Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7129894 | Optics & Laser Technology | 2016 | 5 Pages |
Abstract
A novel reflective liquid level sensor based on single-mode-offset coreless-single-mode (SOCS) fiber structure is proposed and experimentally demonstrated. Theory analyses and experimental results indicate that offset fusion can remarkably enhance the sensitivity of sensor. Ending-reflecting structure makes the sensor compact and easy to deploy. Meanwhile, we propose a laser sensing system, and the SOCS structure is used as sensing head and laser filter simultaneously. Experimental results show that laser spectra with high optical signal-to-noise ratio (â30Â dB) and narrow 3-dB bandwidth (<0.15Â nm) are achieved. Various liquids with different indices are used for liquid level sensing, besides, the refractive index sensitivity is also investigated. In measurement range, the sensing system presents steady laser output.
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Authors
Zixiao Wang, Zhongwei Tan, Rui Xing, Linjun Liang, Yanhui Qi, Shuisheng Jian,