A temperature compensated fibre Bragg grating (FBG)-based sensor system for condition monitoring of electrified railway pantograph

Ye Chen, M. Vidakovic, M. Fabian, M. Swift, L. Brun, T. Sun, K. Grattan
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引用次数: 6

Abstract

This paper presents the results obtained from fibre Bragg grating (FBG) sensors integrated into a railway current-collecting pantograph for accurate measurement of contact force and contact location when it is subjected to various temperature conditions. The temperature change of the pantograph is simulated, at the industrial laboratory of Brecknell Willis in the UK, by changing the DC current applied to pantograph from 0 to 1500 A. This test is primarily designed to verify the effectiveness of the temperature compensation mechanism built in the FBG sensor design. For this verification, 3 thermocouples co-located with the FBG sensor packages are used to measure the temperature change seen from 25 °C to 55 °C. The tests were repeated several times and the sensor system has shown its temperature-independence, confirming that the intrinsic cross-sensitivity of FBGs to temperature variation for strain measurement has been fully compensated through the use of this innovative sensor design and data processing.
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基于温度补偿光纤光栅的电气化铁路受电弓状态监测传感器系统
本文介绍了将光纤布拉格光栅(FBG)传感器集成到铁路集流受电弓中,用于在各种温度条件下精确测量接触力和接触位置的结果。在英国的brrecknell Willis工业实验室,通过改变施加在受电弓上的直流电流从0到1500 A,模拟了受电弓的温度变化。该测试主要是为了验证FBG传感器设计中内置的温度补偿机制的有效性。为了进行验证,使用3个热电偶与FBG传感器封装一起测量从25°C到55°C的温度变化。测试重复了几次,传感器系统显示出温度无关性,证实了fbg对应变测量温度变化的固有交叉灵敏度已经通过使用这种创新的传感器设计和数据处理得到了充分补偿。
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