A subsystem of the digital correction of control system of space vehicle orientation

1Ischenko, VI, 1Zimchuk, IV
1Zhytomyr Military Institute named after S. P. Korolev, Zhytomyr, Ukraine
Kosm. nauka tehnol. 2003, 9 ;(4):045-048
https://doi.org/10.15407/knit2003.04.045
Publication Language: Ukrainian
Abstract: 
Synthesis of the control algorithm of the angular position of space vehicle hull is considered and simulation results are presented.
Keywords: space vehicle orientation, spacecraft control, spacecraft dynamics
References: 
1. Besekerskii V. A., Ivanov V. A., Samotokin B. B. The orbital gyrocompassing, ed. by B. B. Samotokin, 256 p. (Politehnika, St.Petersburg, 1993) [in Russian ].
2. Besekerskiy V. A., Izrantsev V. V. Microcomputer automatic control system, 320 p. (Nauka, Moscow, 1987) [in Russian ].
3. Gostev V. I., Steklov V. K. Automatic Control Systems within Digital Controllers: handbook, 704 p. (Radioamator, Kiev, 1998) [in Russian].
4. Solodov A. V. (Ed.) Engineering Handbook of Space Technology, 2nd revised and enlarged edition, 430 p. (Voenizdat, Moscow, 1977) [in Russian].
5. Kargu L. I. Systems of Angular Stabilization of Spacecrafts, 172 p. (Mashinostroyeniye, Moscow, 1980) [in Russian].
6. Ogarkov M. A. The methods of statistical estimation of parameters of stochastic processes, 208 p. (Energoatomizdat, Moscow, 1980) [in Russian].
7. Pavlovsky M. A., Gorbulin V. P., Klimenko O. M. Control systems for rotational motion of spacecraft, 200 p. (Nauk. dumka, Kyiv, 1997) [in Russian].

8. Pushkarev Yu. A. Analysis and synthesis of discrete estimation systems, 326 p. (ZhVURJe, Zhitomir, 1989) [in Russian].