-way resource reservation mechanism to set up the re
-
-
0下载:
使用KEIL MDK开发的STM32程序;
实现OEO的功能;
实现10G以上的交叉功能;
用于波分复用、SDH等光传输领域-STM32 use KEIL MDK development program
Achieve OEO functionality
10G or more to achieve cross-functional
For wavelength division multiplexing optical transmission, SDH, etc
-
-
0下载:
The project describes the wavelength Division Multiplexing using EDFA amplifer. The tools used for this project are optisystem and matlab.
-
-
1下载:
optisystem 波分复用例子,已经验证过,非常好用!-Optisystem wavelength division multiplexing example, has been verified, very good use!
-
-
0下载:
basic concept of OFDM is quite simple [4]–[7]. Data is transmitted in parallel on a number of different frequencies, and
as a result the symbol period is much longer than for a serial
system with the same total data rate. Because the symbol perio
-
-
0下载:
The all-optical wavelength conversion gives flexibilities to the optical fiber communication
networks, especially to the wavelength-division-multiplexed (WDM)-based ones, because it allows
them to reuse wavelengths and to avoid wavelength channel
-
-
0下载:
Design & Simulation of Integrated Semiconductor Optical Amplifier-
Modulator and its use in Wavelength Division Multiplexing Passive
Optical Access Networks
-
-
0下载:
Experimental verification of performance improvement for a gigabit wavelength division multiplexing VLC system utilizing ACO-OFDM
-
-
0下载:
New optical access technologies allow network operators to cope with larger client count and longer access distances,
as well as to deliver larger bandwidth. This paper focuses on next generation optical access network architectures using
Wavelen
-
-
0下载:
Fiber Non-Linearity Effect, Wavelength Division Multiplexing, Self-Phase Modulation, Cross-Phase Modulation, Four Wave Mixing, Jitter, Bit Error Rate (BER), Eye diagram, Dispersion, Q-value, Optical Analysis Tool (OPTSIM).
-