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Fibre optic long period grating-based humidity sensor probe using a Michelson interferometric arrangement

机译:使用迈克尔逊干涉仪的光纤长周期基于光栅的湿度传感器探头

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Long period gratings (LPG)-based sensors are widely used due to their high sensitivity to a range of suitable measurands. However, a typical configuration involving a single grating-based LPG sensor sys tem frequently has the disadvantage of the probe being used in transmission mode. Further, the broad bandwidth of the attenuation bands formed by the propagation mode coupling between the core and the cladding modes constitutes a difficulty when the device is used as a conventional sensor probe. To overcome these limitations, a Michelson interferometer-type sensor configuration has been developed, using a LPG grating pair formed by coating a mirror at the distal end of the LPG. This sensor configuration is more convenient to use and is able to overcome the limitations of the single LPG sensor due to the shifts in the attenuation bands being more easily detectable. As part of work to develop an optimum configuration for the probe, a series of tests has been carried out to determine the most suitable distance between the LPG and the mirror coating for a typical grating (LPG) of period 250 μm. The sensor thus developed was then calibrated for use for temperature and refractive index measurement. In this paper, the design of a LPG coated with polyvinyl alcohol (PVA) as a relative humidity (RH) sensor and used in the Michelson interferometer configuration is reported. PVA, which swells with the increase of RH in its surroundings, causes a change in the refractive index of the coated polymer layer which was observed by tracking the response of the resonance loss band of the LPG to varying RH levels. The distal end of the fibre containing the LPG has been coated with a silver mirror in order to track the shift of the resonance loss band in reflection and to achieve a high resolution. The sensor was evaluated by being subjected to humidity changes over a RH range from 20% to 85% and an excellent detection performance was obtained while retaining the sensitivity of the PVA coated sensor.
机译:基于长周期光栅(LPG)的传感器由于对一系列合适的被测物具有很高的灵敏度而被广泛使用。然而,涉及基于单个光栅的LPG传感器系统的典型配置通常具有在传输模式下使用探头的缺点。此外,当将该装置用作常规传感器探头时,由纤芯和包层模式之间的传播模式耦合形成的衰减带的宽带宽构成了困难。为了克服这些限制,已经开发了迈克尔逊干涉仪型传感器配置,其使用通过在LPG的远端涂覆反射镜而形成的LPG光栅对。这种传感器配置使用起来更加方便,并且由于可以更容易检测到衰减带的偏移,因此可以克服单个LPG传感器的局限性。作为为探头开发最佳配置的工作的一部分,已进行了一系列测试,以确定对于周期为250μm的典型光栅(LPG),LPG和镜面涂层之间的最合适距离。然后对由此开发的传感器进行校准,以用于温度和折射率测量。在本文中,已报道了一种涂有聚乙烯醇(PVA)作为相对湿度(RH)传感器并用于迈克尔逊干涉仪配置的LPG的设计。随着周围环境中RH的增加而膨胀的PVA引起涂覆的聚合物层折射率的变化,这是通过跟踪LPG的共振损耗带对变化的RH水平的响应而观察到的。包含LPG的光纤的远端已涂有银镜,以便跟踪反射中共振损耗带的移动并实现高分辨率。通过在20%至85%的RH范围内进行湿度变化来评估传感器,并在保持PVA涂层传感器的灵敏度的同时获得了出色的检测性能。

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