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Sentinel-1 interferometric coherence and backscattering analysis for crop monitoring

dc.contributor.authorNasirzadehdizaji, Rouhollah
dc.contributor.authorÇakir, Ziyadin
dc.contributor.authorSanli, Fusun Balik
dc.contributor.authorAbdikan, Saygin
dc.contributor.authorPepe, Antonio
dc.contributor.authorCalò, Fabiana
dc.contributor.ituauthorÇakır, Ziyadin
dc.date.accessioned2026-01-25T10:00:34Z
dc.date.issued2021-06-01
dc.description.abstractIn this study, we investigate the synergic use of synthetic aperture radar (SAR) backscattering (i.e., sigma nought ?) and InSAR coherence (?) maps as a tool for crop growth monitoring. Experiments were carried out using Sentinel-1 TOPS SAR data and field observations in one of the State General Directorate of Agriculture Enterprise farms in Konya (Central Turkey). The phenological stages of maize, sunflower, and wheat have been analyzed and compared to coherence and backscatter time series of Sentinel-1 data on multiple tracks and polarizations. The results evidence a strong correlation between different phenological stages of the crops and the InSAR coherence. Specifically, the observed coherence values are the highest for the maize (?, = 0.47) and sunflower (? = 0.49, ? = 0.48) after plowing the fields and seeding the crops. The coherence decreases with the plants' growth and reaches the lowest values for maize, sunflower, and wheat (? = 0.08, ? = 0.09 and ? = 0.07, respectively) when the ground is completely covered by plants. Then, a coherence increase is observed after the harvesting time (? = 0.51, ? = 0.50 and ? = 0.42 for maize, sunflower, and wheat, respectively). In terms of multi-temporal SAR backscattering, we find significant changes of the ? values during the crops' growing stages due to the changes in their leaf geometry and physical structure. The highest ? values for the maize, sunflower, and wheat are obtained as -9.18 dB, -5.24 dB and -10.05 dB, respectively, for the ascending orbit, in mid growing stages. Results show the improved capacity of SAR-driven measurements for agriculture monitoring and precise farming activities when InSAR coherence and backscattering are synergistically used. Specifically, the coherence allows estimating the main growth stages of the different crop types. Moreover, SAR backscattering provides reliable information on the whole growth stages during the agricultural season, and it might be profitably exploited for crop assessment.
dc.description.urihttps://doi.org/10.1016/j.compag.2021.106118
dc.description.urihttps://dx.doi.org/10.1016/j.compag.2021.106118
dc.description.urihttps://publications.cnr.it/doc/458325
dc.description.urihttp://www.cnr.it/prodotto/i/458325
dc.description.urihttp://www.scopus.com/record/display.url?eid=2-s2.0-85103970589&origin=inward
dc.description.urihttps://avesis.yildiz.edu.tr/publication/details/b0691939-1fda-4be9-a370-a79c6cdd19c3/oai
dc.description.urihttps://hdl.handle.net/20.500.14243/525129
dc.identifier.doi10.1016/j.compag.2021.106118
dc.identifier.issn0168-1699
dc.identifier.openairedoi_dedup___::7b324a91f9caa2ee295cadd8367a3ebf
dc.identifier.orcid0000-0003-1913-890x
dc.identifier.orcid0000-0003-3050-5619
dc.identifier.orcid0000-0002-3310-352x
dc.identifier.orcid0000-0002-7843-3565
dc.identifier.orcid0000-0002-0174-5894
dc.identifier.startpage106118
dc.identifier.urihttps://hdl.handle.net/11527/48942
dc.identifier.volume185
dc.language.isoeng
dc.publisherElsevier BV
dc.relation.ispartofComputers and Electronics in Agriculture
dc.rightsCLOSED
dc.sdg.typeGoal 2: Zero Hunger
dc.subjectInSAR
dc.subjectmonitoring
dc.subjectSAR intensities
dc.subjectAgriculture
dc.subjectCrops
dc.subjectMultitemporal Sentinel-1
dc.subjectCoherence
dc.titleSentinel-1 interferometric coherence and backscattering analysis for crop monitoring
dc.typeArticle
dspace.entity.typePublication
person.identifier.orcid0000-0003-3050-5619

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