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Monitoring on internal temperature of composite insulator with embedding fiber Bragg grating for early diagnosis

机译:嵌入光纤布拉格光栅监测复合绝缘子的内部温度,以进行早期诊断

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The abnormal temperature rise is the precursor of the defective composite insulator in power transmission line. However no consolidated techniques or methodologies can on line monitor its internal temperature now. Thus a new method using embedding fiber Bragg grating (FBG) in fiber reinforced polymer (FRP) rod is adopted to monitor its internal temperature. To correctly demodulate the internal temperature of FRP rod from the Bragg wavelength shift of FBG, the conversion coefficient between them is deduced theoretically based on comprehensive investigation on the thermal stresses of the metal-composite joint, as well as its material and structural properties. Theoretical model shows that the conversion coefficients of FBG embedded in different positions will be different because of non-uniform thermal stress distribution, which is verified by an experiment. This work lays the theoretical foundation of monitoring the internal temperature of composite insulator with embedding FBG, which is of great importance to its health structural monitoring, especially early diagnosis.
机译:异常的温度升高是输电线路中有缺陷的复合绝缘子的先兆。但是,现在没有任何整合的技术或方法可以在线监控其内部温度。因此,采用了一种在光纤增强聚合物棒中嵌入光纤布拉格光栅(FBG)的新方法来监测其内部温度。为了从FBG的布拉格波长偏移正确地预测FRP杆的内部温度,在全面研究金属复合材料接头的热应力及其材料和结构特性的基础上,从理论上推导了它们之间的转换系数。理论模型表明,由于热应力分布不均匀,嵌入在不同位置的FBG的转换系数会有所不同,这一点已通过实验验证。这项工作为埋入FBG监测复合绝缘子的内部温度奠定了理论基础,这对于其健康结构监测,尤其是早期诊断具有重要意义。

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