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The Reusable Load Cell with Protection Applied for Online Monitoring of Overhead Transmission Lines Based on Fiber Bragg Grating

机译:带保护的可重复使用的称重传感器用于基于光纤布拉格光栅的架空输电线路在线监测

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摘要

Heavy ice coating of high–voltage overhead transmission lines may lead to conductor breakage and tower collapse causing the unexpected interrupt of power supply. The optical load cell applied in ice monitoring systems is immune to electromagnetic interference and has no need of a power supply on site. Therefore, it has become a hot research topic in China and other countries. In this paper, to solve the problem of eccentric load in measurement, we adopt the shearing structure with additional grooves to improve the strain distribution and acquire good repeatability. Then, the fiber Bragg grating (FBG) with a permanent weldable package are mounted onto the front/rear groove of the elastic element by spot welding, the direction deviation of FBGs is 90° from each other to achieve temperature compensation without an extra FBG. After that, protection parts are designed to guarantee high sensitivity for a light load condition and industrial safety under a heavy load up to 65 kN. The results of tension experiments indicate that the sensitivity and resolution of the load cell is 0.1285 pm/N and 7.782 N in the conventional measuring range (0–10 kN). Heavy load tension experiments prove that the protection structure works and the sensitivity and resolution are not changed after several high load (65 kN) cycles. In addition, the experiment shows that the resolution of the sensor is 87.79 N in the large load range, allowing the parameter to be used in heavy icing monitoring.
机译:高压架空输电线路的大量冰层可能会导致导体断裂和铁塔坍塌,从而导致电源意外中断。冰监测系统中使用的光学称重传感器不受电磁干扰的影响,并且无需现场供电。因此,它已成为中国和其他国家的研究热点。为了解决测量中的偏心载荷问题,我们采用了带有附加凹槽的剪切结构,以改善应变分布并获得良好的可重复性。然后,通过点焊将具有永久可焊接封装的光纤布拉格光栅(FBG)安装到弹性元件的前后凹槽中,FBG的方向偏差彼此成90°,从而无需额外的FBG即可实现温度补偿。之后,设计保护部件以确保在轻载条件下的高灵敏度以及在高达65 kN的重载下的工业安全性。拉伸实验的结果表明,在常规测量范围(0-10 kN)下,称重传感器的灵敏度和分辨率为0.1285 pm / N和7.782N。重载拉力实验证明,经过几次高负载(65 kN)循环后,保护结构可以正常工作,并且灵敏度和分辨率不变。此外,实验表明,在大负载范围内,传感器的分辨率为87.79 N,从而该参数可用于重覆冰监测。

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