Substation equipment state evaluation method based on fuzzy comprehensive evaluation
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    Abstract:

    The state assessment is an important means to evaluate the condition of substation equipment. In this paper, a fuzzy comprehensive evaluationbased method is proposed to evaluate the substation equipment. The proposed method can provide an comprehensive evaluation of substation equipment and establish the operating state level for the management of substations. The conventional method usually utilizes the single item scoring method. While the proposed method can evaluate the states of substations from multiple aspects more effectively and more accurate. A simulation example is demonstrated to introduce the procedure of state evaluation. As an instance of application, the state management and control level of substation equipment in Beijing power grid has been greatly improved, and the equipment failure rate have been declining in recent years.

    Reference
    [1] 丁茂生,孙维佳,蔡星浦,等.电力系统极端事件的风险评估与防范[J].中国电力,2020,53(1):32-39+65.DING Maosheng,SUN Weijia,CAI Xingpu,et al.Risk assessment and prevention of extreme events in power systems[J].Electric Power,2020,53(1):32-39+65.
    [2] Q/GDW 1903—2013.输变电设备风险评估导则(试行)[S].
    [3] 张炜.基于状态评价及风险评估的变电设备状态检修方法研究[D].北京:华北电力大学,2014.
    [4] 朱太云,陈忠,杨为,等.电网设备差异化状态检修新模式研究[J].高压电器,2020,56(1):236240.ZHU Taiyun,CHEN Zhong,YANG Wei,et al.Study on the new mode of differential state maintenance of power grid equipment[J].High Voltage Apparatus,2020,56(1):236-240.
    [5] 陈丽光,何绍洋,俞晓峰,等.考虑设备故障率时变特性的电网检修计划优化编制[J].智慧电力,2020,48(12):109-115.CHEN Liguang,HE Shaoyang,YU Xiaofeng,et al.Optimal formulation for power grid maintenance scheduling considering timevarying characteristics of equipment failure rate[J].Smart Power,2020,48(12):109-115.
    [6] 方涛,钱晔,郭灿杰,等.基于天牛须搜索优化支持向量机的变压器故障诊断研究[J].电力系统保护与控制,2020,48(20):90-96.FANG Tao,QIAN Ye,GUO Canjie,et al.Research on transformer fault diagnosis based on a beetle antennae search optimized support vector machine[J].Power System Protection and Control,2020,48(20):90-96.
    [7] 唐俊熙,何迪,郭创新.基于模糊综合评估的电网人因可靠性分析[J].电力科学与技术学报,2017,32(3):63-68.TANG Junxi,HE Di,GUO Chuangxin.Analysis of human reliability in power grid based on fuzzy synthet ic evaluation[J].Journal of Electric Power Science and Technology,2017,32(3):63-68.
    [8] 徐贵林,罗斌,马瑞.基于模糊综合评判的火电厂节能状态评估[J].电力科学与技术学报,2012,27(1):86-90.XU Guilin,LUO Bin,MA Rui.Fuzzy comprehensive e valuation based energy saving condition assessment of thermal power plants[J].Journal of Electric Power Sci ence and Technology,2012,27(1):86-90.
    [9] 王福忠,李媛媛,韩素敏,等.基于模糊综合评价的矿用提升机电气传动系统状态评估[J].电力系统保护与控制,2019,47(9):166-172.WANG Fuzhong,LI Yuanyuan,HAN Sumin,et al.Status assessment of mine hoist electric drive system based on fuzzy synthetic evaluation[J].Power System Protection and Control,2019,47(9):166-172.
    [10] 胡姚刚.并网风力发电机组的状态评估[D].重庆:重庆大学,2011.
    [11] 雷春燕,刘从法,罗日成.基于多目标智能加权灰靶理论的电力变压器状态维修决策[J].电力科学与技术学报,2013,28(2):85-88.LEI Chunyan,LIU Congfa,LUO Richeng.Conditionbased maintenance decision of transformer based on multiattribute intelligent grey target[J].Journal of E lectric Power Science and Technology,2013,28(2):85-88.
    [12] Q/GDW 11241—2014.金属氧化物避雷器检修决策导则[S].
    [13] 徐辉,沈荣顺,胡月琰,等.一种利用阻性电流数据进行预测的避雷器状态检修方法[J].电瓷避雷器,2016(6):162-165.XU Hui,SHEN Rongshun,HU Yueyan,et al.Aconditionbased maintenance method of arrester predicted by using resistive current data[J].Insulators and Surge Arresters,2016(6):162-165.
    [14] 谢鹏,张国栋.金属氧化物避雷器试验测试方法的发展及应用[J].电瓷避雷器,2006(5):36-38.XIE Peng,ZHANG Guodong.Development and application of MOA testing methods[J].Insulators and Surge Arresters,2006(5):36-38.
    [15] 毛慧明,张天运.不同场所金属氧化物避雷器的智能监测方法[J].电瓷避雷器,2018(4):124-127.MAO Huiming,ZHANG Tianyun.Intelligent monitoring methods of MOA in different scenarios[J].Insulators and Surge Arresters,2018(4):124-127.
    [16] 甘锡淞,傅成华,余洋.基于模糊环境AMPSOSVM氧化锌避雷器故障诊断研究[J].电瓷避雷器,2017(5):41-46.GAN Xisong,FU Chenghua,YU Yang.Study on fault diagnosis for Zinc Oxide arrester based on hybrid fuzzy environment AMPSOSVM[J].Insulators and Surge Arresters,2017(5):41-46.
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周松霖,段佳奇,齐伟强.基于模糊评判的变电设备评估[J].电力科学与技术学报英文版,2021,36(3):174-179. Zhou Songlin, Duan Jiaqi, Qi Weiqiang. Substation equipment state evaluation method based on fuzzy comprehensive evaluation[J]. Journal of Electric Power Science and Technology,2021,36(3):174-179.

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  • Online: August 26,2021
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