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The online monitoring system of transmission lines weight based on fiber sensing technology

机译:基于光纤传感技术的传输线重量在线监测系统

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The online monitoring of ice load of transmission lines, which reflects the dynamic load of line, can alert the early stage ice in advance and guarantee the safety of power supply. However, the fiber sensors, which were used in ice online monitoring of overhead transmission lines, usually had low sensitivity and bad repeatability. And the capacity of sensor network was limited and it was difficult to provide hundreds of FBGs for optical sensing of overhead transmission lines in kilometers. In this paper, we proposed a novel load cell based on Fiber Bragg Grating (FBG) and presented the idea for high-capacity sensing network. Firstly, we adopted shearing structure with additional protection parts to reduce the influence of eccentric force. Then the FBG gauges were welded on the elastic element to avoid glue aging problem. After that, the FBGs were mounted at the front/rear slot with the direction deviation of 90° from the each other to eliminate the temperature effect in strain detection, and the extra FBG which usually used for temperature compensation is not necessary. The results of tension experiment indicate that the tension sensitivity and resolution of the load cell is 0.1285 pm/N and 7.78 N. Moreover, the expanded sensing network proposed can export consecutive modulating pulse as incoming signal for FBG sensors to detect the strain change result transmission line load.
机译:在线监测输电线路的冰负荷,这反映了线的动态负荷,可以提前提醒早期冰并保证电源的安全性。然而,用于冰在线监测的光纤传感器通常具有低灵敏度和可重复性不良。传感器网络的容量有限,很难为数百个FBG提供用于在公里处的顶置传输线的光学传感。在本文中,我们提出了一种基于光纤布拉格光栅(FBG)的新型负载电池,并提出了高容量传感网络的想法。首先,我们采用剪切结构具有额外的保护部件,以减少偏心力的影响。然后将FBG仪表焊接在弹性元件上以避免胶水老化问题。之后,将FBG安装在前/后槽处,从彼此偏离90°的方向偏差,以消除应变检测中的温度效应,并且不需要额外用于温度补偿的额外FBG。张力实验结果表明,负载电池的张力敏感性和分辨率为0.1285 pm / n和7.78 n。此外,所提出的扩展传感网络可以将连续调制脉冲导出为FBG传感器的输入信号,以检测应变变化结果传输线路负载。

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