Resonance of coincidence and the error of floating gyroscopes

Authors

  • Володимир Володимирович Карачун National Technical University of Ukraine "Kyiv Polytechnic Institute" Pobedy, 37, Kyiv, Ukraine, 03056, Ukraine
  • Владислав Юрійович Шибецький National Technical University of Ukraine "Kyiv Polytechnic Institute" Pobedy, 37, Kyiv, Ukraine, 03056, Ukraine

DOI:

https://doi.org/10.15587/2313-8416.2014.29127

Keywords:

hypersonic aircraft, N-wave, zone of caustics, wave coincidence, floating gyroscope

Abstract

The model of effects of additional errors in the interaction of N-wave with inertial positioning devices of hypersonic aircraft was created. The angles of coincidence to the angular velocity sensor were calculated. These calculations are compared with experimental data obtained in research of semi natural conditions for two cases of running and off gyromotor. Conclusions of the possibility of usage of the results were made.

Author Biographies

Володимир Володимирович Карачун, National Technical University of Ukraine "Kyiv Polytechnic Institute" Pobedy, 37, Kyiv, Ukraine, 03056

Professor, Doctor of Technical Sciences

Department of biotechnology and engineering

Владислав Юрійович Шибецький, National Technical University of Ukraine "Kyiv Polytechnic Institute" Pobedy, 37, Kyiv, Ukraine, 03056

Assistant of the department of biotechnology and engineering

References

Shybetskii, V. Y., Karachun, V. V. (2013). Float suspension gyroscope under flight manual. Proceedings of the SAC. Aerospace Instrumentation: scientific. Magazine, 4, 41–44.

Hypersound: third party race. Available at: htpp://rus.ruvr.ru/2014_01_17/Giperzvuk-tretij-uchastnik-gonki-8178/ (Last access: 17 January 2014).

Joint access to "hypersound". Available at: http://vpk-news.ru/articles/3901/ (Last access: 15 April 2009).

Karachun, V. V., Mel'nick, V. N. (2012). Influence of Diffraction Effects on the Inertial Sensors of a Gyroscopically Stabilized Platform: Three –Dimensional Problem. International Applied Mechanics, 48 (4), 458–464. doi: 10.1007/s10778-012-0533-y

Karachun, V. V., Mel'nick, V. N., Shybetskii, V. Y. (2013). Gyro errors conditioned by developing pitching motion of fuselage during flight operations. Eastern-European Journal of Enterprise Technologies, 5/7(65), 45–47. Available at: http://journals.uran.ua/eejet/article/view/18525/16289

Shybetskii, V. Y. (2012). Effect of Gaussian curvature suspension floating gyroscope on the elastic compliance in the acoustic field. Young scientist. Monthly magazine, 12, 116–120.

Kuz'michev, Y. M., Makarov, V. M. (1958). Excitation of a cylindrical shell with ultrasound. Acoust. magazine, 3, 282–283.

Makarov, V. I., Fadeev, N. A. (1960). On the radiation waves shells in the sound field. Acoust. magazine, 2, 261–263.

Tryvaylo, M. S., Karachun, V. V., Mel’nick, V. M., Rudenko, O. S. (2011). Float gіroskop. Ukrainian Patent No. 66311, 26 December 2011

Shenderov, E. L. (1972). Wave of hydroacoustic. Leningrad, USSR: Shipbuilding, 352.

Zaborov, V. I. (1962). The theory of sound insulation walling. Moscow, USSR: Stroyizdat, 116.

Published

2014-11-24

Issue

Section

Technical Sciences