Using satellite data in monitoring systems |
| A.V. Kashnitskiy, E.A. Loupian, S.A. Bartalev, S.S. Bartalev, I.V. Balashov, V.Yu. Efremov, F.V. Stytsenko Optimization of burn mapping interactive procedures in remote fire monitoring information systems | 7-16 |
| D.A. Kobets, I.V. Balashov, I.D. Danilov, E.A. Loupian, I.G. Sychugov, V.A. Tolpin Using BI technologies to create analysis tools for satellite remote sensing data | 17-27 |
| O.N. Galaganov, T.V. Guseva, I.S. Krupennikova Comparison of GLONASS and GPS data by differential positioning method in static mode for solving geodynamic problems | 28-37 |
| S.A. Soldatenko, A.V. Tertyshnikov, N.V. Shirshov The impact estimate of satellite information on the quality of numerical weather prediction | 38-47 |
Remote sensing of ocean surface and ice cover |
| A.V. Ermoshkin, V.V. Bakhanov, N.A. Bogatov Development of an empirical model for radar backscattering cross section of the ocean surface at grazing angles | 51-59 |
| А.B. Selunsky, А.V. Kuzmin, N.Yu. Komarova Emission of a plane electromagnetic wave of arbitrary polarization on sinusoidal boundary water surface | 60-71 |
| S.A. Lebedev The dynamics of the Caspian Sea based on satellite altimetry data | 72-85 |
| T.V. Bukanova, Zh.I. Stont, O.A. Goushchin Variability of sea surface temperature in the South–Eastern Baltic from MODIS data | 86-96 |
Remote sensing of atmosphere and climate |
| A.A. Karakhanyan, S.I. Molodykh Pressure field structure as the Earth passes the interplanetary magnetic field sectors | 99-105 |
| N.I. Izhovkina, N.S. Erokhin, L.A. Mikhailovskaya, S.N. Artekha Features of interaction of plasma vortices in the atmosphere and ionosphere | 106-116 |
Remote sensing of vegetation and soils |
| E.A. Cherenkova, V.V. Popova Dynamics of soil moisture in the spring and summer of 2010 in the European part of Russia based on the analysis of remote sensing data | 119-130 |
Satellite data processing |
| V.V. Chukin, I.N. Melnikova, T.T. Nguyen, V.N. Nikulin, A.F. Sadykova, A.M. Chukina Diagnosis of ice nuclei in the clouds by the device SEVIRI | 133-142 |
| A.N. Grigoriev Model of onboard cloudiness evaluation over the survey area during remote sensing from space | 143-150 |