节点文献
基于通信GIS系统的光缆在线监测设计与实现
【作者】 石军;
【作者基本信息】 电子科技大学 , 软件工程, 2011, 硕士
【摘要】 随着通信技术的成熟与广泛应用,光缆通信传输系统的通信容量变得越来越大,对网络的安全可靠性的要求越来越高,降低网络故障率、缩短故障中断时间等需求被提到了前所未有的高度。本文提供出了基于通信GIS的在线监测光缆方法与系统,通过GIS系统与光缆监测技术相融合,为光缆线路的维护管理提供一种可控制和可预见状态的方法,从而实现快速故障定位,变被动维护为主动维护。本系统技术应用到湖州电力局的“光缆在线监测系统”,达到了降低运营维护成本,减员增效的目的。利用GIS提供一个监控管理的数字化平台,在GIS平台之上,以拓扑分析应用作支撑,实现光缆在线监测,可以有效解决故障分析与定位,提高电力企业对光缆通信传输管理实际能力。本文首先系统分析了通信GIS系统的相关技术,以及光缆实时监测技术,在此基础提出了系统实现的框架。论文中还给出系统的需求分析,以及系统总体设计,最后该提供了相关的系统测试。最后给出了对在线监测系统的总结和展望。
【Abstract】 Nowdays communications technologies are mature and widely used, optical fiber cable transmission system becomes more and more communications capacity, network security and reliability of the increasingly high demand, reduce network failure rate, shorten the time of failure needs to be mentioned interrupt to an unprecedented height. This article provides a GIS-based communication cable line monitoring method and system monitoring through GIS system with fiber optic technology integration, maintenance and management for the cable line to provide a controlled and predictable way to the state, in order to achieve fast fault location, change reactive maintenance to proactive maintenance. The system technology to Huzhou Power Authority’s "optical line monitoring system", to reduce operating and maintenance costs, downsizing for efficiency purposes.Monitoring and management using GIS to provide a digital platform, the GIS platform, to be used as a support for topological analysis, achieving optical line monitoring, can effectively resolve the fault analysis and positioning, to improve power management business-practical capacity fiber optic communication transmission.This thesis first systematic analysis of the communication technologies related to GIS systems, and real-time monitoring of fiber optic technology, on the basis of the framework of the proposed system implementation. Paper also gives the system requirements analysis, and system design, and finally the provision of the relevant system testing. Finally, a summary of on-line monitoring system and prospects.
- 【网络出版投稿人】 电子科技大学 【网络出版年期】2011年 12期
- 【分类号】TN913.33;P208
- 【被引频次】1
- 【下载频次】123