Phase-shifted helical long-period grating-based temperatureinsensitive optical fiber twist sensors

Ran Gao, Yinian Zhu, Sridhar Krishnaswamy, Yi Jiang

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摘要

In smart structure monitoring, twist angle is one of the most critical mechanical parameters for infrastructure deterioration. A compact temperature-insensitive optical fiber twist sensor based on multi-phase-shifted helical long period fiber grating has been proposed and experimentally demonstrated in this paper. A multi-phase-shifted helical long period fiber grating is fabricated with a multi-period rotation technology. A π / 2 and a 3π / 2 phase shift is introduced in the helical long period fiber grating by changing the period. The helical pitch can be effectively changed with a different twist rate, which is measured by calculating the wavelength difference between two phase shift peaks. Although the wavelength of the phase shift peak also shifts with a change of the temperature, the wavelength difference between two phase shift peaks is constant due to two fixed phase shifts in the helical long period fiber grating, which is extremely insensitive to temperature change for the multi-phase-shifted helical long period fiber grating. The experimental results show that a sensitivity of up to 1.959 nm/(rad/m) is achieved.

源语言英语
主期刊名Health Monitoring of Structural and Biological Systems 2015
编辑Tribikram Kundu
出版商SPIE
ISBN(电子版)9781628415414
DOI
出版状态已出版 - 2015
活动Health Monitoring of Structural and Biological Systems 2015 - San Diego, 美国
期限: 9 3月 201512 3月 2015

出版系列

姓名Proceedings of SPIE - The International Society for Optical Engineering
9438
ISSN(印刷版)0277-786X
ISSN(电子版)1996-756X

会议

会议Health Monitoring of Structural and Biological Systems 2015
国家/地区美国
San Diego
时期9/03/1512/03/15

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引用此

Gao, R., Zhu, Y., Krishnaswamy, S., & Jiang, Y. (2015). Phase-shifted helical long-period grating-based temperatureinsensitive optical fiber twist sensors. 在 T. Kundu (编辑), Health Monitoring of Structural and Biological Systems 2015 文章 94381D (Proceedings of SPIE - The International Society for Optical Engineering; 卷 9438). SPIE. https://doi.org/10.1117/12.2084306