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Model Study of the Influence of Ambient Temperature and Installation Types on Surface Temperature Measurement by Using a Fiber Bragg Grating Sensor

机译:光纤光栅传感器对环境温度和安装类型对表面温度测量影响的模型研究

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摘要

Surface temperature is an important parameter in clinical diagnosis, equipment state control, and environmental monitoring fields. The Fiber Bragg Grating (FBG) temperature sensor possesses numerous significant advantages over conventional electrical sensors, thus it is an ideal choice to achieve high-accuracy surface temperature measurements. However, the effects of the ambient temperature and installation types on the measurement of surface temperature are often overlooked. A theoretical analysis is implemented and a thermal transfer model of a surface FBG sensor is established. The theoretical and simulated analysis shows that both substrate strain and the temperature difference between the fiber core and hot surface are the most important factors which affect measurement accuracy. A surface-type temperature standard setup is proposed to study the measurement error of the FBG temperature sensor. Experimental results show that there are two effects influencing measurement results. One is the “gradient effect”. This results in a positive linear error with increasing surface temperature. Another is the “substrate effect”. This results in a negative non-linear error with increasing surface temperature. The measurement error of the FBG sensor with single-ended fixation are determined by the gradient effect and is a linear error. It is not influenced by substrate expansion. Thus, it can be compensated easily. The measurement errors of the FBG sensor with double-ended fixation are determined by the two effects and the substrate effect is dominant. The measurement error change trend of the FBG sensor with fully-adhered fixation is similar to that with double-ended fixation. The adhesive layer can reduce the two effects and measurement error. The fully-adhered fixation has lower error, however, it is easily affected by substrate strain. Due to its linear error and strain-resistant characteristics, the single-ended fixation will play an important role in the FBG sensor encapsulation design field in the near future.
机译:表面温度是临床诊断,设备状态控制和环境监测领域中的重要参数。光纤布拉格光栅(FBG)温度传感器比传统的电传感器具有许多显着优势,因此,它是实现高精度表面温度测量的理想选择。但是,环境温度和安装类型对表面温度测量的影响通常被忽略。进行了理论分析,建立了表面FBG传感器的热传递模型。理论和模拟分析表明,基片应变和纤维芯与热表面之间的温差是影响测量精度的最重要因素。为了研究FBG温度传感器的测量误差,提出了一种表面型温度标准装置。实验结果表明,有两种影响测量结果的因素。一种是“梯度效应”。随着表面温度的升高,这会导致正线性误差。另一个是“底物效应”。随着表面温度的升高,这将导致负的非线性误差。具有单端固定功能的FBG传感器的测量误差由梯度效应确定,是线性误差。它不受基材膨胀的影响。因此,可以容易地对其进行补偿。双端固定的FBG传感器的测量误差由这两种效应决定,并且基质效应占主导。完全粘合固定的FBG传感器的测量误差变化趋势与双端固定的相似。粘合剂层可以减少这两种影响和测量误差。完全粘附的固定具有较低的误差,但是,很容易受到基板应变的影响。由于其线性误差和抗应变特性,单端固定将在不久的将来在FBG传感器封装设计领域中发挥重要作用。

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