Sovremennye problemy distantsionnogo zondirovaniya Zemli iz kosmosa, 2011, Vol. 8, No. 3, pp. 199-207
Integrated monitoring of lands underflooding manifestations by the aviation remote sensing complex ACRS-30
V. N. Tsymbal
1, S.Ye Yatsevch
2, A.Ya. Matveev
1, A.S. Gavrilenko
1, D.M. Bytchkov
1
1 Kalmykov center for Radiophysical Sensing of the Earth of NAS of Ukraine and NSA of Ukraine, Kharkov
2 Institute of Radophysics and Electronics of NAS of Ukraine, Kharkov
In the paper are analyzed theoretical approaches and results of Integrated monitoring of lands underfloodings manifestations by the side-looking Ka-band radar, an aerial camera and IR scanner of aviation complex of the remote sensing ACRS-30, realized during day and night time of various seasons. The investigated test area is characterised by presence of various manifestations of underfloodings of a ground and swamping areas expands as a result of a bad state of irrigation system. This manifestations are well observes at the remote images of all bands. Good mutual complements of the optic, IR and microwave data for identification and analysis of underfloodings, and surface floods are indicates.
Keywords: underfloodings, remote sensing, IR and microwave data, image processing
Full textReferences:
- Radiolokatsionnye metody i sredstva operativnogo distantsionnogo zondirovaniya Zemli s aerokosmicheskikh nositelei (Radar methods and means of operative remote sensing of the Earth from aerospace carriers), Kiev: Izd. “Dzhulia print”, 2007, 439 p.
- Kronberg P., Distantsionnoe izuchenie Zemli (Remote study of the Earth), Moscow: Mir, 1988, 343 p.
- Vul'fson L.D., Osobennosti formirovaniya temperatury i koeffitsientov otrazheniya zemnykh pokrovov v teplovom IK i SVCh diapazonakh primenitel'no k distantsionnomu zondirovaniyu v geologicheskikh i prirodookhrannykh tselyakh (Peculiarities of formation of temperature and reflectivity of the ground cover in the thermal IR and SHF ranges with respect to remote sensing in geological and environmental purposes), Dis. kand. fiz.-mat. nauk (Dis. Cand. physics-math. Sciences): 05.07.12, NAN Ukrainy, Institut geologicheskikh nauk, Kiev, 2000, 236 p.
- Kulemin G.P., Yatsevich S.Ye., Uspekhi sovremennoi radioelektroniki, 2004, No. 3, pp. 24-34.
- Rozhok G.P., Gunchenko V.O., Materialy 3-i NPK “PODTOPLENIE-2005”: Neotlozhnye Problemy Preduprezhdeniya i Bor'by s Regional'nym Podtopleniem Zemel' (The Materials of the 3rd Scientific and Production Company “FLOODING-2005”: Urgent Problems of Prevention and Combating of Regional Waterlogging of Lands), Lazurnoe, Khersonskaya obl., NPTs “EKOLOGIYa, NAUKA, TEKHNIKA”, 2005, pp. 26-27 (na ukr. yazyke).
- V. N. Tsymbal, D.M. Bytchkov, A.S. Gavrilenko, Materialy 3-i NPK “PODTOPLENIE-2005”: Neotlozhnye Problemy Preduprezhdeniya i Bor'by s Regional'nym Podtopleniem Zemel' (The Materials of the 3rd Scientific and Production Company “FLOODING-2005”: Urgent Problems of Prevention and Combating of Regional Waterlogging of Lands), Lazurnoe, Khersonskaya obl., NPTs “EKOLOGIYa, NAUKA, TEKHNIKA”, 2005, pp. 28-30 (na ukr. yazyke).
- Shutko A.M., SVCh Radiometriya vodnoi poverkhnosti i pochvogruntov (Microwave Radiometry of water surface and soil), Moscow: Nauka, 1986.
- Ulaby F.T., Baltilava P.P. Dobson M.C., Microwave backscatter dependence on surface roughness, soil moisture, and soil texture. Part 1 – Bare soil, IEEE Trans. Geosci. Electron., 1983, Vol. 16, No. 4, pp. 286-295.
- Hallikainen M.T., Ulaby F.T., Dobson M.S., EI-Rayes, Lin-Kun Wu, Microwave dielectric behavior of Wet soil, IEEE Trans. Geosc. Remote Sens., 1985, Vol. 23, No. 1, pp. 25-34.
- Azad Hossain A.K.M., Greg Easson, Boken V.K., Mapping spatial variation in surface moisture using reflective and thermal aster imagery for southern Africa, ASPRS 2006 Annual Conference Reno, Nevada, 2006.
- Shi J., Wang J., Hsu A.Y., O'Neil P.E., Engman E.T., Estimation of Bare Surface Soil Moisture and Surface Roughness Parameter Using L-band SAR Image Data, IEEE Trans. Geosci. Remote Sens., 1997, Vol. 35, No. 5, pp. 1254-1266.