A combined investigation of the territory of Ukraine on the basis of geophysical parameters with the use of «Sich-1M» and «Microsputnik» space systems

1Agarkov, AV, 2Makarov, AL, 3Matvienko, SA, 1Meleshko, AV, 4Selivanov, Yu.A
1Yangel Yuzhnoye State Design Office, Dnipropetrovsk, Ukraine
2Yangel Yuzhnoye State Design Office, Dnipro, Ukraine
3Scientific and Production Complex “Kurs”, Kyiv, Ukraine
4Space Research Institute of the National Academy of Sciences of Ukraine and the State Space Agency of Ukraine, Kyiv, Ukraine
Kosm. nauka tehnol. 2003, 9 ;(5-6):174-179
https://doi.org/10.15407/knit2003.05.174
Publication Language: Russian
Abstract: 
We consider the possibility of the use of «Sich-1M» and «Micro-sputnik» space systems for the Earth remote sounding with respect to geophysical parameters.
Keywords: geophysical parameters, «Microsputnik» space system, «Sich-1M» space system
References: 
1. Zhernakov O. A., Egorov D. A. The present state and prospects for the development of gravimetric technique abroad. Giroskopija i navigacija, No. 1(20), 35—47 (1998) [in Russian].
2. Zhernakov O. A., Frezinsky V. S. Cryogenic sensors in the inertial navigation systems: Overview, 200 p. (Rumb, Leningrad, 1998) [in Russian].
3. Zhernakov O. A. Principles of creating a satellite gravitational gradiometer. In: Small Satellites. New technologies. miniaturization. Areas of eflective application in XXI century: 3rd Intern. conf., 27-31 May, 2002, Korolev, CNIImash, 115 (Korolev, 2002) [in Russian].
4. Zorkin L. M., Karus E. V., Kuznetsov O. L., et al. The phenomenon of the paragenesis of subvertical zonal-ring-shaped geophysical, geochemical and biochemical fields in the sedimentary cover of the earth's crust. Otkrytie No. 234 of July 24, 1980 [in Russian].
5. Minin O. A., Dmitrotsa A. I., Shtirberg L. S. On the possibility of obtaining centimeter accuracy on PEM-79. In: Astronomical School of Young Scientists: Intern. sci. conf., Ukraine, 29 (Bila Tserkva, 2003) [in Russian].
6. Pererva V. M., Kostina T. I. Predicting the zones of development of secondary collectors from satellite data. Kosm. nauka tehnol., 8 (2-3), 197— 200 (2002) [in Russian].
https://doi.org/10.15407/knit2002.02.197
7. Pererva V. M., Levchik E. I., Arkhipov A. I. Some aspects of the mechanism of desired signal formation in the optical images of landscapes over hydrocarbon deposits. Kosm. nauka tehnol., 8 (2-3), 187—197 (2002) [in Russian].
https://doi.org/10.15407/knit2002.02.187
8. Tartachynska Z. R. Geoidal height and gravity anomalies determination by satellite altimetry data: Extended abstract of candidate’s thesis; National University “Lviv Polytechnic”, 18 p. (Lviv, 2002) [in Ukrainian].
9. Uspensky G. P. Project of perspective geophysics satellite. In: Small Satellites. New technologies. miniaturization. Areas of eflective application in XXI century: 3rd Intern. conf., 27-31 May, 2002, Korolev, CNIImash, Vol. 2, 123 (Korolev, 2002) [in Russian].
10. Yavorsky B. M., Detlaf A. A. Handbook of Physics, 512 p. (Nauka, Moscow, 1985) [in Russian].
11. European Space Agency. The Solid-State Mission ARIS-TOTILES. In: Mattock C. (Ed.) Proc. of an International Workshop, Anacarpi, Italy, 23—24, 1991, 13750; ESA SP-329 (European Space Agency Spec. Publ., 1991).
12. Nerem R. S., Jekeli C., Kaula W. M. Gravity field determination and characteristics: Retrospective and proapective. J. Geophys. Res., 100 (B8), 15053—15074 (1995).
https://doi.org/10.1029/94JB03257
13. Paik H. J. Superconducting gravity gradiometr on STEP. In: Reinhard R. (Ed.) STEP — Testing the Equivalence Principle in Space: Proc. of an International Symp., Pisa, Italy, 6—8 April 1993, 321—334 (European Space Agency, ESA WPP-115, 1996).

14. Rummel R. Geodesy with STEP. In: Reinhard R. (Ed.) STEP — Testing the Equivalence Principle in Space: Proc. of an International Symp., Pisa, Italy, 6—8 April 1993, 320—321 (European Space Agency, ESA WPP-115, 1996).