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FBG-based Novel Sensor for High-temperature Measurement and Its Low-cost Interrogation

机译:基于FBG的新型高温测量传感器及其低成本查询

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A novel sensor for high-temperature measurement using Fiber Bragg grating (FBG) along with its low-cost interrogation system has been designed and tested. The sensor works based on measurement of the shift in Bragg wavelength that corresponds to the temperature induced strain by making use of a mechanical transducer. The transducing element provides temperature dependent strain on FBG by means of differential linear thermal expansion of two different materials, stainless steel and mild steel. The shift in Bragg wavelength of FBG due to this temperature induced strain is measured by using optical spectrum analyser (OSA). Further the bulk and expensive OSA is replaced by a low cost interrogation system that employed an LPG, a photodiode, a transimpedance amplifier, and a digital multimeter. The LPG converts wavelength information of FBG into its equivalent intensity modulated signal which is captured by a simple photodiode and then converted into voltage signal using the transimpedance amplifier. The designed sensor measures the temperature from 20°C to 1000°C with a resolution of 2°C.
机译:设计并测试了一种新型的用于使用光纤布拉格光栅(FBG)进行高温测量的传感器及其低成本的询问系统。该传感器的工作原理是通过使用机械传​​感器测量布拉格波长的位移,该位移对应于温度引起的应变。换能元件通过两种不同材料(不锈钢和低碳钢)的差分线性热膨胀,在FBG上提供与温度有关的应变。通过使用光谱分析仪(OSA)可以测量由于该温度引起的应变而导致的FBG布拉格波长的偏移。此外,笨重而昂贵的OSA被采用LPG,光电二极管,跨阻放大器和数字万用表的低成本查询系统所取代。 LPG将FBG的波长信息转换成它的等效强度调制信号,该信号由一个简单的光电二极管捕获,然后使用跨阻放大器转换成电压信号。设计的传感器可测量20°C至1000°C的温度,分辨率为2°C。

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