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Design and demonstration of a liquid level fiber sensor based on self-imaging effect

机译:基于自成像效应的液位光纤传感器的设计与演示

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A novel liquid level fiber sensor based on self-imaging properties of the multimode interference (MMI) in no core fiber (NCF) is proposed and demonstrated. Based on the beam propagation method (BPM) simulation, a NCF of optimal length is selected to act as a sensing head and tunable filter in a ring cavity fiber laser. For high liquid level sensing, a height conversion setup based on atmospheric pressure balance principle is designed and the sensitivity is magnified 5 times. A 50 cm range of liquid level can be detected by monitoring the peak wavelength shift of output laser. The sensor exhibits an excellent linear response (R-2 = 0.9999) and a sensitive response to different liquid refractive index (RI). The sensitivity of the single mode-no core- single mode (SNS) sensor is 108.8 pm/mm and the accuracy is about 1% at the resolution of 0.1 nm of detection using an OSA with the liquid RI of 1.4152, which is the highest accuracy for a 50 cm liquid level range to our best knowledge. (C) 2015 Elsevier B.V. All rights reserved.
机译:提出并展示了一种基于无芯光纤(NCF)中多模干涉(MMI)自成像特性的新型液位光纤传感器。基于光束传播方法(BPM)仿真,选择最佳长度的NCF作为环形腔光纤激光器中的传感头和可调滤波器。对于高液位传感,设计了基于大气压力平衡原理的高度转换设置,并且灵敏度被放大了5倍。通过监视输出激光的峰值波长偏移,可以检测到50 cm的液位范围。该传感器具有出色的线性响应(R-2 = 0.9999)和对不同液体折射率(RI)的敏感响应。单模无芯单模(SNS)传感器的灵敏度为108.8 pm / mm,在使用液体RI为1.4152的OSA时,在0.1 nm的检测分辨率下,精度约为1%据我们所知,对于50厘米液位范围的精度。 (C)2015 Elsevier B.V.保留所有权利。

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