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Narrow Band Dielectric Frequency Response: Theory and Applications

机译:窄带介电频率响应:理论与应用

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It is imperative that transformers in distribution and transmission substations function properly in order to avoid any damage or unnecessary system outages. There are diagnostic tests recommended in various international standards that can provide early evidence of possible issues within the equipment's overall health. The primary goal is to provide continuous and reliable operation throughout the life expectancy of a transformer, which relies mainly on the condition of the insulation system. Traditional power factor testing is performed at line frequency and is used to assess the condition of an insulation system. However, power factor measurements conducted at line frequency have limitations such as low sensitivity, lack of data, and incorrect temperature correction that can lead to a delayed response to an issue in the insulation system. It is suggested that the test be performed utilizing a narrow frequency band from 1 to 500 Hz. Performing the test using this frequency band offers higher sensitivity, specifically at 1 Hz. This strengthens the ability to trend results and to identify issues in a deteriorating insulation system at an earlier stage. This paper will discuss the theory behind power factor and narrow band dielectric frequency response, as well as discuss recommended applications and include a section for results analysis.
机译:为了避免任何损坏或不必要的系统中断,配电和输电变电站中的变压器必须正常运行。有各种国际标准建议的诊断测试,这些测试可以提供设备整体健康状况中可能出现问题的早期证据。主要目标是在变压器的整个使用寿命中提供连续且可靠的运行,这主要取决于绝缘系统的状况。传统的功率因数测试是在线路频率下执行的,用于评估绝缘系统的状况。但是,以线路频率进行的功率因数测量具有局限性,例如灵敏度低,数据不足以及温度校正不正确,这可能会导致对绝缘系统中问题的延迟响应。建议使用1到500 Hz的窄频带进行测试。使用此频段执行测试可提供更高的灵敏度,尤其是在1 Hz时。这样可以增强趋势结果的能力,并能在较早阶段识别出恶化的绝缘系统中的问题。本文将讨论功率因数和窄带介电频率响应背后的理论,并讨论推荐的应用,并包括一个结果分析部分。

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