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The Concept of Efficient Control of the Condition of Electrical Equipment According to Nondestructive Testing Data
Russian Electrical Engineering Pub Date : 2021-02-02 , DOI: 10.3103/s106837122011005x
D. K. Eltyshev , A. M. Kostygov

Abstract

The problem of developing an effective system for controlling the condition of electrical equipment in the conditions of the transformation of the modern electric power industry is investigated. The classification of approaches to the equipment condition control depending on the degree of using the available information is presented. An option of forming the equipment condition control function based on “flexible” strategies and nondestructive testing technology is proposed. The conceptual model developed describes the principles of structural and functional interaction of procedures for controlling the equipment’s key technical parameters, the predictive diagnostics of its condition, and the assessment and planning of its subsequent operation within the framework of procedures of integrated logistics support over the short or long term. The scenarios of developing criteria for making control decisions during operation of electrotechnical equipment based on the results of nondestructive testing taking into account the actual category of its condition and the requirements of regulatory and technical documentation are considered. An example of using this approach at oil extraction facilities is given. The development of the proposed conceptual solutions is considered as a possibility to improve the technical and economic efficiency of the equipment operation procedures, including the construction of new-generation electric power grids.



中文翻译:

根据无损检测数据有效控制电气设备状况的概念

摘要

研究了在现代电力工业的转型条件下开发一种用于控制电气设备状况的有效系统的问题。根据可用信息的使用程度,介绍了设备状态控制方法的分类。提出了基于“灵活”策略和无损检测技术形成设备状态控制功能的选择。开发的概念模型描述了用于控制设备关键技术参数的程序的结构和功能交互作用的原理,设备状态的预测诊断以及在短期内综合后勤支持程序框架内对设备的后续操作的评估和计划或长期的。考虑了基于无损测试结果制定电气设备运行过程中的控制决策标准的方案,其中要考虑其条件的实际类别以及法规和技术文件的要求。给出了在采油设施中使用此方法的示例。提出的概念性解决方案的开发被认为是提高设备操作程序的技术和经济效率的一种可能性,包括建设新一代的电网。

更新日期:2021-02-02
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