OTN学习笔记0514讲解.doc
- 【下载声明】
1. 本站全部试题类文档,若标题没写含答案,则无答案;标题注明含答案的文档,主观题也可能无答案。请谨慎下单,一旦售出,不予退换。
2. 本站全部PPT文档均不含视频和音频,PPT中出现的音频或视频标识(或文字)仅表示流程,实际无音频或视频文件。请谨慎下单,一旦售出,不予退换。
3. 本页资料《OTN学习笔记0514讲解.doc》由用户(2023DOC)主动上传,其收益全归该用户。163文库仅提供信息存储空间,仅对该用户上传内容的表现方式做保护处理,对上传内容本身不做任何修改或编辑。 若此文所含内容侵犯了您的版权或隐私,请立即通知163文库(点击联系客服),我们立即给予删除!
4. 请根据预览情况,自愿下载本文。本站不保证下载资源的准确性、安全性和完整性, 同时也不承担用户因使用这些下载资源对自己和他人造成任何形式的伤害或损失。
5. 本站所有资源如无特殊说明,都需要本地电脑安装OFFICE2007及以上版本和PDF阅读器,压缩文件请下载最新的WinRAR软件解压。
- 配套讲稿:
如PPT文件的首页显示word图标,表示该PPT已包含配套word讲稿。双击word图标可打开word文档。
- 特殊限制:
部分文档作品中含有的国旗、国徽等图片,仅作为作品整体效果示例展示,禁止商用。设计者仅对作品中独创性部分享有著作权。
- 关 键 词:
- OTN 学习 笔记 0514 讲解
- 资源描述:
-
1、OTN学习笔记OTN基本原理OTN产生背景原有WDM技术仅在物理层面上统一标准,即针对WDM系统中传送信号的波段、频率间隔等做出了规定,对信号的帧结构没有制定统一的标准。使得WDM在传递如STM64、10GbE等信号时产生了性能监测、帧结构、开销管理等难题。OTN特点OTN是以波分复用技术为基础,通过G.872、G.709、G.798等一系列ITU-T的建议所规范的新一代“数字传送体系”和“光传送体系”。OTN解决传统WDM网络无波长/子波长业务调度能力、组网能力弱、保护能力弱等问题。在OTN网络的边缘层,业务信号被封装进入统一的、开销丰富的OTN体制中的帧结构中去,实现基于OTN体制的WDM
2、全网统一运营、管理、维护。OTN在电域为OTH,在光域为ROADM。OTN在光域内可以实现业务信号的传递、复用、路由选择、监控,并保证其性能要求和生存性。OTN可以支持多种上层业务或协议,如SONET/SDH,ATM,Ethernet,IP,PDH,FibreChannel,GFP,MPLS,OTN虚级联, ODU复用等。下表为ITU-T构建的OTN协议框架。DefinitionsG.870Definitions and Terminology for Optical Transport Networks (OTN)Framework for RecommendationsG.871/Y.13
3、01Framework for Optical Transport Network RecommendationsArchitectural AspectsG.872Architecture of Optical Transport NetworksG.872 Amend. 1Architecture of Optical Transport NetworksG.872 Living ListControl PlaneASTN/ASON recommendations are moved to specific ASTN/ASON standards pageStructures Mappin
4、gG.709/Y.1331Network node interface for the optical transport network (OTN)G.709/Y.1331Addendum 1G.709 Living ListG.975Forward Error CorrectionFunctional CharacteristicsG.798Characteristics of optical transport network (OTN) equipment functional blocksG.798 Amendment 1G.798 Living ListG.806Character
5、istics of transport equipment - Description Methodology and Generic FunctionalityG.7710/Y.1701Common Equipment Management RequirementsProtection SwitchingG.808.1 (G.gps)Generic protection switching - Linear trail and subnetwork protectionG.873.1Optical Transport network (OTN) - Linear ProtectionG.87
6、3.1 Errata 1Optical Transport network (OTN) - Linear ProtectionManagement AspectsG.874Management aspects of the optical transport network elementG.874.1Optical Transport Network (OTN) Protocol-Neutral Management Information Model For The Network Element ViewG.875Optical Transport Network (OTN) manag
7、ement information model for the network element viewData Communication Network (DCN)G.7712/Y.1703Architecture and specification of data communication networkG.dcn living listError PerformanceG.8201 (G.optperf)Error performance parameters and objectives for multi-operator international paths within t
8、he Optical Transport Network (OTN)G.optperf living listM.2401 (M.24otn)Error Performance Limits and Procedures for Bringing-Into-Service and Maintenance of multi-operator international paths and sections within Optical Transport NetworksJitter & Wander PerformanceG.8251(G.otnjit)The control of jitte
9、r and wander within the optical transport network (OTN)G.8251 Amendment 1The control of jitter and wander within the optical transport network (OTN)G.8251 Corrigendum 1The control of jitter and wander within the optical transport network (OTN)Physical-Layer AspectsG.664General Automatic Power Shut-D
10、own Procedures for Optical Transport SystemsG.691Optical Interfaces for single-channel SDH systems with Optical Amplifiers, and STM-64 and STM-256 systemsG.692Optical Interfaces for Multichannel Systems with Optical AmplifiersG.693Optical interfaces for intra-office systemsG.694.1Spectral grids for
11、WDM applications: DWDM frequency gridG.694.2Spectral grids for WDM applications: CWDM wavelength gridG.695Optical interfaces for Coarse Wavelength Division Multiplexing applicationsG.696.1(G.IaDI)Intra-Domain DWDM applicationsG.697(G.optmon)Optical monitoring for DWDM systemG.959.1Optical Transport
12、Networking Physical Layer InterfacesSup.39 (Sup.dsn)Optical System Design and Engineering ConsiderationsFibresG.651Characteristics of a 50/125 um multipmode graded index optical fibre cableG.652Characteristics of a single-mode optical fibre cableG.653Characteristics of a dispersion-shifted single mo
13、de optical fibre cableG.654Characteristics of a cut-off shifted single-mode fibre cableG.655Characteristics of a non-zero dispersion shifted single-mode optical fibre cableComponents & Sub-systemsG.661Definition and test methods for the relevant generic parameters of optical amplifier devices and su
14、bsystemsG.662Generic characteristics of optical fibre amplifier devices and subsystemsG.663Application related aspects of optical fibre amplifier devices and sub-systemsG.671Transmission characteristics of passive optical componentsOTN基本概念光通路opticalchannel(OChr),OCh是用于支持OCh路径的信息结构,根据是否支持非随路开销(OCh_OH
展开阅读全文