Comparative study on the effect of temperature on frequency domain spectroscopy results under sinusoidal and triangular excitation

A. Pradhan, B. Chatterjee, S. Chakravorti
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引用次数: 2

Abstract

Condition assessment of in-service power transformers are becoming increasingly important for maintaining reliable and uninterruptable power supply. Among non-invasive, modern condition assessment tools, frequency domain spectroscopy is predominant in determining the aging of oil-paper insulation in power transformers. However, the results of frequency domain spectroscopy are severely influenced by other parameters, such as temperature. Also, the voltages used for studying frequency response in the laboratory are usually sinusoidal in nature. But the insulation system in operation on site is stressed by voltage that may deviate significantly from a sinusoid. Thus the use of non-sinusoidal waveform in obtaining the dielectric response is desirable for advanced insulation diagnostic technique. Considering the aforesaid facts, in this paper frequency response analysis has been performed by applying sinusoidal as well as non sinusoidal waveforms at different temperatures. A laboratory prepared oil-paper insulation sample is used that emulated the composite insulation system of a transformer. The results from sinusoidal response show a good agreement with the conventional frequency response analysis thereby validating the proposed methodology. From non-sinusoidal response, added information is obtained for closer interpretation of the actual physical condition of the sample under test.
正弦和三角激励下温度对频域谱结果影响的比较研究
在役电力变压器的状态评估对于保证电力的可靠和不间断供电变得越来越重要。在非侵入式的现代状态评估工具中,频域谱法是确定电力变压器油纸绝缘老化的主要方法。然而,频域光谱的结果受到温度等其他参数的严重影响。此外,实验室中用于研究频率响应的电压通常是正弦性质的。但在现场运行的绝缘系统会受到电压的压力,电压可能会明显偏离正弦波。因此,使用非正弦波形来获得介质响应对于先进的绝缘诊断技术是可取的。考虑到上述事实,本文分别采用正弦和非正弦波形在不同温度下进行频率响应分析。采用实验室制备的油纸绝缘试样,模拟了变压器复合绝缘系统。正弦响应分析结果与传统的频率响应分析结果吻合较好,从而验证了所提出的方法。从非正弦响应中获得附加信息,以便更接近地解释被测样品的实际物理状况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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