Miniaturized satellites of Cubesat standard 1Khramov DA. Miniaturized satellites of Cubesat standard. Kosm. nauka tehnol. 2009 ;15(3):20-31.
Comparative estimate of cost characteristics for the injection of space debris cleaners into the wanted orbit 1Dron NM, 2Dubovik LG, 1Kondratyev AI, 2Horolsky PG. Comparative estimate of cost characteristics for the injection of space debris cleaners into the wanted orbit. Kosm. nauka tehnol. 2010 ;16(6):64-67.
The dynamics of the spacecraft with gyro-gravity stabilization in the deployment of a flexible ring antenna 1Zakrzhevskii AE, 2Khoroshylov VS. The dynamics of the spacecraft with gyro-gravity stabilization in the deployment of a flexible ring antenna. Kosm. nauka tehnol. 2011 ;17(5):03-18.
The analysis of interaction model of electrodynamic tether systems with the Earth’s magnetosphere and an ionosphere 1Mischenko AV, 2Pirozhenko AV. The analysis of interaction model of electrodynamic tether systems with the Earth’s magnetosphere and an ionosphere. Kosm. nauka tehnol. 2011 ;17(4):05-13.
Space tethers as a perspective direction of space technique and technology 1Voloshenjuk OL, 2Pirozhenko AV, 1Khramov DA. Space tethers as a perspective direction of space technique and technology. Kosm. nauka tehnol. 2011 ;17(2):32-44.
An algorithm of determination for spacecraft orientation with the use of a star sensor 1Nabivach VE, 2Opanasenko VM, 1Semeniv OV, 1Yatsenko VO. An algorithm of determination for spacecraft orientation with the use of a star sensor. Kosm. nauka tehnol. 2011 ;17(1):84-89.
Simulation of radiative electrization of spacecraft leeward surfaces in the ionosphere 1Shuvalov VA, 2Kochubey GS, 2Priymak AI, 3Gubin VV, 2Reznichenko NP. Simulation of radiative electrization of spacecraft leeward surfaces in the ionosphere. Kosm. nauka tehnol. 2001 ;7(5-6):030-043.
Building a group of two satellites without using an on-board thruster 1Avdeev VV. Building a group of two satellites without using an on-board thruster. Kosm. nauka tehnol. 2001 ;7(5-6):026-029.
Chaotic motions in the dynamics of space tethered systems. 3. Influence of energy dissipation 1Pirozhenko AV. Chaotic motions in the dynamics of space tethered systems. 3. Influence of energy dissipation. Kosm. nauka tehnol. 2001 ;7(5-6):013-020.
Chaotic motions in the dynamics of space tethered systems. 2. Mechanical image of the phenomenon. 1Pirozhenko AV. Chaotic motions in the dynamics of space tethered systems. 2. Mechanical image of the phenomenon. Kosm. nauka tehnol. 2001 ;7(2-3):090-099.