Atmospheric Remote Sensing by Microwave Radiometry
暂无分享,去创建一个
[1] L. Emmons,et al. Measurements of stratospheric hydrogen cyanide at McMurdo Station, Antarctica: Further evidence of winter stratospheric subsidence? , 1989 .
[2] Hans J. Liebe,et al. MPM—An atmospheric millimeter-wave propagation model , 1989 .
[3] Steven E. Robinson,et al. The profile algorithm for microwave delay estimation from water vapor radiometer data , 1988 .
[4] P. Rosenkranz,et al. Interference coefficients for overlapping oxygen lines in air , 1988 .
[5] J. Johansson,et al. Geodesy by radio interferometry: Optimization of wet path delay algorithms using microwave radiometer data , 1987 .
[6] David Hogg,et al. Wet Reflectors in Millimeter-Wave Radiometry-Expenrment and Theory , 1986, IEEE Transactions on Geoscience and Remote Sensing.
[7] R. J. Hill,et al. Water vapor‐absorption line shape comparison using the 22‐GHz line: The Van Vleck‐Weisskopf shape affirmed , 1986 .
[8] Stephen Keihm,et al. Optimum Strategies and Performance for the Remote Sensing of Path-Delay using Ground-Based Microwave Radiometers , 1985, IEEE Transactions on Geoscience and Remote Sensing.
[9] G. M. Resch,et al. Inversion Algorithms for Water Vapor Radiometers Operating at 20.7 and 31.4 Ghz , 1984 .
[10] G. Resch. Another Look at the Optimum Frequencies for a Water Vapor Radiometer , 1984 .
[11] P. J. Napier,et al. Radiometric correction of atmospheric path length fluctuations in interferometric experiments. [in radio astronomy] , 1984 .
[12] William L. Smith,et al. The Retrieval of Atmospheric Profiles from VAS Geostationary Radiance Observations , 1983 .
[13] D. A. Merritt,et al. An Automatic Profiler of the Temperature, Wind and Humidity in the Troposphere. , 1983 .
[14] S. Slobin,et al. Microwave noise temperature and attenuation of clouds: Statistics of these effects at various sites in the United States, Alaska, and Hawaii , 1982 .
[15] G. Elgered. Tropospheric wet path-delay measurements , 1982 .
[16] E. Westwater,et al. Ground-based microwave radiometric retrieval of precipitable water vapor in the presence of clouds with high liquid content , 1980 .
[17] J. Howard,et al. A Dual-Channel Microwave Radiometer for Measurement of Precipitable Water Vapor and Liquid , 1979, IEEE Transactions on Geoscience Electronics.
[18] Sien-Chong Wu,et al. Optimum frequencies of a passive microwave radiometer for tropospheric path-length correction , 1979 .
[19] D. Staelin,et al. An Extended Kalman-Bucy Filter for Atmospheric Temperature Profile Retrieval with a Passive Microwave Sounder , 1978 .
[20] Ed R. Westwater,et al. The accuracy of water vapor and cloud liquid determination by dual‐frequency ground‐based microwave radiometry , 1978 .
[21] A. Deepak,et al. Inversion Methods in Atmospheric Remote Sounding , 1977 .
[22] C. Rodgers,et al. Retrieval of atmospheric temperature and composition from remote measurements of thermal radiation , 1976 .
[23] D. Deirmendjian. Far-Infrared and Submillimeter Wave Attenuation by Clouds and Rain , 1975 .
[24] O. Strand. Theory and methods related to the singular-function expansion and Landweber's iteration for integral equations of the first kind , 1974 .
[25] C. Rodgers,et al. Remote sounding of the atmospheric temperature profile in the presence of cloud , 1970 .
[26] M. Chahine. Inverse Problems in Radiative Transfer: Determination of Atmospheric Parameters , 1970 .
[27] D. Staelin,et al. The estimation of tropospheric elctrical path length by microwave radiometry , 1970 .
[28] N. Gaut. Studies of atmospheric water vapor by means of passive microwave techniques , 1968 .
[29] Otto Neall Strand,et al. Statistical Information Content of Radiation Measurements used in Indirect Sensing , 1968 .
[30] O. Strand,et al. Minimum-RMS Estimation of the Numerical Solution of a Fredholm Integral Equation of the First Kind , 1968 .
[31] D. Wark,et al. INDIRECT MEASUREMENTS OF ATMOSPHERIC TEMPERATURE PROFILES FROM SATELLITES: VI. HIGH-ALTITUDE BALLOON TESTING , 1967 .
[32] A. C. Menius,et al. TROPOSPHERIC REFRACTION CORRECTIONS USING A MICROWAVE RADIOMETER. , 1964 .
[33] M. Foster. An Application of the Wiener-Kolmogorov Smoothing Theory to Matrix Inversion , 1961 .
[34] G. E. Becker,et al. Water Vapor Absorption of Electromagnetic Radiation in the Centimeter Wave-Length Range , 1946 .
[35] Hans J. Liebe,et al. A Contribution to Modeling Atmospheric Millimeter-wave Properties , 1987 .
[36] M. Goldberg,et al. Pattern recognition in the satellite temperature retrieval problem , 1985 .
[37] D. Solimini,et al. Inversion of ground‐based radiometric data by Kalman filtering , 1981 .
[38] J. Richter. REMOTE RADAR SENSING OF ATMOSPHERIC WATER VAPOR FLUCTUATIONS , 1980 .
[39] J. Cooney,et al. ACQUISITION OF ATMOSPHERIC WATER VAPOR PROFILES BY A SOLAR BLIND RAMAN LIDAR , 1980 .
[40] A. N. Tikhonov,et al. Solutions of ill-posed problems , 1977 .
[41] H. Fleming. COMPARISON OF LINEAR INVERSION METHODS BY EXAMINATION OF THE DUALITY BETWEEN ITERATIVE AND INVERSE MATRIX METHODS , 1977 .
[42] R. Crane. Refraction effects in the neutral atmosphere. , 1976 .
[43] Otto Neall Strand,et al. Statistical Estimation of the Numerical Solution of a Fredholm Integral Equation of the First Kind , 1968, JACM.