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Impact of humidity on dielectric response of rotating machines insulation system

机译:湿度对旋转电机绝缘系统介电响应的影响

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摘要

The study of dielectric response is a significant method to characterize the electrical properties of insulating materials and a useful tool for condition assessment of the insulation systems of rotating machines. Time and frequency domain measurements can be used to determine the dielectric response. Polarization and depolarization current measurements are usually used as a time domain measurement while in frequency domain the capacitance and dissipation factor of the samples can be measured over a broad range of frequencies. The dielectric response of machine insulation is affected by variety of parameters such as degree of aging, contamination and the environmental conditions such as temperature and humidity. In this work, time and frequency methods are used to determine the impact of humidity on the dielectric response of different insulation technologies used for stator insulation of large rotating machines. The measurements were conducted on bars and coils in laboratory conditions as a comparison base and then the dielectric response of the samples was monitored in an environmental chamber during two different humidification periods. The samples were selected to cover the most common materials and technologies used in operating rotating machines including aspha epoxy and polyester based insulating systems. The results showed considerable change in the dielectric response when the samples were exposed to moisture. Further studies demonstrated that the change in dielectric response is mostly attributable to the end-winding and stress-grading layer.
机译:介电响应的研究是表征绝缘材料电性能的重要方法,也是评估旋转机械绝缘系统状态的有用工具。时域和频域测量可用于确定介电响应。极化和去极化电流测量通常用作时域测量,而在频域中,可以在很宽的频率范围内测量样品的电容和耗散因数。机器绝缘的介电响应会受到各种参数的影响,例如老化程度,污染程度以及环境条件(例如温度和湿度)。在这项工作中,使用时间和频率方法来确定湿度对用于大型旋转电机定子绝缘的不同绝缘技术的介电响应的影响。在实验室条件下在条形和线圈上作为比较基准进行测量,然后在两个不同的加湿周期中,在环境室中监测样品的介电响应。选择的样本涵盖了操作旋转机械(包括沥青)中最常用的材料和技术;环氧树脂和聚酯基绝缘系统。结果表明,当样品暴露于湿气时,介电响应发生了显着变化。进一步的研究表明,介电响应的变化主要归因于端部绕组和应力梯度层。

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