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A Feasibility Study of Transformer Winding Temperature and Strain Detection Based on Distributed Optical Fibre Sensors

机译:基于分布式光纤传感器的变压器绕组温度和应变检测的可行性研究

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摘要

The temperature distribution and deformation of the transformer windings cannot be measured in a distributed manner by the traditional method and failure location cannot be performed. To solve these problems, we present a transformer winding temperature and strain based on a distributed optical fibre sensing detection method. The design of the optical fibre winding composite model is developed and simulated winding temperature rise test and local deformation test distinguish between measuring the winding temperature and the strain curve. The test results show that the distributed optical fibre can transmit wire strain efficiently. Optical fibres, in the process of winding, have a certain pre-stress. Using the Brillouin–Raman joint measuring method, one can effectively extract the optical fibre temperature and strain information and measure the length of the winding direction of the temperature and strain distribution curve to a temperature measurement precision of ±2 °C and strain detection accuracy of ±50 με. The system can carry out local hot spot and deformation localisation, providing new ideas for the transformer winding state monitoring technology.
机译:传统方法无法以分布式方式测量变压器绕组的温度分布和变形,并且无法执行故障定位。为了解决这些问题,我们提出了一种基于分布式光纤传感检测方法的变压器绕组温度和应变。开发了光纤绕组复合模型的设计,并通过模拟绕组温升测试和局部变形测试来区分测量绕组温度和应变曲线。测试结果表明,分布式光纤可以有效地传输线应变。光纤在缠绕过程中具有一定的预应力。使用布里渊-拉曼联合测量方法,可以有效地提取光纤温度和应变信息,并测量温度和应变分布曲线的缠绕方向的长度,从而达到±2°C的温度测量精度和±50με。该系统可以进行局部热点和变形局部化,为变压器绕组状态监测技术提供了新思路。

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