Design and Analysis of Data Processing Algorithm for Fluorescent Optical Fiber Temperature Sensor

Jian Yang, Xiangliang Jin
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Abstract

In the field of medical microwave hyperthermia, if the detection of the heating temperature is inaccurate, it will seriously endanger the health of patients. However, the active temperature sensor is severely affected by external electromagnetic interference, and the temperature measurement accuracy cannot reach the desired effect. Therefore, the fluorescent optical fiber temperature sensor has been widely used in the above mentioned complicated fields due to its insulation characteristics. In order to further improve the detection accuracy of the fluorescent fiber temperature sensor, the algorithm for extracting the fluorescence lifetime is a key part of the system to improve the accuracy. In this paper, the accuracy of the fluorescence lifetime extracted by the integral area ratio algorithm, FFT algorithm, and least squares fitting algorithm is verified by simulation and experiments. According to the simulation results, the FFT algorithm and the integral area ratio algorithm are completely unaffected by the DC bias of the system, and the least squares fitting algorithm is more sensitive to the DC bias of the system. Compared with the integral area ratio algorithm and the least squares fitting algorithm, the absolute errors of the fluorescence lifetime extracted by the FFT algorithm are reduced by 31% and 45%, respectively. In addition, the running time of the three data processing algorithms was also tested. The test results show that the processing time of the integral area ratio algorithm is reduced by about 99.55% and 93% respectively compared with the least squares fitting algorithm and the FFT algorithm. In summary, the simulation and experimental test results in this paper can provide an important reference for the data processing implementation of fluorescent optical fiber temperature sensors.
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荧光光纤温度传感器数据处理算法的设计与分析
在医用微波热疗领域,如果对加热温度的检测不准确,将严重危害患者的健康。但有源温度传感器受外界电磁干扰影响严重,测温精度达不到预期效果。因此,荧光光纤温度传感器由于其绝缘特性在上述复杂领域得到了广泛的应用。为了进一步提高荧光光纤温度传感器的检测精度,荧光寿命提取算法是提高检测精度的关键部分。本文通过仿真和实验验证了积分面积比算法、FFT算法和最小二乘拟合算法提取荧光寿命的准确性。仿真结果表明,FFT算法和积分面积比算法完全不受系统直流偏置的影响,最小二乘拟合算法对系统直流偏置更为敏感。与积分面积比算法和最小二乘拟合算法相比,FFT算法提取的荧光寿命的绝对误差分别降低了31%和45%。此外,还测试了三种数据处理算法的运行时间。实验结果表明,与最小二乘拟合算法和FFT算法相比,积分面积比算法的处理时间分别缩短了99.55%和93%左右。综上所述,本文的仿真和实验测试结果可为荧光光纤温度传感器的数据处理实现提供重要参考。
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