Predicting soil electro-conductivity using Sentinel-1 images
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Abstract
The quality and yield of a soil can be measured by using a wide range of
soil indicators. One such indicator is soil’s electro-conductivity which is
an excellent indicator of the presence of soil nutrients. This work aims to
create a machine learning model to predict the soil’s electro-conductivity
(EC) using radar images from the satellite Sentinel-1. Using EC readings
from 14 corn field parcels and Sentinel-1 readings over the course of one
agriculture year, several regression models were generated. These mod-
els were designed using information from the full agriculture year or only
3 months, both or only one of the VV and VH polarisations. The results
show that when using a full year data VV and VH polarisations are able to
generate models with similar performance (R2 of 0.888 for VH and 0.884
for VV) but when using only 3 months data, only April to June trimester
using both polarisations are able to reach similar a performance (R2 of
0.867); moreover VH polarisation seems to carry out more descriptive in-
formation when compared with VV (specially when using only 3 months
Radar data was collected from two time windows each corresponding
data). Finally, performance results seem to be independent of the yearly
radar data time-window.
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Citation
Eduardo Medeiros, Sajib Ahmed, Teresa Gonçalves, and Luı́s Rato. Predicting soil
electro-conductivity using Sentinel-1 images. In Proceedings of the 27th Portuguese Con-
ference on Pattern Recognition, RECPAD 2021, 2021