Title :
A control method based on Smith estimator applied in closed-loop I-FOG
Author :
Li Xingshan ; Yuan Huizheng ; Gao Huiwen ; Shao Zhihao ; Lu Junqing ; Wang Yong
Author_Institution :
Gen. Design Dept., Hubei Aerosp. Technol. Acad., Wuhan, China
Abstract :
With the rapid development of I-FOG, high precision I-FOG is becoming an urgent demand in strategic submarine, navigation and armed vehicles. This paper focuses on the closed-loop control method design. A direct way to improve the precision of I-FOG is to increase the length of fiber. However, the enhanced Sagnac effect brings a longer transition period. If the demodulation frequency of I-FOG is at base frequency, it will cause longer sampling period, narrow bandwidth and small dynamic range. Especially in high dynamic environment, closed-loop feedback can not compensate high frequency noise effectively and increases the dynamic error. An enhanced control method with Smith estimator is presented to solve these critical defects. With the help of Smith estimator, the delay caused by odd times frequency modulation is figured out. Further, the dynamic performance and noise-restrain capability are highly improved.
Keywords :
angular measurement; closed loop systems; compensation; control system synthesis; delays; demodulation; feedback; fibre optic sensors; frequency modulation; sampling methods; I-FOG precision improvement; Sagnac effect; Smith estimator; armed vehicles; closed loop I-FOG; closed loop control method design; closed loop feedback; control method; critical defects; delay; demodulation frequency; dynamic error; dynamic performance; frequency modulation; high frequency noise compensation; narrow bandwidth; navigation; noise-restrain capability; sampling period; strategic submarine; Coils; Frequency modulation; Optical fiber amplifiers; Optical fiber devices; Sagnac interferometers; Vibrations; Closed-loop control; I-FOG; Smith estimator;
Conference_Titel :
Control and Decision Conference (CCDC), 2013 25th Chinese
Conference_Location :
Guiyang
Print_ISBN :
978-1-4673-5533-9
DOI :
10.1109/CCDC.2013.6560916