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A Review of the Application of Optical and Radar Remote Sensing Data Fusion to Land Use Mapping and Monitoring

Remote Sensing · 2016 · Vol. 8(1) · pp. 70–70
Neha JoshiMatthias BaumannAndrea EhammerRasmus FensholtKenneth GroganPatrick HostertMartin Rudbeck JepsenTobias KuemmerlePatrick MeyfroidtEdward T. A. MitchardJohannes ReicheCasey M. RyanBjörn Waske

Abstract

The wealth of complementary data available from remote sensing missions can hugely aid efforts towards accurately determining land use and quantifying subtle changes in land use management or intensity. This study reviewed 112 studies on fusing optical and radar data, which offer unique spectral and structural information, for land cover and use assessments. Contrary to our expectations, only 50 studies specifically addressed land use, and five assessed land use changes, while the majority addressed land cover. The advantages of fusion for land use analysis were assessed in 32 studies, and a large majority (28 studies) concluded that fusion improved results compared to using single data sources. Study sites were small, frequently 300–3000 km 2 or individual plots, with a lack of comparison of results and accuracies across sites. Although a variety of fusion techniques were used, pre-classification fusion followed by pixel-level inputs in traditional classification algorithms (e.g., Gaussian maximum likelihood classification) was common, but often without a concrete rationale on the applicability of the method to the land use theme being studied. Progress in this field of research requires the development of robust techniques of fusion to map the intricacies of land uses and changes therein and systematic procedures to assess the benefits of fusion over larger spatial scales.

Remote Sensing in AgricultureRemote-Sensing Image ClassificationGeochemistry and Geologic MappingLand coverRemote sensingLand useRadarSensor fusionComputer scienceFusionField (mathematics)Environmental scienceData mining

Funding

  • Sight Research UK
  • European Commission
  • Deutsche Forschungsgemeinschaft
  • Volkswagen Foundation
  • Einstein Stiftung Berlin
  • Natural Environment Research Council
Citations
641
FWCI
58.26
field-weighted impact
References
113
Percentile
100%
vs. same field & year
Citations per year
Cited by
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References
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Environmental Research Letters · 2011 · 1,497 citations
Death to Kappa: birth of quantity disagreement and allocation disagreement for accuracy assessment
International Journal of Remote Sensing · 2011 · 1,955 citations
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International Journal of Remote Sensing · 1998 · 2,176 citations
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