Volume 43 Issue 12
Jan.  2015
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Han Zhengying, Gao Han, Gao Yesheng, Zhao Yao. Effect of strain distribution measurement of fiber coil on FOG performance[J]. Infrared and Laser Engineering, 2014, 43(12): 4128-4132.
Citation: Han Zhengying, Gao Han, Gao Yesheng, Zhao Yao. Effect of strain distribution measurement of fiber coil on FOG performance[J]. Infrared and Laser Engineering, 2014, 43(12): 4128-4132.

Effect of strain distribution measurement of fiber coil on FOG performance

  • Received Date: 2014-04-07
  • Rev Recd Date: 2014-05-18
  • Publish Date: 2014-12-25
  • In order to improve the performance of the FOG, the suitable fiber coil were chosen through the fiber coil strain distribution measurement. In this article, the impact of fiber coil non-reciprocal on the gyro output which generated by strain were studied. Based on the analysis, the strain of fiber coil was tested and the appropriate samples for FOG were selected using the fiber strain analyzer to assemble and install the selected fiber coil for bias experiment. The results show that, strain tests are effectively carried out and the appropriate samples were selected using the strain analyzer. Performance of FOG has been significantly improved with the measurement and select of fiber coil strain distribution, bias stability over the full temperature range is up to 0.08 ()/h, which has important guiding significance for the development of high precision FOG.
  • [1] Yang Yuanhong, Yi Xiaosu, Meng Zhaokui, et al. Experimental study on strain distribution in fiber coil used in fiber optic gyroscope [J]. Piezoelectric Acousto-optics, 2005, 27(2): 98-101. (in Chinese) 杨远洪, 伊小素, 孟照魁, 等. 光纤陀螺用光纤环的应力分 布实验研究[J]. 压电与声光, 2005, 27(2): 98-101.
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    [3] Xiang Qiang, Wu Yanji, Xu Guanghai, et al. Application of BOTDR in the measurement of FOG sensing coil [J]. Infrared and Laser Engineering, 2008, 37(S): 260-262. (in Chinese) 向强, 吴衍记, 徐广海, 等. 应力分析仪在光纤陀螺传感环 圈测量中的应用[J].红外与激光工程, 2008, 37(S): 260-262.
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    [6] Yu Qiang, Zhang Chen, Li Xuyou, et al. Influence of coating adhesive on thermal stress interference birefringence of optical fiber coil[J].Chinese Journal of Laser, 2011, 38(2): 1-5. (in Chinese) 于强, 张琛, 李绪友, 等. 固胶对光纤线圈热应力干扰双折 射的影响[J]援中国激光, 2011, 38(2): 1-5.
    [7] Chen Yingli, Xie Liangping, Chen Ping, et al. Nonreciprocal effect and compensation technique of fiber coil in fiber optic gyroscopes [J]. Science Technology and Engineering, 2008, 8(11): 3059-3063. (in Chinese) 陈迎丽, 谢良平, 陈平, 等. 光纤陀螺中光纤环非互易效应及 其补偿技术[J]援科学技术与工程, 2008, 8(11): 3059-3063.
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    [9] Zhu Hui, Cen Songyuan, Wang Dongyun, et al. Measurement and analysis about the strain of fiber optical loop[J].Optical Instruments, 2004, 26(4): 3-6. (in Chinese) 朱辉, 岑松原, 王冬云, 等. 光纤环的应力测试分析[J]. 光 学仪器, 2004, 26(4): 3-6.
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    [11] Feng Wenshuai, Wang Xuefeng, Wang Wei, et al. Effect of turnsdifference in each layer on temperature performance of fiber optic gyroscope [J].Journal of Chinese Inertial Technology, 2011, 19(4): 487-493. (in Chinese) 冯文帅, 王学峰, 王巍, 等. 光纤环的每层匝数不同对光纤 陀螺温度性能影响[J].中国惯性技术学报, 2011, 19(4): 487-493.
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    [14] Wang Wei, Xiang Zheng, Xing Hui, et al. Three-dimensional transient thermal modeling of FOG fiber coil [J]援Journal of Chinese Inertial Technology, 2012, 20( 5 ): 605-610.(in Chinese) 王巍, 向政, 邢辉, 等. 光纤陀螺光纤敏感线圈三维温度瞬 态响应模型[J].中国惯性技术学报, 2012, 20(5): 605-610.
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Effect of strain distribution measurement of fiber coil on FOG performance

  • 1. The 41th Research Institute,China Electronics Technology Group Corporation,Qingdao 266555,China;
  • 2. College of Optical and Electronic Technology,China Jiliang University,Hangzhou 310018,China

Abstract: In order to improve the performance of the FOG, the suitable fiber coil were chosen through the fiber coil strain distribution measurement. In this article, the impact of fiber coil non-reciprocal on the gyro output which generated by strain were studied. Based on the analysis, the strain of fiber coil was tested and the appropriate samples for FOG were selected using the fiber strain analyzer to assemble and install the selected fiber coil for bias experiment. The results show that, strain tests are effectively carried out and the appropriate samples were selected using the strain analyzer. Performance of FOG has been significantly improved with the measurement and select of fiber coil strain distribution, bias stability over the full temperature range is up to 0.08 ()/h, which has important guiding significance for the development of high precision FOG.

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