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Analysis and Application on Characteristic of Twisted High Birefringence Fiber Grating |
CAI Lu-lu1,2,3,WAN Yu-liang2,3,WU-Fei1,2 |
1.College of Electrical and Information Engineering, Quzhou University, Quzhou, Zhejiang 324000, China
2.School of Electrical Engineering, Yanshan University, Qinhuangdao, Hebei 066004, China
3. Key Laboratory of Measurement Technology and Instrumentation of Hebei Province,Yanshan University, Qinhuangdao, Hebei 066004, China |
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Abstract Through analysis on the characteristic of twisted high birefringence fiber grating, a novel torsion sensor which can be embeded in the engineering material is proposed. Based on the coupled mode theory and thecharacteristic of twisted high birefringence fiber, the mathematical model of twisted high birefringence fiber grating transmission light is established and the spectral characteristics is analyzed, the simulation results show that the reflective spectra of twisted high birefringence fiber grating does not have the direction, and is only related to the torsion angle size.When the twist angle changes from 0 to 360°, the two peak wavelength of high birefringence fiber grating are resulting in drift, light of x direction moved to the short wavelength direction, light of y direction moved towards long wavelength, and the reflection spectrum peak decreases gradually, through combining the prior to the coupled mode theory with the reverse coupled mode theory, analyzing and simulating,the conclusion that x and y directions wave peak variation are drew, and the center wavelength changes corresponding amount, finally make a validated through experimental data of the relationship between changes of parameters of high birefringence fiber grating and torsional angle.
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Received: 18 September 2014
Published: 31 May 2016
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[1]Sackfield A, Barber J R, Hills D A. A Shrink-fit Shaft Subject to Totsion[J]. European Journal of Mechanics A/Solids, 2002, 21(10):73-84.
[2]宋春华, 徐光卫. 扭矩传感器的发展研究综述[J]. 微特电机, 2012, 40(11):58-60.
[3]江华. 基于光纤光栅传感的钻杆扭矩测量技术研究[D]. 合肥:合肥工业大学, 2014.
[4]张晓丽, 梁大开, 曾捷, 等. 结构健康监测的光纤Bragg光栅传感器网络自修复实现[J]. 计量学报, 2012, 33(6):499-504.
[5]张伟刚, 赵启大, 开桂云, 等. 新型光纤光栅扭转传感器研究[J]. 光子学报, 2001, 30(10):1237-1239.
[6]张伟刚, 袁树忠, 许兆文, 等.新型双向可调光纤扭转传感器的设计与实现[J]. 中国激光, 2002, 29(9):808-812.
[7]Lo Y L, Chue B R, Xu S H. Fiber torsion sensor demodulated by a high-birefringence fiber bragg grating[J]. Optics Communications, 2004,230(4):287-295.
[8]吴飞. 基于光纤光栅的多力参数测量及信号分析技术的研究[D]. 秦皇岛:燕山大学, 2007.
[9]杨红艳. 光纤光栅横向受力和扭转特性的研究[D]. 秦皇岛:燕山大学, 2006.
[10]吴飞, 杨红艳, 李志全, 等. 高双折射光纤光栅扭转传感器的设计[J]. 仪器仪表学报, 2006, 27(6):1590-1591.
[11]郭青, 钱景仁. 扭转高双折射光纤扭转比的测量及光轴的确定[J].中国科学技术大学学报, 1991, 21(1):428-432. |
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