ZHANG Yan, WU Wen-qi, Wu Mei-ping. Online estimation for scale factor of north-finder based on rate biased ring laser gyroscope[J]. Editorial Office of Optics and Precision Engineering, 2010,19(1): 146-152
ZHANG Yan, WU Wen-qi, Wu Mei-ping. Online estimation for scale factor of north-finder based on rate biased ring laser gyroscope[J]. Editorial Office of Optics and Precision Engineering, 2010,19(1): 146-152 DOI: 10.3788/OPE.20111901.0146.
Online estimation for scale factor of north-finder based on rate biased ring laser gyroscope
To satisfy the engineering requirement of high precision north-finding
the north-finder based on a Rate Biased Ring Laser Gyroscope (RBRLG) and its measurement error come from the scale factor of RBRLG were studied to solve the problem on the scale factor slow change resulted from the inner temperature change and the instability of lock-in region of the RBRLG. Firstly
the change rule of scale factor was researched by a scale factor test. Then
the influence of the scale factor change on the north-finding precision was analyzed by a simulation. Finally
an online first order recursive algorithm was established to estimate the scale factor change according to the periodicity of RBRLG measurement. By introducing the platform angle measurement
the scale factor changes could be obtained. Simulated results indicate that the estimation error for the scale factor of RBRLG is less than 110
-6
by the proposed algorithm
and the standard deviations of north-finding results caused by the scale factor change decrease to about 2.The experiment on the north-finder results shows that this algorithm can effectively restrain the north-finding error caused by scale factor change
and the standard deviation is about 24 for 5 min
which can basically satisfy the requirement of high precision north-finding.
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references
KIM S J,LEE S S,KWON Y S, et al.. Dynamic north-finding scheme based on a fiber optic gyroscope [J]. SPIE,1997,3087:126-136.[2] ZHANG ZH J,SUN J Y, WU K Y. Error analysis and test study of fiber optic gyroscope north-finder[J].SPIE,2005,5634: 611-618.[3] ZHANG Y,WU W Q,CAO J L. The study of north-finder based on rate biased RLG .The 3rd International Symposium on System and Control in Aeronautics and Astronautics, 2010.[4] 蒋庆仙,陈晓璧,马小辉,等. 单轴光纤陀螺寻北仪[J]. 中国惯性技术学报, 2010, 18(2): 165-169. JIANG Q X, CHEN X B, MA X H. North seeker using single axis FOG[J]. Journal of Chinese Inertial Technology, 2010,18(2):165-169. (in Chinese)[5] 沈铖武, 王志乾, 刘畅, 等. BP神经网络在多位置捷联寻北系统中的应用[J]. 光学 精密工程, 2009, 17(8):1890-1895. SHEN CH W, WANG ZH Q, LIU CH, et al.. Application of BP neural network to multi-position strap-down north seeking system[J].Opt. Precision Eng., 2009,17(8):1890-1895. (in Chinese)[6] 徐海刚, 郭宗本. 一种实用旋转调制式陀螺寻北仪的设计[J]. 兵工学报,2010,31(5):616-619. XU H G, GUO Z B. Design of a practical rotation-modulation gyro north-finder[J]. Acta Armamentarii, 2010,31(5):616-619.(in Chinese)[7] 袁保伦, 饶谷音, 廖丹. 旋转式惯导系统的标度因数误差效应分析[J]. 中国惯性技术学报, 2010,18(2):160-164. YUAN B L, RAO G Y, LIAO D. Scale factor error analysis for rotating inertial navigation system[J]. Journal of Chinese Inertial Technology, 2010,18(2):160-164. (in Chinese)[8] 战德军, 秦石乔, 王省书, 等. 速率偏频激光陀螺标度因数高精度测量方法[J]. 中国激光, 2010,37(5):1327-1331 ZHAN D J, QIN SH Q, WANG X SH, et al.. Precise measurement of rate biased laser gyro scale factor[J]. Chinese Journal of Lasers,37(5):1327-1331. (in Chinese)[9] QIN SH Q,HUANG Z SH,WANG X SH. Feature analysis of the scale factor variation on a constant rate biased ring laser gyro [J]. Chinese Optics Letters, 2007,5(3):138-141.[10] 黄宗升.旋转式激光陀螺寻北仪的研究 . 长沙:国防科技大学,2007. HUANG Z SH. Research on rotary north finder based on ring laser gyro . Changsha: National University of Defense Technology,2007. (in Chinese)[11] XIA J H,QIN Y Y,RUI L. Modeling temperature data of RLG's scale factor using LS-SVM . IEEE International Symposium on Knowledge Acquisition and Modeling Workshop, 2008:510-513.[12] 张鹏飞,王宇,汤建勋,等. 机抖激光陀螺多温度点实时温度补偿方法的研究[J]. 兵工学报,2010,31(5):562-566. ZHANG P F, WANG Y, TANG J X, et al.. Research on methods for compensating temperature of mechanically dithered RLG [J]. Acta Armamentarii, 2010,31(5):562-566.(in Chinese)