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1.国网长沙供电公司,湖南 长沙 410118
2.国网湖南省电力有限公司,湖南 长沙 410114
[ "徐韬(1988- ),男,国网长沙供电公司工程师,主要研究方向为电力通信。" ]
[ "许圣(1982- ),女,国网长沙供电公司高级工程师,主要研究方向为计算机科学与技术。" ]
[ "全汉滨(1997- ),男,现就职于国网长沙供电公司,主要研究方向为电力通信。" ]
[ "洪焕华(1995- ),男,现就职于国网长沙供电公司,主要研究方向为电力通信。" ]
[ "侯婧媖(1987- ),女,国网长沙供电公司高级工程师,主要研究方向为计算机科学与技术。" ]
[ "陈小惠(1987- ),男,国网湖南省电力有限公司高级工程师,主要研究方向为电力通信。" ]
[ "苏雷(1994- ),男,现就职于国网湖南省电力有限公司,主要研究方向为电力通信。" ]
[ "吴世帆(1997- ),女,现就职于国网长沙供电有限公司,主要研究方向为计算机科学与技术。" ]
[ "邓亚芝(1981- ),女,国网长沙供电公司高级工程师,主要研究方向为自动化。" ]
收稿日期:2024-03-14,
修回日期:2024-07-03,
纸质出版日期:2024-07-20
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徐韬,许圣,全汉滨等.一种提高配电网通信可靠性的智能切换方案[J].电信科学,2024,40(07):134-143.
XU Tao,XU Sheng,QUAN Hanbin,et al.An intelligent switching scheme to improve the reliability of power distribution network communication[J].Telecommunications Science,2024,40(07):134-143.
徐韬,许圣,全汉滨等.一种提高配电网通信可靠性的智能切换方案[J].电信科学,2024,40(07):134-143. DOI: 10.11959/j.issn.1000-0801.2024179.
XU Tao,XU Sheng,QUAN Hanbin,et al.An intelligent switching scheme to improve the reliability of power distribution network communication[J].Telecommunications Science,2024,40(07):134-143. DOI: 10.11959/j.issn.1000-0801.2024179.
配电网侧的终端通信接入方式多样,但多种通信接入方式之间并未完全实现互联互通,导致通信可靠性较差,因此,实现终端多种通信接入方式自动切换与多网融合,进而提高配电网通信网可靠性具有重要意义。基于对双向转发检测(bidirectional forwarding detection,BFD)链路双向监测、单刀双掷隔离、旁路(Bypass)技术及隧道技术等多种成熟技术在通信网络中广泛应用的研究,提出了提升配电网可靠性的关键技术和相融合的方法,并搭建实物仿真环境验证所提方案的可行性。仿真验证结果表明,所提方案能够很好地适用于复杂的配电网通信网络,从而提升其自愈能力,满足物理隔离要求以及业务传输对时延的要求,进而提升整个配电网通信网络的可靠性。
The access methods for terminal communication on the distribution network side are diverse. However
due to the lack of complete interconnection among various communication methods
the reliability of communication is compromised. Therefore
it is of great significance to realize automatic switching of various communication access modes and multi-network integration of terminals to improve the reliability of distribution communication network. Based on the research on the wide application of mature technologies such as bidirectional forwarding detection (BFD) link bidirectional monitoring
single-pole double-throw isolation
Bypass technology and tunnel technology in communication networks
the key technologies and integration methods to improve the reliability of distribution network were put forward, and the feasibility of the proposed scheme was verified by building a physical simulation environment. The simulation results show that the proposed scheme can be well applied to the complex distribution network
so as to improve its self-healing ability
meet the requirements of physical isolation and service transmission delay
and improve the reliability of the entire distribution network.
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