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Self-Compensating Displacement Sensor Based on Hydramatic Structured Transducer and Fiber Bragg Grating 被引量:5

Self-Compensating Displacement Sensor Based on Hydramatic Structured Transducer and Fiber Bragg Grating
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摘要 An optical fiber displacement sensor with a large measuring range for simultaneous displacement and temperature measurement is presented in this paper. We developed a specific transducer based on the piston and hydraumatic structure to realize a large displacement measurement, which combined the large measuring range and high precision into a single sensor system. The spectrum showed two reflection peaks used to compensate for cross-sensitivity in the displacement detection. This displacement sensor can linearly work in a large measuring displacement range greater than 45 mm with a high sensitivity of 0.036nm/mm. The sensor we reported can be developed for real-time displacement monitoring in many industrial environments such as the mechanical shape or liquid level monitoring. An optical fiber displacement sensor with a large measuring range for simultaneous displacement and temperature measurement is presented in this paper. We developed a specific transducer based on the piston and hydraumatic structure to realize a large displacement measurement, which combined the large measuring range and high precision into a single sensor system. The spectrum showed two reflection peaks used to compensate for cross-sensitivity in the displacement detection. This displacement sensor can linearly work in a large measuring displacement range greater than 45 mm with a high sensitivity of 0.036nm/mm. The sensor we reported can be developed for real-time displacement monitoring in many industrial environments such as the mechanical shape or liquid level monitoring.
出处 《Photonic Sensors》 SCIE EI CAS CSCD 2015年第4期351-356,共6页 光子传感器(英文版)
基金 the National Natural Science Foundation of China (Grant Nos. 61137005 and 11474043) and the Ministry of Education of China (Grant No. DUT 14ZD211 and SRFDP 20120041110040).
关键词 Hydraumatic structured transducer large measuring range temperature compensating optical fibersensor DISPLACEMENT Hydraumatic structured transducer; large measuring range; temperature compensating; optical fibersensor; displacement
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