Experience of gyrocompass design based on rotating laser gyroscope
https://doi.org/10.17285/0869-7035.2017.25.3.049-059
Abstract
An attempt to create a gyrocompass based of a laser gyroscope rotating about the horizontal sensitive axis is discussed. Levels of errors due to various causes are estimated. The design of gyrocompass mockup is described, and results of its testing are presented.
About the Author
G. V. CheremisenovRussian Federation
References
1. Gusinskii, V.M., Lesyuchevskii, Yu.A., Litmanovich, V.G., Peshekhonov, V.G., Vysokotochnyi nazimnyi girokompas (High-accuracy Ground-based Gyrocompass), Doklady VII Sankt-Peterburgskoi mezhdunarodnoi konferentsii po integrirovannym navigatsionnym sistemam (Proceedings of the 7th St. Petersburg International Conference on Integrated Navigation Systems), St. Petersburg, 2000, pp. 43–50.
2. Golyaev, Yu.D., Dronov, I.V., and Kolbas, Yu.Yu., Malogabaritnyi girokompas na kvazichetyrekhchastotnom lazernom giroskope (Small-size Gyrocompass on Quasi-Four-Freuqency Laser Gyroscope), Vestnik MGTU im. N.E. Baumana, Seriya Pribiorostroenie, 2012, No. 3, pp. 112–125.
3. Korkishko, Yu.N., Fedorov, V.A., Prilutskii, V.E., Ponomarev, V.G., Marchuk, V.G., Morev, I.V., Kostritskii, S.M., and Paderin, E.M., Volokonno-opticheskii giroskop navigatsionnogo klassa tochnosti (Fiber-optic Gyro of Navigation Accuracy Grade), Giroskopiya i navigatsiya, 2008, No. 1, pp. 71–81.
4. Bychkov, S.I., Lukyanov, D.P., and Bakalyar, A.I., Lazernyi giroskop (Laser Gyro), Sovetskoe radio, 1975. 424 p.
5. Enin, V.N., and Kvetkin, G.A., Dinamicheskie vozmushcheniya lazernogo girometra s vibratsionnym podvesom (Dynamic Dithering of Laser Gyrometer with Vibrational Suspension), Voprosy oboronnoi tekhniki, 2010, Series 9, No. 3-4, pp 108–115.
6. Kolomiitsev, Yu.V., and Novikova, I.V., Interferentsionnye metody izmereniya uglov (Interference Methods of Angles Measurement), Ref. Obzor, No. 1920, 1978.
7. Afanas'ev, V.A., Opticheskie izmereniya (Optical Measurements), Moscow, Nedra, 1968. 8. ISTOK-EOS [Online], Girocompass 9А 184, URL: https//ru/navigac/9A 184.html
8. Kolbas, Yu.Yu., Girokompas na osnove zeemanovskogo kol'tsevogo lazera (Gyrocompass Based on Zeeman Ring Laser), Diss. Cand. Eng. Sc., Moscow, 2011.
9. Paturel, Y., Willemenot, E., and Urgell, A., Volokonno-opticheskiegiroskopy firmy IXSEA i sistemy na ikh osnove (FOG Technology and FOG-Based Systems: An Industrial Reality at Ixsea), Giroskopiya i navigatsiya, 2004, No. 3, pp 53–61.
10. Tanaka, T., Igarashi, Y., Nara, M., and Yoshino, T., Automatic North Sensor Using a Fiber Optic Gyroscope, Applied Optics, 1994, vol. 33, pp. 120–123.
Review
For citations:
Cheremisenov G.V. Experience of gyrocompass design based on rotating laser gyroscope. Giroskopiya i Navigatsiya. 2017;25(3):49-59. (In Russ.) https://doi.org/10.17285/0869-7035.2017.25.3.049-059



