Remote Sensing · 2012 · 150 citations · 63 references
Precision AgricultureEnvironmental MonitoringVegetation IndicesBotanyEngineeringLand UseMultispectral ImagingForestryLand DegradationTerrestrial SensingEarth ScienceSocial SciencesBiogeographyForest MeteorologyCrop MonitoringCrop MarksArchaeological Crop MarksGeographySpectral CapabilityRadiometryPrecision Soil MappingNarrowband Vegetation IndicesHyperspectral ImagingDeforestationLand Cover MapRemote SensingOptical Remote Sensing
Several studies in the past have examined the spectral capability of multispectral and hyperspectral imagery for the identification of crop marks, while recent studies have applied different vegetation indices in order to support remote sensing archaeological applications. However, the use of vegetation indices for the detection of crop marks lacks in accuracy assessment and critical evaluation. In this study, 71 vegetation indices were indexed, from the relevant bibliography, and evaluated for their potential to detect such crop marks. During this study, several ground spectroradiometric campaigns took place, in a controlled archaeological environment in Cyprus, cultivated with barley crops, during a complete phenological cycle (2011–2012). All vegetation indices, both broadband and narrowband, were evaluated for their separability performance, and the results were presented through tables and diagrams. In the end, the use of more than one vegetation index is suggested in order to enhance the final results. In fact, several not widely used vegetation indices are suggested and evaluated using both Landsat TM and EO-1 Hyperion images.
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A modified soil adjusted vegetation index
Jiaguo Qi, Abdelghani Chehbouni, Alfredo Huete et al. · Remote Sensing of Environment · 1994 · 3.2K citations