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电力通信光缆运行与维护分析 被引量:4

Analysis on Operation and Maintenance of Electric Power Communication Optical Cable
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摘要 光纤通信技术作为现代通信的主要支柱之一,在现代电力通信网中有着广泛的应用。作为电力通信系统传输通道,通信光缆承载着电网调度自动化、保护安控、营销系统等重要业务,其运行的可靠性直接关系到电力系统的安全稳定。结合了现场经验,从工作制度、动态管理、日常运维措施、应用前沿技术等四个方面进行了探讨,总结出一套相对成熟的电力通信光缆运行与维护方法。实践证明,该方法的运用显著降低了电力通信光缆的故障率,缩短了抢修时间,实现了电力通信网高可靠性运行。 As one of the main pillars of modern communication, optical fiber communication technology is widely used in modern electric power communication network. As the transmission channel of electric power communication system, communication optical cable carrying information of power dispatching, safety protection, marketing and other important business system,its reliability is directly related to the security and stability of electric power system. This paper discussed the four aspects of working system, dynamic management, daily maintenance measures and application of advanced technology, and summed up a set of relatively mature operation and maintenance methods of electric power communication optical cable. Practice has proved that the application of these methods can significantly reduce the failure rate of electric power communication optical cable,shorten the repair time, and realize the high reliability operation of electric power communication network.
出处 《信息通信》 2018年第2期120-122,共3页 Information & Communications
关键词 电力通信 光缆 运行维护 处理原则 RFID Electric Power Communication Optical Cable Operation and Maintenance principle of management RFID
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  • 1夏江珍,谢同林.大跨距无中继光纤通信系统——西部电力通信系统的一种技术选择[J].电力系统通信,2005,26(5):32-35. 被引量:23
  • 2SCHMITF J M.Optical coherence tomography(OCT):a review[J].IEEE Journal of Selected Topics in Quantum E lectronics,1999,5(4):1 205-1 215.
  • 3CREMER C,GAUBATZ U,KRUMMRICH E 4×10 Gbit/s WDM transmission with remote post and p reamp lifiers[J].Electronics Lett,1996(32):1 116-1 117.
  • 4EOIYOUNG C,HODEOK J.Modeling and verification of FEC performance for optical transmission systems using a proposed uniformly quantized symbol error probability model[J].Journal of lightwave technology,2005,23(3):1 100-1 103.
  • 5孙学康,张金菊.光纤通信技术[M].北京:人民邮电出版社,2008.
  • 6DL.5033-1994.送电线路对通信线路危险影响设计规程[S].1994.
  • 7YD5102-2003.长途通信干线光缆传输系统线路工程设计规范[S].2003.
  • 8邮电部电信总局.长途通信光缆线路维护手册[M].北京:人民邮电出版社,2003.
  • 9姜利民,罗玉兴,印新达,熊亮.电力系统光纤通信超长站距传输技术的研究[J].电力系统通信,2008,29(3):22-27. 被引量:20
  • 10夏江珍,谢同林,贾小铁,曾京文,何昕.507km超长站距无中继光传输系统[J].电力系统通信,2009,30(3):10-12. 被引量:17

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