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Development of a Moisture-in-Solid-Insulation Sensor for Power Transformers

机译:开发用于电力变压器的固体绝缘水分传感器

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摘要

Moisture is an important variable that must be kept under control to guarantee a safe operation of power transformers. Because of the hydrophilic character of cellulose, water mainly remains in the solid insulation, while just a few parts per million are dissolved in oil. The distribution of moisture between paper and oil is not static, but varies depending on the insulation temperature, and thus, water migration processes take place continuously during transformers operation. In this work, a sensor is presented that allows the determination of the moisture content of the transformer solid insulation in the steady state and during the moisture migration processes. The main objective of the design is that the electrodes of the sensor should not obstruct the movement of water from the solid insulation to the oil, so the proposed prototype uses a metallic-mesh electrode to do the measurements. The measurement setup is based on the characterization of the insulation dielectric response by means of the frequency dielectric spectroscopy (FDS) method. The sensitivity of the proposed sensor has been tested on samples with a moisture content within 1% to 5%, demonstrating the good sensitivity and repeatability of the measurements.
机译:水分是一个重要的变量,必须加以控制以确保电力变压器的安全运行。由于纤维素的亲水特性,水主要保留在固体绝缘物中,而百万分之几的部分则溶于油中。纸和油之间的水分分布不是一成不变的,而是随绝缘温度的变化而变化,因此,在变压器运行期间,水分的迁移过程会不断发生。在这项工作中,提出了一种传感器,该传感器可以确定稳态下以及在水分迁移过程中变压器固体绝缘的水分含量。设计的主要目的是传感器的电极不应阻碍水从固体绝缘体到油的运动,因此建议的原型使用金属网状电极进行测量。测量设置基于通过频率介电谱(FDS)方法对绝缘介电响应进行表征。所建议的传感器的灵敏度已经在水分含量在1%至5%范围内的样品上进行了测试,证明了测量的良好灵敏度和可重复性。

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