Experimental validation of a moisture sensor for cellulosic insulation of power transformers

A. Céspedes, D. García, B. García
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Abstract

Power transformers comprise one of the most important assets in the power systems. Damage in a power transformer can lead to a collapse in the electrical transmission network, disturbing a big number of users. The cellulosic insulation plays a key role in the life of power transformer. Several studies have demonstrated that high levels of moisture in the cellulosic insulation increase its rate of ageing limiting the power transformer's life expectancy. In this work, the experimental validation of a sensor aimed at determining the moisture content of cellulosic insulation is presented. The working principle of the sensor is based in the use of the Frequency Dielectric Spectroscopy method (FDS) to relate the main dielectric characteristics of the sensor and those of the transformer solid insulation. The validation presented in this work considers different temperatures and moisture contents under equilibrium and non-equilibrium conditions. Additionally, the experimental dielectric curves of the sensor are compared with simulation data obtained by means of a finite-element model that reproduces the applied experimental conditions, to validate the modeling process.
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电力变压器纤维绝缘湿度传感器的实验验证
电力变压器是电力系统中最重要的设备之一。电力变压器的损坏会导致输电网络的崩溃,给大量用户带来困扰。纤维素绝缘对电力变压器的使用寿命起着至关重要的作用。几项研究表明,纤维素绝缘中的高水平水分增加了其老化速度,限制了电力变压器的预期寿命。在这项工作中,实验验证的传感器旨在确定纤维素绝缘的水分含量提出。该传感器的工作原理是基于使用频率介电光谱法(FDS)将传感器的主要介电特性与变压器固体绝缘的介电特性联系起来。在这项工作中提出的验证考虑了平衡和非平衡条件下不同的温度和水分含量。此外,将传感器的实验介电曲线与模拟数据进行了比较,通过有限元模型再现了应用的实验条件,验证了建模过程。
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