Design features of on-board air-based hyperspectrometers AIS 1Donets VV. Design features of on-board air-based hyperspectrometers AIS. Kosm. nauka tehnol. 2012 ;18(5):05–11.
An estimation of anthropogenic particle fluxes at the SICH-2 space vehicle surface 1Smelaya TG. An estimation of anthropogenic particle fluxes at the SICH-2 space vehicle surface. Kosm. nauka tehnol. 2012 ;18(3):61–66.
Synergetic effect of atomic oxygen flow and vacuum ultraviolet flux on spacecraft polyimide films 1Shuvalov VA, 1Tokmak NA, 1Pismennyi NI, 2Kochubey GS. Synergetic effect of atomic oxygen flow and vacuum ultraviolet flux on spacecraft polyimide films. Kosm. nauka tehnol. 2012 ;18(3):10–19.
Attitude control of solar battery and transmitting antenna for space solar power satellite 1Makarov AL, 2Khoroshylov SV. Attitude control of solar battery and transmitting antenna for space solar power satellite. Kosm. nauka tehnol. 2012 ;18(3):03–09.
An analysis of the outlook for widening functional capabilities of the Ukrainian geostationary communication satellite 1Degtyarev AV, 2Makarov AL, 3Matvienko SA, 4Prokopov AV, 5Romanko VN. An analysis of the outlook for widening functional capabilities of the Ukrainian geostationary communication satellite. Kosm. nauka tehnol. 2012 ;18(1):05-12.
Autonomous forming of Earth observation sessions sequence for a maneuverable spacecraft 1Melanchenko OG, 1Sincha OO. Autonomous forming of Earth observation sessions sequence for a maneuverable spacecraft. Kosm. nauka tehnol. 2016 ;22(1):15-19.
A new approach to improvement of spacecraft on-board measurement systems 1Makarov AL, 2Melanchenko OG, 3Nagornov VS. A new approach to improvement of spacecraft on-board measurement systems. Kosm. nauka tehnol. 2013 ;19(2):53–62.
Conception of the open-frame platform for space experiments 1Belousov KG, 2Vaisero MV, 1Kavun VV, 2Masley VN, 1Moskalev SI, 3Shovkoplias Yu.A. Conception of the open-frame platform for space experiments. Kosm. nauka tehnol. 2015 ;21(6):20–27.
Some increase of dynamic loads of spacecraft actuating mechanisms drive 1Makarov AL, 2Shatikhin VE, 1Horoshilov VS, 3Petrenko GV, 3Tsukanov OV, 1Popel’ VM. Some increase of dynamic loads of spacecraft actuating mechanisms drive. Kosm. nauka tehnol. 2014 ;20(3):64-68.
Dynamic interaction of a spacecraft with rarefied plasma in motion under a “magnetic sail” 1Shuvalov VA, 1Tokmak NA, 2Tsokur AG, 3Kochubey GS. Dynamic interaction of a spacecraft with rarefied plasma in motion under a “magnetic sail”. Kosm. nauka tehnol. 2014 ;20(3):14-21.