Analysis of Electrical Machines’ State by Measuring the Interturn Resistance in Its Windings

IF 0.2 Q4 INSTRUMENTS & INSTRUMENTATION Devices and Methods of Measurements Pub Date : 2023-08-10 DOI:10.21122/2220-9506-2023-14-2-126-134
A. V. Isaev, U. V. Suchodolov, K. A. Lyubinsky, A. Golubovich
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Abstract

Diagnostic methods applied in the industry do not allow to control the state of electrical machines windings in working condition and to fix the defect formation in them at the early stages of development. The aim of the work was to develop a method and construct a device that allows measuring interturn resistances in the electrical machines’ windings without the need to remove it from the technological process, and thereby assess its current and future performance.A block diagram of a device for measuring of interturn resistances in the electrical machines’ windings has been developed, a method has been described, and an algorithm for carrying out diagnostic procedures has been developed. Also, as a result of the study, mathematical dependencies were determined that characterize the main operations performed by the device and a mathematical model was developed for obtaining of the interturn resistance value in the diagnosed windings from the value of the measured phase difference for the AIR63V4U3 asynchronous motor.The developed method and a device based on it allow measuring interturn resistances in the electrical machines’ windings without the need to remove it from the technological process and fix the beginning of defect formation, and, thereby, evaluate its current and future performance in real time. 
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测量电机绕组匝间电阻分析电机状态
工业中应用的诊断方法不能控制电机绕组在工作状态下的状态,也不能在开发的早期阶段修复它们形成的缺陷。这项工作的目的是开发一种方法并构建一种设备,可以测量电机绕组中的匝间电阻,而无需将其从技术过程中移除,从而评估其当前和未来的性能。已经开发了用于测量电机绕组匝间电阻的装置的框图,描述了一种方法,并开发了用于执行诊断程序的算法。此外,作为研究的结果,确定了表征设备执行的主要操作的数学依赖关系,并建立了一个数学模型,用于从AIR63V4U3异步电动机的测量相位差值中获得诊断绕组中的匝间电阻值。所开发的方法和基于该方法的设备允许测量电机绕组中的匝间电阻,而无需将其从工艺过程中移除并确定缺陷形成的开始,从而实时评估其当前和未来的性能。
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来源期刊
Devices and Methods of Measurements
Devices and Methods of Measurements INSTRUMENTS & INSTRUMENTATION-
自引率
25.00%
发文量
18
审稿时长
8 weeks
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