Layer Model with Random Spheroidal Scatterers for Remote Sensing of Vegetation Canopy
- 1 January 1993
- journal article
- Published by Taylor & Francis in Journal of Electromagnetic Waves and Applications
- Vol. 7 (1) , 49-75
- https://doi.org/10.1163/156939393x01074
Abstract
A layer model is developed and applied to interpret radar backscattering coefficients at 5.3 GHz for a soybean canopy. The canopy is modeled as a random medium containing spheroidal scatterers for the leaves. The data were taken over an extended time period from early to late stage of the vegetation. The theoretical results and the experimental data are in good agreement. The lateral correlation length is observed to be highly correlated with the canopy fractional volume. With consideration of the interrelations among biophysical parameters, the model is then used to simulate backscattering coefficients under various conditions. The results provide sensitivity domains of radar responses to soil moisture and vegetation biomass for inversion assessment. Furthermore, the polarization signatures of the vegetation canopy are synthesized to illustrate structural information conveyed by polarimetric data.Keywords
This publication has 4 references indexed in Scilit:
- Scattering from Randomly Oriented Scatterers with Strong Permittivity FluctuationsJournal of Electromagnetic Waves and Applications, 1990
- Microwave Dielectric Spectrum of Vegetation - Part II: Dual-Dispersion ModelIEEE Transactions on Geoscience and Remote Sensing, 1987
- Microwave Dielectric Behavior of Wet Soil-Part 1: Empirical Models and Experimental ObservationsIEEE Transactions on Geoscience and Remote Sensing, 1985
- Application of Strong Fluctuation Random Medium Theory to Scattering from Vegetation-Like Half SpaceIEEE Transactions on Geoscience and Remote Sensing, 1981