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Accuracy and calibration considerations for fiber optic temperature sensors

机译:光纤温度传感器的准确性和校准注意事项

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In the present work, the performance characteristics of a set of six fiber optic temperature sensors based on the fluorescence lifetime of neodymium-doped glass have been investigated. The experiment is aimed at verifying whether a satisfactory probe-to-probe repeatability and sensor accuracy can be obtained with minimum calibration effort. To accomplish this task the fiber-optic probes were calibrated, in the temperature range 0 degrees Celsius to 250 degrees Celsius, by comparison against a platinum resistance thermometer in a metal block furnace. The experimental set- up consisted of an electro-optical unit for fluorescence excitation and detection and an analog-to-digital signal processing circuit for lifetime measurements. The temperature probes were assembled by placing the Nd-doped glass at the distal end of a silica optical fiber and by splicing the other fiber end to a 1 by 2 wavelength- independent coupler. The calibration results and the temperature repeatability of the Nd:glass probes are reported. The reproducibility of the measurement method, with an optimum calibration function, and the resulting accuracy are discussed.
机译:在本作工作中,研究了基于掺杂钕玻璃荧光寿命的一组六个光学温度传感器的性能特征。实验旨在验证是否可以获得最小校准努力的令人满意的探针可重复性和传感器精度。为了完成该任务,通过在金属块炉中的铂电阻温度计进行比较,在0摄氏度至250摄氏度的温度范围内校准光纤探针。实验装置包括用于荧光激励和检测的电光单元和用于寿命测量的模数信号处理电路。通过将Nd掺杂的玻璃放置在二氧化硅光纤的远端并通过2波长独立的耦合器拼接到1来组装温度探针。报道了Nd:玻璃探针的校准结果和温度可重复性。讨论了测量方法的再现性,具有最佳校准函数和所得到的精度。

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