DocumentCode
678984
Title
Soil backscatter measurement with impulse (ultra-wideband) radar
Author
Tan, Adrian Eng-Choon ; Richards, Sean ; Platt, Ian ; Woodhead, Ian
Author_Institution
Lincoln Agritech Ltd., Lincoln Univ., Christchurch, New Zealand
fYear
2013
fDate
3-5 Dec. 2013
Firstpage
669
Lastpage
673
Abstract
We are developing a method that allows remote soil moisture measurement from electromagnetic sensors that are mounted on irrigators. To do that, techniques from the impulse (ultra-wideband) radar are applied, which enables the measurement of soil reflection at resolutions smaller than the antenna beamwidths of the radar. We derive a relationship between the radar´s parameter (i.e. pulse-width, antenna parameters, radar location and sensing angle with respect to ground level) and the soil surface resolution that the radar is capable of achieving. In addition, we also propose a method to calculate the radar backscatter coefficient of the ground from the signals that are received by the radar. Using the proposed method, radar measurements are performed on wet pasture to measure the radar backscatter coefficients at different grazing angles. Measured results show that radar backscatter coefficients can be reliably measured at the angles up to 60 degrees from nadir. This paper presents the progress in our ongoing work to develop a small and practical remote soil moisture measurement for smart irrigation.
Keywords
backscatter; electromagnetic devices; electromagnetic wave reflection; humidity sensors; irrigation; moisture measurement; optical variables measurement; remote sensing by radar; soil; ultra wideband radar; electromagnetic sensor; impulse radar; radar backscatter coefficient calculation; radar location; radar measurement; radar parameter; remote soil moisture measurement; sensing angle; smart irrigation; soil backscatter measurement; soil reflection measurement; soil surface resolution; Antenna measurements; Backscatter; Radar antennas; Radar measurements; Soil measurements; Soil moisture; radar techniques; smart irrigation; soil moisture sensing; time-domain reflectometry;
fLanguage
English
Publisher
ieee
Conference_Titel
Sensing Technology (ICST), 2013 Seventh International Conference on
Conference_Location
Wellington
ISSN
2156-8065
Print_ISBN
978-1-4673-5220-8
Type
conf
DOI
10.1109/ICSensT.2013.6727737
Filename
6727737
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