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The use of an improved technique to reduce the variability of output voltage in real-time Fibre Bragg Grating based monitoring system

机译:使用改进的技术来降低基于实时光纤布拉格光栅的输出电压的变化

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Fibre Bragg Grating (FBG) sensors have been widely utilized in the structural health monitoring (SHM) of structures. However, one of the main challenges of FBGs is the existence of inconsistency in output voltage during wavelength intensity demodulation utilizing photodetector (PD) to convert the light signal into digital voltage readings. Thus, the designation of this experimental work is to develop a robust FBG real-time monitoring system with the benefit of MATLAB graphical user interface (GUI) and voltage normalization algorithm to scale down the voltage inconsistency. Low-cost edge filter interrogation system has been practiced in the experimentation and splitter optical component is make use to reduce the intensity of the high power light source that leads to the formation of noise due to unwanted reflected wavelengths. The results revealed that with the advancement of the proposed monitoring system, the sensitivity of the FBG has been increased from 2.4 mV/N to 3.8 mV/N across the range of 50 N. The redundancy in output voltage variation data points has been reduced from 26 data/minute to 17 data/minute. The accuracy of the FBG in detecting the load induced falls in the acceptable range of total average error which is 1.38 %.
机译:光纤布拉格光栅(FBG)传感器已广泛用于结构的结构健康监测(SHM)。然而,FBGS的主要挑战之一是利用光电探测器(PD)将光信号转换为数字电压读数的波长强度解调期间输出电压不一致。因此,该实验工作的指定是开发一种强大的FBG实时监控系统,其利于MATLAB图形用户界面(GUI)和电压归一化算法来缩小电压不一致。在实验和分离器光学部件中已经实施了低成本边缘过滤器询问系统,用于降低由于不需要的反射波长导致噪声形成的高功率光源的强度。结果表明,随着所提出的监测系统的进步,FBG的敏感性在50 n的范围内从2.4 mV / n增加到3.8 mV / n。输出电压变化数据点的冗余已经减少26个数据/分钟到17个数据/分钟。在检测载荷诱导的中FBG的准确性落入可接受的总平均误差范围,这是1.38%。

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