基于探针故障检测的载波组网监测技术研究*

尤宏亮, 刘建戈, 戴欣, 安立源

集成电路与嵌入式系统 ›› 2023, Vol. 23 ›› Issue (2) : 25-28.

PDF(1011 KB)
PDF(1011 KB)
集成电路与嵌入式系统 ›› 2023, Vol. 23 ›› Issue (2) : 25-28.
技术纵横

基于探针故障检测的载波组网监测技术研究*

  • 尤宏亮, 刘建戈, 戴欣, 安立源
作者信息 +

Research on Carrier Network Monitoring Technology Based on Probe Fault Detection

  • You Hongliang, Liu Jiange, Dai Xin, An Liyuan
Author information +
文章历史 +

摘要

电网智能化已经成为国际趋势,智能电网是一个现代化电力系统网络设施,通过自动化控制和现代通信技术提高电力和数据传输的效率、可靠性和安全性。保障输电线路的可靠性一直是智能电网领域研究的热点问题,它对于电网的安全稳定运行具有重要意义,其中,故障诊断是智能电网的重中之重。

Abstract

Smart grid has become an international trend.Smart grid is a modern power system network facility.Through automatic control and modern communication technology,it can improve the efficiency,reliability and security of power and data transmission.Ensuring the reliability of transmission lines has been a hot topic in the field of smart grid recently.It has great significance for the safe and stable operation of the power grid.Among them,fault diagnosis is the top priority of the smart grid.

关键词

故障检测 / 探针 / 载波组 / 负载均衡

Key words

fault detection / probe / carrier group / load balancing

引用本文

导出引用
尤宏亮, 刘建戈, 戴欣, 安立源. 基于探针故障检测的载波组网监测技术研究*[J]. 集成电路与嵌入式系统. 2023, 23(2): 25-28
You Hongliang, Liu Jiange, Dai Xin, An Liyuan. Research on Carrier Network Monitoring Technology Based on Probe Fault Detection[J]. Integrated Circuits and Embedded Systems. 2023, 23(2): 25-28
中图分类号: TN871   

参考文献

[1] 强亚倩.适配社会延伸业务的宽带电力线通信组网研究[D].保定:华北电力大学,2021.
[2] 薛晨.配电自动化电力线载波通信组网方法研究[D].保定:华北电力大学,2017.
[3] Tayal A,Sharma N,Hubballi N,et al.Traffic dynamics-aware probe selection for fault detection in networks[J].Journal of Network and Systems Management,2020,28(4):1055-1084.
[4] Bogle J,Bhatia N,Ghobadi M,et al.TEAVAR:Striking the right utilization-availability balance in wan traffic engineering[C]//Proceedings of the ACM Special Interest Group on Data Communication,Beijing,China:ACM,2019:29-43.
[5] Cheng L,Qiu X S,Meng L M,et al.Efficient active probing for fault diagnosis in large scale and noisy networks[C]//2010 Proceedings IEEE INFOCOM. San Diego,CA,USA:IEEE,2010:1-9.
[6] HOUCK K,CALO S,FINKEL A.Towards a practical alarm correlation system[C]//International Symposium on Integrated Network Management IV.Boston,1995,Berlin:Springer,1995.
[7] SCHOW P H.The alarm information base: A repository for enterprise management[C]//IEEE International Workshop on System Management.Toronto,1996,Piscataway:IEEE,2002.
[8] 杨锋.基于直流电力线载波通信的光伏组件监测系统[D].南京:南京邮电大学,2017.
[9] 唐妍.高速公路电力电缆、电力设备的智能监测防盗系统研究[D].重庆:重庆大学,2011.
[10] 汪直平.通信网络中基于主动探测的多故障定位算法研究[D].西安:西安电子科技大学,2021.
[11] Natu M,Sethi A S,Lloyd E L.Efficient probeselection algorithms for fault diagnosis[J].Telecommunication Systems,2008,37(1-3):109-125.
[12] Xuan Y,Shen Y L,Nguyen N P,et al.Efficient multi-link failure localization schemes in all-optical networks[J].IEEE Transactions on Communications,2013,61(3):1144-1151.
[13] Patil B,Kinger S,Pathak V K.Probe station placement algorithm for probe set reduction in network fault localization[C]//2013 International Conference on Information Systems and Computer Networks.Mathura,India:IEEE, 2013:164-169.
[14] Jeswani D,Korde N,Patil D,et al.Probe station selection algorithms for fault management in computer networks[C]//2010 2nd International Conference on Communication Systems and NETworks. Bangalore,India:IEEE,2010:1-9.

基金

*国网江苏省电力有限公司科技项目-电力物联网HPLC通信实用化水平提升关键技术研究(J2021086)。

PDF(1011 KB)

Accesses

Citation

Detail

段落导航
相关文章

/