федеральное государственное автономное образовательное учреждение высшего образования
«Самарский национальный исследовательский университет имени академика С.П. Королева»

Chetverikov, Alexey S.

  • Department of Space Engineering, associate professor
    2021
    • 1 Salmin V.V., Peresypkin K.V., Chetverikov A.S. etc. Determination initial approximations in solving the problem of numerical optimization of a large-sized space structure using linear extrapolation of optimal solutions // Journal of Physics: Conference Series. — 2021. — Vol. 1745. Issue 1.
    • 2 Salmin V.V., Chetverikov A.S. The use of an algorithm for determining the thrust of an electric propulsion system during a flight into a geostationary orbit // Journal of Physics: Conference Series. — 2021. — Vol. 1745. Issue 1.
    2019
    • 1 Anshakov G.P., Salmin V.V., Peresypkin K.V. etc. Numerical optimization of geometric configuration of large space structure // Journal of Physics: Conference Series. — 2019. — Vol. 1368. Issue 4.
    2018
    • 1 Salmin V., Chetverikov A. Multistep algorithms for the orbit control of geostationary spacecraft using low thrust engine // AIP Conference Proceedings. — 2018. — Vol. 2046.
    • 2 Anshakov G.P., Salmin V.V., Peresypkin K.V. etc. Design and control of the diffraction optical system for the prospective project of the observation spacecraft // Journal of Physics: Conference Series. — 2018. — Vol. 1096. Issue 1.
    2017
    • 1 Salmin V., Chetverikov A. Methods of selecting guidance laws transfer vehicle with electric propulsion system during the flight into geostationary orbit // Advances in the Astronautical Sciences. — 2017. — Vol. 161. — P. 455-466
    • 2 Salmin V.V., Petrukhina K.V., Chetverikov A.S. Optimizing Ballistic Schemes for Transfer to Geostationary Orbits by Electric Propulsion // Procedia Engineering. — 2017. — Vol. 185. — P. 345-351
    • 3 Anshakov G.P., Salmin V.V., Chetverikov A.S. etc. Development of method for selecting motion control laws of space optical system on based diffractive membranes during transfer into geostationary orbit // CEUR Workshop Proceedings. — 2017. — Vol. 1966. — P. 35-42
    • 4 Soyfer V.A., Salmin V.V., Karpeev S.V. etc. Insertion into Geostationary Orbit of a Spacecraft with Diffractive Orbit by Low Torque Electric Propulsion // Procedia Engineering. — 2017. — Vol. 185. — P. 332-337
    • 5 Salmin V.V., Chetverikov A.S., Peresypkin K.V. etc. Modeling control over large space structure on geostationary orbit // CEUR Workshop Proceedings. — 2017. — Vol. 1904. — P. 168-173
    • 6 Salmin V.V., Chetverikov A.S. Control of geostationary spacecraft in orbital plane using a low thrust engine // AIP Conference Proceedings. — 2017. — Vol. 1798.
    • 7 Anshakov G.P., Salmin V.V., Peresypkin K.V. etc. Modeling of geometrical stability of the diffraction lens mount for a promising project of the outer space observation satellite // CEUR Workshop Proceedings. — 2017. — Vol. 1966. — P. 30-34
    • 8 Salmin V.V., Starinova O.L., Volosuev V.V. etc. Optimization methods of near-Earth and interplanetary flights with low thrust // AIP Conference Proceedings. — 2017. — Vol. 1798.
    2016
    • 1 Salmin V.V., Karpeev S.V., Peresypkin K.V. etc. Feasibility study and modeling of components for an informational space system based on a large diffractive membrane // CEUR Workshop Proceedings. — 2016. — Vol. 1638. — P. 132-148
    2015
    • 1 Chetverikov A. S. , Salmin V. V. Управление плоскими параметрами орбиты геостационарного космического аппарата с помощью двигателя малой тяги // Vestnik of the Samara State Aerospace University 2015. — № Том 14, № 4. — P. 92-101