OXADM:网络安全和迁移的可行性

M. Ab-Rahman, W. Ibrahim, M. Bukhori, S. Shaari
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摘要

本文介绍了我们最近通过开发光交叉加丢复用器(OXADM)在先进环形城域网方面的工作。OXADM是一种新发明的非对称结构光网络设备。设计的目的是结合光交叉连接(OXC)和光加丢复用器(OADM)的操作概念,OXADM在提高光网络的效率和灵活性,特别是城域网环和网格配置方面具有潜在的用途。因此,OXADM特别适用于需要从环形到网状拓扑迁移的网络,反之亦然[4]。OXADM的主要功能是在实现添加/删除功能的同时重新配置光通道路径。4通道OXADM设计预计每个通道的最大运行损耗为6 dB[5]。通过累积功能,OXADM还能够通过对集成在单个光学结构中的两种配置的线性、多路和环形保护来恢复故障,从而提供生存能力。相对于正常工作条件,环激活期间的输出功率衰减预计为2db。测试在2.5 Gbps下进行,线性保护的误码率为1倍10-10,环保护的误码率为1倍10-19(向西),误码率为1倍10-13(向东)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
OXADM: Feasibility of network security and migration
This paper describes our recent work on advanced ring metropolitan network through the development of an Optical Cross Add-Drop Multiplexer (OXADM). OXADM is a recently invented optical networks device with an asymmetrical architecture. Designed with a purpose to combine the operational concepts of Optical Cross Connect (OXC) and Optical Add-Drop Multiplexer (OADM), OXADM is potentially useful in increasing the efficiency and flexibility of optical networks particularly of the metropolitan ring and mesh configurations. Thus, OXADM is particularly use for networks which require topology migration from ring to mesh, or vice versa [4]. The main function of OXADM is to reconfigure the optical channel path while implementing add/drop function simultaneously. The 4-channel OXADM design is expected to have a maximum operational loss of 6 dB for each channel [5]. With the accumulation function, OXADM is also able to provide survivability through restoration against failures by means of linear, multiplex and ring protection to both configurations that are integrated in single optical architecture. Output power degradation during ring activation is expected to be at 2 dB with respect to normal operating condition. The test was carried out at 2.5 Gbps with BER of 1times10-10 for linear protection, while BER of 1times10-19 (to west) and BER of 1times10-13 (to east) were used for ring protection.
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