锥形光纤在基于强度的单模温度传感器中的应用

M. Barbu, K. Jovanovich, R. Trahan, P. Chirlian
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引用次数: 2

摘要

本文对用于监测温度变化的单模光纤传感器进行了建模、制作和评价。采用双锥型单模光纤研制了光纤传感器。锥形纤维安装在聚合物棒内切割的槽中,并在棒的边缘处直夹紧。根据传感器的期望范围,通过在参考温度下加热传感器来激活传感器。诱导弯曲是由聚合物棒的膨胀或收缩产生的效应。激活温度和锥度尺寸对所设计传感器的性能起着关键作用。对于相同的锥度长度,较大的活化温度决定了锥度的总损耗较高。此外,在相同的温度范围内,在相同的活化温度下,锥度长度的减小将导致锥度总损失的增加。实验和仿真结果表明,所设计的传感器的制作具有良好的一致性。所设计的光纤传感器具有重复性好、动态范围宽、重量轻、体积小、成本低等特点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The use of tapered fibers in an intensity based single mode temperature sensor
In this paper a single mode fiber optic sensor for monitoring temperature changes has been modeled, built and evaluated. The fiber optic sensor has been developed using a biconically tapered single-mode optical fiber. The tapered fiber is mounted in a groove cut within a polymer rod and straight clamped at the rod edges. The sensor is activated by heating it at a reference temperature according to the desired range of the sensor. The induced bending is the effect produced by expansion or contraction of the polymer rod. The activation temperature and the taper dimensions play a key role in the performance of the designed sensor. For the same taper length, a larger activation temperature determines a higher total loss in the taper. Additionally, a decrease in the taper length over the same temperature range with the same activation temperature will establish an increase in the total loss of the taper. The experimental and simulated results showed a good consistency in the fabrication of the designed sensors. The main features of the designed fiber optic sensor are good repeatability, wide dynamic range, low weight, small size and low cost.
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