Models are developed for the apparent temperature and backscattering coefficient of vegetated terrain to illustrate the effects of vegetation on the sensitivity of these parameters to variations of soil moisture. Three types of terrain are simulated for both the passive and the active case: a uniform canopy over a smooth surface, plant rows on a smooth surface, and plant rows on a rough surface. In each case the canopy is defined by its overall dimensions and by its electric permittivity, which is determined from Weiner model for dielectric mixture. Emission and scattering from both the soil and the canopy are considered, but atmospheric effects are neglected. Calculated data indicate that the sensitivity of the apparent temperature and bac...
Three tasks related to soil moisture sensing at microwave wavelengths were undertaken: (1) analysis ...
Many impacts of climate change will be expressed in the hydrologic cycle. Microwave radiometry is se...
We have developed a discrete microwave scattering model, describing the radar backscattering coeffic...
This paper reports the application to vegetation canopies of a coherent model for the propagation of...
International audienceThis paper reports the application to vegetation canopies of a coherent model ...
In passive microwave remote sensing of the earth, a theoretical model that utilizes the radiative tr...
Microwave remote sensing models of vegetated terrain are investigated. The problem is to determine c...
A frequency modulated continuous wave C-band (4.8 GHz) scatterometer was mounted on an aerial lift t...
Two series of carefully controlled experiments were conducted. First, plots of important crops (corn...
Research is being conducted on microwave scattering from vegetation. The objective is to develop tec...
42-51Dielectric constant (ε′) and dielectric loss (ε′′) of artificially moistened soil of Alwar ha...
In the study of radar backscattering from vegetated terrain, it is important to understand how the e...
Passive microwave remote sensing has shown potential for monitoring near surface soil moisture. This...
Many impacts of climate change will be expressed in the hydrologic cycle. Microwave radiometry is se...
The radiometric measurements over bare field and fields covered with grass, soybean, corn, and alfal...
Three tasks related to soil moisture sensing at microwave wavelengths were undertaken: (1) analysis ...
Many impacts of climate change will be expressed in the hydrologic cycle. Microwave radiometry is se...
We have developed a discrete microwave scattering model, describing the radar backscattering coeffic...
This paper reports the application to vegetation canopies of a coherent model for the propagation of...
International audienceThis paper reports the application to vegetation canopies of a coherent model ...
In passive microwave remote sensing of the earth, a theoretical model that utilizes the radiative tr...
Microwave remote sensing models of vegetated terrain are investigated. The problem is to determine c...
A frequency modulated continuous wave C-band (4.8 GHz) scatterometer was mounted on an aerial lift t...
Two series of carefully controlled experiments were conducted. First, plots of important crops (corn...
Research is being conducted on microwave scattering from vegetation. The objective is to develop tec...
42-51Dielectric constant (ε′) and dielectric loss (ε′′) of artificially moistened soil of Alwar ha...
In the study of radar backscattering from vegetated terrain, it is important to understand how the e...
Passive microwave remote sensing has shown potential for monitoring near surface soil moisture. This...
Many impacts of climate change will be expressed in the hydrologic cycle. Microwave radiometry is se...
The radiometric measurements over bare field and fields covered with grass, soybean, corn, and alfal...
Three tasks related to soil moisture sensing at microwave wavelengths were undertaken: (1) analysis ...
Many impacts of climate change will be expressed in the hydrologic cycle. Microwave radiometry is se...
We have developed a discrete microwave scattering model, describing the radar backscattering coeffic...