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Institute  have carried out the field experiments to obtain a high-resolution dataset  of microwave radiometers for land surface parameters (soil moisture, soil  temperature, vegetation water content), in order to improve the soil  moisture retrieval methodology. L-band radiometers were used for measuring  the brightness temperature of the bare soil. Field experiments for passive  microwave remote sensing of soil moisture were carried out in Hoai Duc  District in 2012. L-band microwave radiometers were used for measuring the  microwave emission of bare agricultural fields. The radiometers, which are  used for soil moisture measurement, worked well during the experimental  campaign and produced volumetric soil moisture estimates that compared well  with the ground-truth measurements. Explanations for the observed  discrepancies are presented. The experimental results showed that the model  of Choudhury et al. for surface roughness correction provides a better fit  to radiometric data over the angular range between 20° and 50° for  \\(n = 0\\) (i.e., the \\(\\cos ^{2}\\theta\\)  factor in the exponential in (15) is suppressed).  Based on the results of the experiments conducted over two experimental  sites with different soils, namely sandy loam at Hoai Duc Agrometeorologyl  Center, it may be concluded that the testing of both the radiometric  equipment and the method for soil moisture retrieval was very successful,  and the main goal of the experiments was fulfilled.",{"EN":645},"Research of Soil Moisture Retrieval Algorithms  for Processing Radiometry Data",{"VOID":647},"5647188148525215312",{"EN":649},"soil moisture retrieval,dielectric model,passive microwave remote sensing",{"VOID":651},"A. M. Shutko, Microwave Radiometric Remote Sensing of Waters and Lands, Science Publ., Moscow (in Russian)\n(1986).\nB. J. Choudhury et al., J. Geophys. Res., vol. 84, No. C9, 5699-5706 (1979).-\nC. A. Laymon et al., IEEE Trans. Geosci. Remote Sensing, 39(9) (2001) 1844-1858.\nE. G. Njoku and J. A. Kong, J. Geophys. Res. 82(20) (1977) 3108-3118.\nF. T. Ulaby, R. K. Moore, and A. K. Fung, Microwave Remote Sensing: Active and Passive, vol. III, From Theory\nto Applications, Artech House, Inc, Dedham, MA (1986).\nJ. R. Wang and T. J. Schmugge, IEEE Trans. Geosci. Remote Sensing, GE-18(4) (1980) 288-295.\nJ. R. Wang et al., IEEE Trans. Geosci. Remote Sensing, GE-21(1) (1983) 44-51 .\nJ. Sabburg, J. A. R. Ball, and N. H. Hancock, IEEE Trans. Geosci. Remote Sensing 35(3) (1997) 784-787 .\nJ-P. Wigneron, L. Laguerre, and Y. H. Kerr, IEEE Trans. Geosci. Remote Sensing 39(8) (2001) 1697-1707.\nK. G. Kostov and B. I. Vichev, Proc. IGARSS’95, July 10-14, 1995, Florence, Italy, 3 (1995) 1991- 1993.\nK. R. Bell et al., Water Res. Research 16(4) (1980) 796-810.\nM. C. Dobson et al., IEEE Trans. Geosci. Remote Sensing GE-23(1) (1985) 35-46.\nNational Foundation for Scientific Research Contract No. SS321\u002F1993, “Microwave Methods for Soil and Vegetation\nInvestigations Using Remote Sensing and Contact Equipment”, Final report, October 1996, Sofia, Bulgaria\n(in Bulgarian) (1996).\nT. J. Jackson and P. E. O’Neill, IEEE Trans. Geosci. Remote Sensing GE-24(6) (1986) 920-929.\nT. J. Jackson and T. J. Schmugge, IEEE Trans. Geosci. Remote Sensing 27(2) (1989) 225- 235.\nT. J. Schmugge and B. J. Choudhury, Radio Science 16(5) (1981) 927-938 .\nT. J. Schmugge, P. E. O’Neill, and J. R. Wang, IEEE Trans. Geosci. 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