电力终端通信接入网通信技术匹配
CSTR:
作者:
通讯作者:

李沛哲(1990-),男,博士,工程师,主要从事电力通信与数字化建设相关研究;E-mail:lipeizhe424@126.com

中图分类号:

TM734

基金项目:

国网湖南省电力有限公司科技项目(5216A218000C)


Analysis of communication matching technology of power terminal communication access network
Author:
  • 摘要
  • | |
  • 访问统计
  • |
  • 参考文献 [24]
  • | | | |
  • 文章评论
    摘要:

    终端通信接入网是电力骨干通信网向用户侧延伸的末梢神经网络。随着通信技术的飞速发展,适用于终端通信接入网的技术呈多样化趋势,为不同电力终端通信业务匹配最适应的通信接入技术是提高通信效率、保证通信服务质量的前提。对终端通信接入网可用的通信技术及其业务需求做深入分析,并基于主观偏好和客观数理分析设计了基于主客观因素的通信技术最优匹配算法,算法权衡业务对属性的偏好和各属性自身的重要程度,最终得出不同电力通信业务最适配的通信技术,从根本上提升终端通信接入网的效能。

    Abstract:

    As an extension of the power backbone communication network to load terminal, the terminal communication access network is an important part of the power communication network. With the rapid development of communication technology, the technologies applicable to the terminal communication access network are diversified. The matching of the most suitable communication access technology for different power terminal communication services is the prerequisite to improve the communication efficiency and to ensure the communication service quality. This paper deeply analyzes the communication technology and service requirements of the terminal communication access network, and then designs the communication technology optimized matching algorithm based on the subjective preference and objective mathematical analysis. The algorithm weighs both the preference of the business to attributes and the importance of each attribute itself, and finally derives the most suitable communication technology for different power communication services, which fundamentally improves the performance of the terminal communication access network.

    参考文献
    [1] 曹惠彬.国家电网公司“十二五”通信网规划综述[J].电力系统通信,2011,32(5):16.CAO Bingzhen.The summary of "12th fiveyear" telecommunication network plan of SGCC[J].Telecommunications for Electric Power System,2011,32(5):16.
    [2] 赵丙镇,李伟良,王一蓉,等.终端通信接入网建设[J].电力系统通信,2011,32(5):89-94.ZHAO Bingzhen,LI Weiliang,WANG Yirong,et al.Brief analysis of the communication terminal access network construction[J].Power System Communications,2011,32(5):89-94.
    [3] 聂晓音,谢刚,李洋,等.基于栈式相关性稀疏自编码的电力通信网故障诊断[J].电力系统保护与控制,2019,47(19):158-163.NIE Xiaoyin,XIE Gang,LI Yang,et al.Fault diagnosis of power communication network based on stacked relational sparse autoencoder[J].Power System Protection and Control,2019,47(19):158-163.
    [4] 胡永红,张超,文一帆,等.智能电网终端融合通信接入网切换策略[J].电测与仪表,2019,56(23):90-96.HU Yonghong,ZHANG Chao,WEN Yifan,et al.Switching strategy of smart grid terminal fusion communication access network[J].Electrical Measurement & Instrumentation,2019,56(23):90-96.
    [5] 陆旭,李尧,张海全,等.基于SDN架构的电力通信网络能耗动态调节[J].电网与清洁能源,2019,35(12):31-36+42.LU Xu,LI Yao,ZHANG Haiquan,et al.Research on dynamic energy consumption regulation of power communication network based on SDN architecture [J].Power System and Clean Energy,2019,35(12):31-36+42.
    [6] 李岩,齐磊杰,刘云鹏.具有公共屏蔽层的三芯中压电缆通信信道分析[J].高压电器,2020,56(9):101-106+113.LI Yan,QI Leijie,LIU Yunpeng.Communication channel analysis of threecore mediumvoltage cable with common shielding layer[J].High Voltage Apparatus,2020,56(9):101-106+113.
    [7] 严鹏飞,李俊娥,周斌,等.基于电力图形描述规范的智能变电站网络通信可视化方法研究[J].智慧电力,2020,48(8):91-97.YAN Pengfei,Li June,ZHOU Bin,et al.Network communication visualization of smart substation based on graphic description specification for electric power system[J].Smart Power,2020,48(8):91-97.
    [8] 樊冰,郑陈熹,唐良瑞,等.基于多属性决策的电力通信网的节点重要度计算方法[J].电力系统保护与控制,2020,48(9):68-76.FAN Bing,ZHENG Chenxi,TANG Liangrui,et al.Node importance evaluation method of electric power communication network based on multiattributes decision making[J].Power System Protection and Control,2020,48(9):68-76.
    [9] 余斌,尹项根,吴小忠,等.输电线路在线监测的层次化通信网络规划模型[J].中国电力,2019,52(3):161-168.YU Bin,YIN Xianggen,WU Xiaozhong,et al.A planning model for hybrid hierarchical communication network of transmission line online monitoring[J].Electric Power,2019,52(3):161-168.
    [10] 马平,施晨霞,俞朝辉.电力通信终端接入网建设和维护管理模式探讨[J].电力信息与通信技术,2014,12(5):132-135.MA Ping,SHI Chenxia,YU Zhaohui.Discussion on construction and maintenance management mode of electric power terminal communication access network[J].Electric Power Information and Communication Technology,2014,12(5):132-135.
    [11] 陆忞,周昊.电力终端通信接入网风险分析与安全接入技术研究[J].通信技术,2017,50(9):2067-2073.LU Wei,ZHOU Wei.Risk analysis and secure access technology of power terminal communication access network[J].Communication Technology,2017,50(9):2067-2073.
    [12] 胡阳,丁晨阳,蒋苏明.电力终端通信接入网通道安全技术分析[J].通讯世界,2016(20):89.HU Yang,DING Chenyang,JIANG Suming.Analysis of channel security technology for power terminal communication access network[J].Telecom World,2016(20):89.
    [13] 权楠,雷煜卿,黄毕尧,等.智能电网下的电力终端通信接入架构研究[J].电力系统通信,2012,33(1):74-77.QUAN Nan,LEI Yiqing,HUANG Biyao,et al.Research on architecture of terminal communication access network in smart grid[J].Telecommunications for Electric Power System,2012,33(1):74-77.
    [14] 于希军,崔伟国,钟文涛.智能电网下电力终端通信接入架构设计[J].中国新通信,2015,17(21):124.YU Xijun,CUI Weiguo,ZHONG Wentao.Design of communication access architecture for power terminals under smart grid[J].China New Telecommunications,2015,17(21):124.
    [15] 孟凡博,赵宏昊,王杰.电力终端通信接入网建设研究[J].电力系统通信,2012,33(6):19-22.MENG Fanbo,ZHAO Hongwei,WANG Jie.Research on construction of electric power terminal communication access network[J].Telecommunications for Electric Power System,2012,33(6):19-22.
    [16] 江璟.终端通信公共接入平台建设研究[J].智能电网,2017,5(4):402-406.JIANG Jing.Research on the construction of common access platform of terminal communication access network[J].Smart Grid,2017,5(4):402-406.
    [17] 廖勤武.终端通信接入网公共接入平台研究[J].电力信息与通信技术,2016,14(11):93-97.LIAO Qinwu.Research on public platform for terminal communication access network[J].Electric Power Information and Communication Technology,2016,14(11):93-97.
    [18] 孙圆圆.智能电网中通信接入网技术的研究与应用[D].北京:华北电力大学,2016.
    [19] 刘峰.无源光网络技术在配电自动化系统中的应用[J].中国新通信,2013,15(16):53-54.LIU Feng.Application of passive optical network technology in distribution automation system[J].China New Telecommunications,2013,15(16):53-54.
    [20] Q/GDW 1807—2012.终端通信接入网工程典型设计规范[S].
    [21] 吴锴,宋兴旺,冯兆飞,等.城市能源互联网中的无线技术应用研究[J].电力信息与通信技术,2018,16(2):89-96.WU Kai,SONG Xingwang,FENG Zhaofei,et al.Application research on the wireless technology in urban energy internet[J].Electric Power Information and Communication Technology,2018,16(2):89-96.
    [22] 李波,曹敏,胡万层,等.AMI通信网络中微功率无线通信的性能测试技术及系统研究[J].计算机测量与控制,2015,23(2):385-388+391.LI Bo,CAO Min,HU Wanceng,et al.Research for micropower wireless communication performance testing technology and system of AMI communication network[J].Computer Measurement & Control,2015,23(2):385-388+391.
    [23] 赵静,苏光添.LoRa无线网络技术分析[J].移动通信,2016,40(21):50-57.ZHAO Jing,SU Guangtian.Analysis on LoRa wireless network technology[J].Mobile Communications,2016,40(21):50-57.
    [24] 李沛哲.面向智能电网的无线通信技术研究[D].北京:北京邮电大学,2018.
    相似文献
    引证文献
    网友评论
    网友评论
    分享到微博
    发 布
引用本文

李沛哲,肖振锋,陈仲伟,等.电力终端通信接入网通信技术匹配[J].电力科学与技术学报,2021,36(3):125-134.
Li Peizhe, Xiao Zhenfeng, Chen Zhongwei, et al. Analysis of communication matching technology of power terminal communication access network[J]. Journal of Electric Power Science and Technology,2021,36(3):125-134.

复制
分享
文章指标
  • 点击次数:191
  • 下载次数: 1233
  • HTML阅读次数: 0
  • 引用次数: 0
历史
  • 在线发布日期: 2021-08-26
文章二维码