Advanced Search
XU Huihuang, WANG Chao, XU Ling, LYU Cunbin. Based on the Relay to Simplify the Distribution Network Automation Secondary Transformation Method[J]. RURAL ELECTRIFICATION, 2024, (8): 22-24. DOI: 10.13882/j.cnki.ncdqh.2024.08.006
Citation: XU Huihuang, WANG Chao, XU Ling, LYU Cunbin. Based on the Relay to Simplify the Distribution Network Automation Secondary Transformation Method[J]. RURAL ELECTRIFICATION, 2024, (8): 22-24. DOI: 10.13882/j.cnki.ncdqh.2024.08.006

Based on the Relay to Simplify the Distribution Network Automation Secondary Transformation Method

More Information
  • Received Date: November 29, 2023
  • The difficulty in the automation transformation of distribution network is the determination of the secondary access point of the running distribution network equipment. In this paper, a technology for the secondary transformation of distribution network automation is proposed, that is, the relay is used to connect to the existing components to realize the remote control and remote signaling automation transformation of the distribution network equipment. Reduce the frequent measurement and verification work in order to find a secondary access point in the original transformation, so as to simplify the automation transformation of the distribution network and improve work efficiency.

  • [1]
    吴昕诺. 配网自动化的故障处理技术分析[J]. 电子技术,2023,52(10):152−153.
    [2]
    单萌. 配电网自动化开关的故障与运行维护分析[J]. 集成电路应用,2023,40(7):228−229.
    [3]
    游文东. 10 kV自动化配网工程施工要点与运行优化研究[J]. 电气开关,2021,59(4):7−9. doi: 10.3969/j.issn.1004-289X.2021.04.003
    [4]
    闫兰. 配网调度及自动化技术改造的分析[J]. 电子元器件与信息技术,2021,5(6):214−215.
    [5]
    湛鹏. 两种配网自动化方案的分析与比较[J]. 农村电气化,2021(5):50−52.
  • Related Articles

    [1]MA Lin, WANG Runcheng. Development of Anti-burn Device for Relay of Prepaid Meter[J]. RURAL ELECTRIFICATION, 2025, (3): 89-92. DOI: 10.13882/j.cnki.ncdqh.2409A063
    [2]MA Xiulin, WU Jian, CHEN Weihua, GUAN Chengchao, CHANG Junxiao, YING Yupeng. Fault Treatment and Experimental Analysis of Relay Maloperation Caused by AC-DC Interference[J]. RURAL ELECTRIFICATION, 2024, (4): 35-40. DOI: 10.13882/j.cnki.ncdqh.2024.04.010
    [3]ZHANG Deqiang. Construction Technology of 110 kV Overhead Transmission Line Crossing Expressway[J]. RURAL ELECTRIFICATION, 2023, (10): 102-104. DOI: 10.13882/j.cnki.ncdqh.2023.10.028
    [4]HE Jiacheng, FENG Yijun, LI Zhitao. The Invention Relates to a Bellows Compression Device for Auxiliary Replacement of a Transformer Gas Relay[J]. RURAL ELECTRIFICATION, 2023, (9): 73-75. DOI: 10.13882/j.cnki.ncdqh.2023.09.017
    [5]LIAO Tao, CAO Xiaolu, GAO Liming, ZHOU Mo, LUO Huiyong, WANG Guohui. Calculation and Analysis of Error Electricity Quantity Caused by Measurement Error Due to Voltage Switching Relay Failure[J]. RURAL ELECTRIFICATION, 2023, (1): 86-88. DOI: 10.13882/j.cnki.ncdqh.2023.01.023
    [6]Du Weiwei. Design and Manufacture of Characteristic Testing Platform Used for Relay[J]. RURAL ELECTRIFICATION, 2021, (11): 66-69. DOI: 10.13882/j.cnki.ncdqh.2021.11.021
    [7]Sun Yazhou. Relaying Protection Suited to Intelligent Substations[J]. RURAL ELECTRIFICATION, 2018, (7): 78-78. DOI: 10.13882/j.cnki.ncdqh.2018.07.028
    [8]Xu Qiang, Li Zhi, Wang Weiwei. Analyses of Non-three Phase Relay Miss-operation for 220 kV Circuit Breakers[J]. RURAL ELECTRIFICATION, 2017, (11): 29-30. DOI: 10.13882/j.cnki.ncdqh.2017.11.011
    [9]Huang Nan, Zhang Da, Li Duojiao, Zhang Yuyu, Shao Yaning. Integrated Worktable Used for Relaying Protection[J]. RURAL ELECTRIFICATION, 2017, (6): 48-48. DOI: 10.13882/j.cnki.ncdqh.2017.06.024
    [10]Wang Geng, Li Tieling. Analysis and Increased Measure of Reliability of Control Circuit Relay and Component of High Voltage Circuit Breaker[J]. RURAL ELECTRIFICATION, 2016, (6): 7-9. DOI: 10.13882/j.cnki.ncdqh.2016.06.002
  • Cited by

    Periodical cited type(1)

    1. 代明. 10kV配网变压器节能化改造的设备选型要点及措施研究. 电力设备管理. 2024(23): 264-266 .

    Other cited types(0)

Catalog

    Article views (18) PDF downloads (2) Cited by(1)

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return