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Study on Sensitivity-adjustable Fiber Bragg Grating Obliquity Sensor |
SUN Wei,LIANG Da-kai,ZENG Jie,FENG Li-hang,YE Ting |
Ministry of Education Key laboratory of Vehicle Structure and Control, Nanjing University of Aeronautics and Astronautics, Nanjing, Jiangsu 210016, China |
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Abstract A new sensitivity-adjustable fiber Bragg grating (FBG) obliquity sensor based on the deformation theory of the constant-section beam is described. The obliquity sensor can achieve the measurement of object’s angle by the way that the FBG experiences the deformation of the constant-section beam due to the change of object’s angle,and corresponding FBG obliquity measuring system was set up. Experimental results show that the measuring range is ±35°,the highest sensitivity is 56.93pm/(°),the measurement accuracy is 0.02°,and the sensor sensitivity can be adjusted by altering the size of the constant-section beam.
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Sasaki E,Tanahashi R,Ishikawa Y. Development of Fiber Optic Inclinometers for Bridge Monitoring[J]. Engineering Asset Management,2006,17 (2): 221-228.
[2]Kojima T,Wakiwaka H. Study on High-Precision Angle Sensor and Angle Measurement Technology[J].Electrical Engineering, 2008,162(3): 67-77.
[3]邓宏贵 ,吴让亮,施佳佳.数字角度传感器在建筑角度测量仪中的应用[J].传感技术学报,2010,23(8):1206-1210.
[4]张维胜.倾角传感器原理和发展[J].传感器世界,2002,8(8):18-21.
[5]吴建平.传感器原理及应用[M].北京:机械工业出版社,2009,112-133.
[6]钱云江,王义平,朱涛.光纤光栅原理及应用[M].北京:科学出版社,2006, 98-127.
[7]张迎新,刘京南,内田敬久,等.差动光栅式精密定位精度的提高[J].计量学报,2006,27(1):7-11.
[8]Schuyler J N,Gularte F.Automated Tiltmeter Monitoring of Bridge Response to Compaction Grouting[J].The International Society for Optical Engineering,2000,3995:128-135.
[9]朱丹丹,李伟欣,李志全,等.分布式光栅应变和温度同时测量系统[J].计量学报,2008,29(1):29-32. |
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