有载分接开关电弧声发射信号特性研究

A. Cichon, T. Borucki, T. Boczar, D. Zmarzły
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引用次数: 3

摘要

本文介绍了利用声发射法诊断有载分接开关技术状态的科研工作成果。OLTC是电力变压器的重要组成部分。它们使网络中的有载电压调节成为可能。这些设备的可靠运行是非常重要的,特别是对于配电变压器,以及在工厂和工业工厂中工作的设备,在网络中容易发生电压值变化。OLTC的运行与主触点和电阻触点上电弧的形成有关。这种现象的强度取决于以下因素:切换时电流流动的规模、触点的磨损程度、接收的特性等。研究工作的目的是确定电弧点火产生的声发射信号的特征参数,即所谓的“指纹”,特别是确定相应的时频结构,论文中介绍了研究结果。测量是在一个装配有分接开关的建模组件中进行的,分接开关包括分离的选择器和电源开关,提供单相电压,50 V,强制电流,标称值等于150 a。每次对每个相位分别进行测量,迫使电流通过触点形成单个相位。在触点耦合和解耦过程中产生的电弧产生声发射信号,这些信号由配备WD AH-17型宽带换能器的测量仪器记录。利用短时傅里叶变换(STFT)、连续小波变换(CWT)和离散小波变换(DWT)在时频域对得到的结果进行分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characteristic of acoustic emission signals generated by electric arc in on load tap changer
Results of scientific research works considering technical condition diagnosis of on load tap changers (OLTC) by use of acoustic emission (AE) method are presented in the paper. OLTC are crucial part of electric power transformers. They enable for on load voltage regulation in the network. Reliable operation of these devices is important especially for distributive transformers but also for units working in mills and industrial plants vulnerable on occurrence of voltage value changes in the network. Operation of OLTC is connected with formation of electric arc which occurs on main contacts and also on resistor contacts. Intensity of this phenomenon depends among others on: scale of current flowing during switch over, wear and tear level of contacts, character of receptions etc. The aim of research works, results of which are presented in the paper, was to determine characteristic parameters, so called “finger prints”, for AE signals generated by ignition of electric arc and in particular determination of the corresponding time-frequency structures. The measurements were performed in a modeling assemble equipped with tap changer including separated selector and power changer that were supplied with single phase voltage, 50 V, forcing current flow, nominal value equal to 150 A. The measurements were performed for each phase separately each time forcing current flow through the contacts accruing to a single phase. Electric arc created during coupling and uncoupling of contacts generated AE signals which were registered with a measuring apparatus equipped with wide band transducer type WD AH-17. Analysis of achieved results was performed in the time-frequency domain by use of short time Fourier transform (STFT), continuous (CWT) and discrete (DWT) wavelet transform.
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