Calibration Technology of Optical Fiber Strain Sensor; [光纤应变传感器检测标定技术]

被引:10
作者
Chen G. [1 ]
Liu H. [2 ]
Gao R. [1 ]
机构
[1] Shanghai Institute of Quality Inspection and Technical Research, Shanghai
[2] School of Mechatronic Engineering and Automation, Shanghai University, Shanghai
关键词
dynamic calibration; optic fiber; static calibration; strain sensor; TH; 822;
D O I
10.1007/s12204-022-2406-9
中图分类号
学科分类号
摘要
As one of the hotspots of sensing technology at present, optical fiber sensor has the characteristics of small size, anti-electromagnetic interference, and easy networking, which plays an irreplaceable role in multi-physics parameter monitoring of complex electromagnetic environments. The precise calibration of the optical fiber strain sensor has great practical value in prolonging the survival rate of the sensor, improving the measurement accuracy, and meeting the needs of long-term monitoring. By reviewing the research status of strain sensor calibration method and fiber optic strain sensor calibration method, the advantages and disadvantages of the main methods are analyzed separately from the static and dynamic perspectives, and the development prospect of the calibration technology of optic fiber strain sensor is summarized. © 2022, Shanghai Jiao Tong University.
引用
收藏
页码:551 / 559
页数:8
相关论文
共 33 条
  • [1] Zhang L.F., Yang D.X., Chen Z.H., Et al., Deformation and failure characteristics of sandstone under uniaxial compression using distributed fiber optic strain sensing, Journal of Rock Mechanics and Geotechnical Engineering, 12, 5, pp. 1046-1055, (2020)
  • [2] Munzke D., Kraus D., Eisermann R., Et al., Distributed fiber-optic strain sensing with millimeter spatial resolution for the structural health monitoring of multiaxial loaded GFRP tube specimens, Polymer Testing, 80, (2019)
  • [3] Xue L., Tian L., Geng Y.B., Research on measurement principle and calibration method of pin shaft sensor, Construction Machinery and Equipment, 52, 3, pp. 50-54, (2021)
  • [4] Zheng H., Feng J., Qin K., Et al., Strain gauges installation and calibration method for planet carrier, Mechanical Engineer, pp. 71-74, (2021)
  • [5] Lei P., Zhang C., Pang Y.W., Et al., Fabrication and Performance Investigation of Karma Alloy Thin Film Strain Gauge, Journal of Shanghai Jiao Tong University (Science), 26, 4, pp. 454-462, (2021)
  • [6] Li S., Technology research of calibration and test of pull force sensor, (2015)
  • [7] Zhang Y.T., Research on mechanical properties of thin film strain sensors for cutting force measurement, (2020)
  • [8] Li Z.Z., Li J., Zheng S.H., Et al., Development of automatic calibration system for displacement and strain type sensors, Hydropower Automation and Dam Monitoring, 36, 3, pp. 54-57, (2012)
  • [9] Yan Z.P., Deng Z.B., Influence of strain gages calibration accuracy with four-point simple supported curved beam device, China Measurement & Test, 45, 10, pp. 101-108, (2019)
  • [10] Zhu Q.C., Wang S.L., Zhang Q.H., Et al., Optimization on the highly accuracy equal strength beam for calibration, Journal of South China University of Technology (Natural Science Edition), 28, 2, pp. 7-11, (2000)