Remote monitoring and control of the status of transformers in distribution electrical networks

V. Levin, P. A. Petushkov, M. A. Shvets
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Abstract

   RELEVANCE. One of the most important expected effects of digitalization of objects of the power grid complex of the Russian Federation is to increase the level of reliability of its functioning. In this regard, research and development in this direction is undoubtedly relevant.   THE PURPOSE. To propose a mathematical model for monitoring dangerous developing defects in power oil-filled transformers, this would meet the properties of predictability and adaptability. Based on the model, to develop a decision-making algorithm for long-term reliable operation oftransformers.   METHODS: Methods of statistical pattern recognition theory, correlation analysis and Bayesian classification will be used to solve the problems to ensure high reliability of diagnostic assessments, validity and effectiveness of operational solutions.   RESULTS. A predictive model was obtained and verified in the form of a correlation function of a sign of a faulty state of a transformer from the values of its electrical load. An event tree has been formed that restores the causal relationship between the result of monitoring the transformer, the defect sign and the operational decision being made. Based on the event tree and diagnostic evaluation criteria, a control algorithm is implemented, with the help of which calculations are performed confirming the effectiveness of the proposed approach.   CONCLUSION. The possibility of effective application of the developed defect recognition model and operational control algorithm as tools of industrial technology of the Internet of Things is illustrated, in particular, when organizing remote diagnostic monitoring of oil-filled transformer equipment at substations of the distribution grid area.
配电网变压器状态的远程监测与控制
的相关性。俄罗斯联邦电网综合体对象数字化最重要的预期效果之一是提高其运行的可靠性水平。在这方面,研究和开发这个方向无疑是相关的。的目的。提出了一种监测电力充油变压器危险发育缺陷的数学模型,该模型满足可预见性和适应性的要求。在此基础上,提出了变压器长期可靠运行的决策算法。方法:运用统计模式识别理论、相关分析和贝叶斯分类等方法解决问题,确保诊断评估的高可靠性、操作方案的有效性和有效性。结果。得到了一个预测模型,并以变压器负荷值与故障状态符号的相关函数的形式进行了验证。已经形成了一个事件树,它恢复了监视变压器的结果、缺陷标志和正在做出的操作决策之间的因果关系。基于事件树和诊断评价准则,实现了控制算法,并利用该算法进行了计算,验证了所提方法的有效性。结论。通过对配电网区域变电站充油变压器设备的远程诊断监测,说明了将所开发的缺陷识别模型和运行控制算法作为物联网工业技术工具有效应用的可能性。
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