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基于双偏振马赫-曾德尔干涉的光纤内扭转传感器。

In-fiber torsion sensor based on dual polarized Mach-Zehnder interference.

作者信息

Chen Lei, Zhang Wei-Gang, Wang Li, Zhang Hao, Sieg Jonathan, Zhou Quan, Zhang Li-Yu, Wang Biao, Yan Tie-Yi

出版信息

Opt Express. 2014 Dec 29;22(26):31654-64. doi: 10.1364/OE.22.031654.

Abstract

This paper presents a novel optical fiber torsion sensor based on dual polarized Mach-Zehnder interference (DPMZI). Unlike the conventional fiber sensor, the proposed sensor is composed of a sensor part and a demodulator. The demodulator is made by a bared single mode fiber (SMF) loop, and the sensor part is a segment of a coated SMF placed before the loop. A mathematical model is proposed based on DPMZI mechanism and from the model when the sensor part is twisted, the E-field rotational angle will bring a quasi-linear impact on the resonance dip wavelength in their matched detecting range. A proof-of-concept experiment was performed to verify the theoretical prediction. From the experimental data, a sensitivity of -0.3703, -1.00962, and -0.59881 nm•m/rad is achieved with the determining range of 12.0936, 7.6959, and 10.4444 rad/m respectively. The sensor which is composed only of the SMF has the advantages of low insertion loss (~-2dB), healthy structure, low manufacture cost, and easy assembly and application.

摘要

本文提出了一种基于双偏振马赫-曾德尔干涉(DPMZI)的新型光纤扭转传感器。与传统光纤传感器不同,该传感器由传感器部分和解调器组成。解调器由裸单模光纤(SMF)环制成,传感器部分是置于该环之前的一段涂覆单模光纤。基于DPMZI机制提出了一个数学模型,从该模型可知,当传感器部分发生扭转时,电场旋转角度将在其匹配检测范围内对共振凹陷波长产生准线性影响。进行了概念验证实验以验证理论预测。从实验数据可知,在分别为12.0936、7.6959和10.4444 rad/m的测定范围内,灵敏度分别达到-0.3703、-1.00962和-0.59881 nm•m/rad。该仅由单模光纤组成的传感器具有插入损耗低(约-2dB)、结构稳健、制造成本低以及易于组装和应用等优点。

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