Advanced Search
LIU Zhiren, YU Limin. Research and Verification of One-way Delay Measurement Method for Wireless Communication for Power End-to-end Control Services[J]. RURAL ELECTRIFICATION, 2023, (5): 50-53. DOI: 10.13882/j.cnki.ncdqh.2023.05.013
Citation: LIU Zhiren, YU Limin. Research and Verification of One-way Delay Measurement Method for Wireless Communication for Power End-to-end Control Services[J]. RURAL ELECTRIFICATION, 2023, (5): 50-53. DOI: 10.13882/j.cnki.ncdqh.2023.05.013

Research and Verification of One-way Delay Measurement Method for Wireless Communication for Power End-to-end Control Services

More Information
  • Received Date: March 27, 2023
  • Available Online: May 10, 2023
  • Based on the current lack of accurate test methods for wireless end-to-end delay, this paper proposes a wireless communication one-way delay test scheme for the sender or receiver. Aiming at the internal clock timing, a key factor affecting the delay test results, a clock linear compensation strategy is proposed to achieve linear compensation within seconds and a multi-source high-frequency clock correction strategy to achieve CPU high-frequency clock replacement. According to the test scheme, the test terminal is developed based on the four-layer structure, and the test verification of one-way delay and jitter value of wireless network is completed in the demonstration area.

  • [1]
    王再见,杨凌云,汤萍萍,等. 5G网络感知质量关键技术研究[J]. 无线电通信技术,2016,42(6):28−32+90. doi: 10.3969/j.issn.1003-3114.2016.06.07
    [2]
    宋海涛,申建华. 无线链路时延测试与标定[J]. 河北省科学院学报,2016,33(02):39−42. doi: 10.3969/j.issn.1001-9383.2016.02.008
    [3]
    赵鑫彦, 面向5G的无线网络评估及测试方法研究[J]. 电信快报. 2019(11): 38-39.
    [4]
    李垠韬,袁卫国,宋伟. 电力无线专网建设与测试[J]. 沿海企业与科技.,2014,(05):20−23.
  • Related Articles

    [1]XU Danying, LI Pinlei, LIU Shuang, LIANG Mengmeng, LIANG Chengjun. Design of a High-Performance Intelligent Pump Based on AI Algorithm Control[J]. RURAL ELECTRIFICATION, 2025, (5): 35-38. DOI: 10.13882/j.cnki.ncdqh.2504A016
    [2]WEI Yuhong. Weak Links and Control Measures of Safety Management in Power Grid Infrastructure Construction[J]. RURAL ELECTRIFICATION, 2022, (8): 87-88. DOI: 10.13882/j.cnki.ncdqh.2022.08.024
    [3]Gu Siping. Humble Comment of Intelligent kWh Meter and Centralized Copying Meter System Application in Power Be on Sale Line Loss Management[J]. RURAL ELECTRIFICATION, 2021, (9): 74-75. DOI: 10.13882/j.cnki.ncdqh.2021.09.023
    [4]Cao Diandian, Zhao Shiyin, Su Bensheng, Li Jianxin, Yang Lili, Wang Jianzhong. Influence of Insulation Eccentricity on Cable Performance and Improvement Measures[J]. RURAL ELECTRIFICATION, 2021, (4): 18-21. DOI: 10.13882/j.cnki.ncdqh.2021.04.005
    [5]Chen Ding, Cao Weiguo. Lightning Protection Research of 35 kV Transmission Lines Based on Lightning Stroke Performance[J]. RURAL ELECTRIFICATION, 2019, (9): 54-55. DOI: 10.13882/j.cnki.ncdqh.2019.09.017
    [6]Sun Haiwang, Gong Xueying. Capacitance Current Measurement and Analysis[J]. RURAL ELECTRIFICATION, 2019, (1): 76-77. DOI: 10.13882/j.cnki.ncdqh.2019.01.025
    [7]Liu Wanglai. On-line Leakage Current Measurement and Test for Surge Protector[J]. RURAL ELECTRIFICATION, 2018, (2): 28-29. DOI: 10.13882/j.cnki.ncdqh.2018.02.008
    [8]Luo Man, Hong Yiting, Zhu Lei. Planned State Measurement and Test of Distribution Switches[J]. RURAL ELECTRIFICATION, 2018, (1): 23-24. DOI: 10.13882/j.cnki.ncdqh.2018.01.006
    [9]Liu Chuncheng, Yuan Cunchao, Wang Li. Research and Application of Victor Concentrated Measuring Method for Bus-bar Differential Protection[J]. RURAL ELECTRIFICATION, 2017, (7): 21-22. DOI: 10.13882/j.cnki.ncdqh.2017.07.008
    [10]Zhang Jun, Zhu Bo. Statistical Analyses of Practical Evidence for Wind Power Operating Performance[J]. RURAL ELECTRIFICATION, 2016, (5): 53-55. DOI: 10.13882/j.cnki.ncdqh.2016.05.023

Catalog

    Article views (27) PDF downloads (0) Cited by()

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return