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Research on high temperature sensing characteristics based on modular interference of Single-Mode-Multimode-Single-Mode fiber

机译:基于单模-多模-单模光纤模块化干涉的高温传感特性研究

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Application of high temperature fiber sensing system is very extensive. It can be mainly used in high temperature test aerospace, such as, materials, chemicals, and energy. In recent years, various on-line optical fiber interferometric sensors based on modular interference of single-mode-multimode-single-mode(SMS) fiber have been largely explored in high temperature fiber sensor. In this paper we use the special fiber of a polyimide coating, its sensor head is composed of a section of multimode fiber spliced in the middle of Single-mode fiber. When the light is launched into the multimode fiber(MMF) through the lead-in single-mode fiber(SMF), the core mode and cladding modes are excited and propagate in the MMF respectively. Then, at the MMF-SMF spliced point, the excited cladding modes coupled back into the core of lead-out SMF interfere with SMF core mode. And the wavelength of the interference dip would shift differently with the variation of the temperature. By this mean, we can achieve the measurement of temperature. The experimental results also show that the fiber sensor based on SMS structure has a highly temperature sensitivity. From 30℃ to 300℃, with the temperature increasing, the interference dip slightly shifts toward longer wavelength and the temperature sensitivity coefficient is 0.0115nm/℃. With high sensitivity, simple structure, immunity to electromagnetic interferences and a good linearity of the experimental results, the structure has an excellent application prospect in engineering field.
机译:高温光纤传感系统的应用非常广泛。它可以主要用于高温测试航空航天,例如材料,化学药品和能源。近年来,基于单模-多模-单模(SMS)光纤的模块化干涉的各种在线光纤干涉传感器已经在高温光纤传感器中得到了广泛的探索。在本文中,我们使用一种特殊的聚酰亚胺涂层光纤,其传感头是由一段多模光纤拼接而成的,该段多模光纤拼接在单模光纤的中间。当光通过引入的单模光纤(SMF)射入多模光纤(MMF)时,纤芯模和包层模分别被激发并在MMF中传播。然后,在MMF-SMF拼接点,耦合回引出SMF核心的激发包层模式会干扰SMF核心模式。并且,随着温度的变化,干扰谷的波长将不同地移动。通过这种方式,我们可以实现温度的测量。实验结果还表明,基于SMS结构的光纤传感器具有很高的温度敏感性。从30℃到300℃,随着温度的升高,干扰谷向较长的波长略微偏移,温度灵敏度系数为0.0115nm /℃。该结构灵敏度高,结构简单,抗电磁干扰能力强,实验结果线性好,在工程领域具有广阔的应用前景。

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