| _version_ | 1866902073492111360 |
|---|---|
| author | Caffiero, Esteban |
| author_facet | Caffiero, Esteban |
| contents | <div dir="auto"> <h1>Spectral Indicator</h1> </div> <div dir="auto"> <h3>UAV-Based Multispectral Analysis System with Spectral Index Calculator</h3> </div> <div dir="auto"> <h2>Description (English)</h2> </div> <p dir="auto">A Python-based software for visualization, editing, calibration, and processing of multispectral GeoTIFF images.<br>The system allows the computation of up to <strong>40 spectral indices</strong> using the <strong>Green, Red, Red Edge, and Near-Infrared (NIR)</strong> bands.</p> <p dir="auto">It also provides an intuitive and organized workflow for extracting average information from user-defined <strong>Regions of Interest (ROIs)</strong>, which can be easily and manually created.</p> <div dir="auto"> <h2>Descripción (Español)</h2> </div> <p dir="auto">Programa desarrollado en Python para la visualización, edición, calibración y procesamiento de imágenes multiespectrales en formato <strong>GeoTIFF</strong>.<br>El sistema permite calcular hasta <strong>40 índices espectrales</strong> a partir de las bandas <strong>Green, Red, Red Edge y Near-Infrared (NIR)</strong>.</p> <p dir="auto">Además, permite de manera simple y ordenada la extracción de información promedio mediante <strong>Regiones de Interés (ROIs)</strong> definidas por el usuario, las cuales pueden ser creadas de forma manual y sencilla.</p> <div dir="auto"> <h2>Main Features</h2> </div> <ul> <li>Multispectral GeoTIFF visualization and processing</li> <li>Radiometric calibration</li> <li>Computation of 40 spectral indices</li> <li>ROI-based statistical extraction</li> <li>UAV / Drone oriented workflow</li> <li>Fully developed in Python</li> </ul> <div dir="auto"> <h2>Technologies</h2> </div> <ul> <li>Python</li> <li>NumPy</li> <li>Rasterio / GDAL</li> <li>OpenCV</li> <li>Matplotlib</li> <li>Tkinter / PyQt (si aplica)</li> </ul> <div dir="auto"> <h2>Use Case</h2> </div> <p dir="auto">Designed for applications in:</p> <ul> <li>Precision agriculture</li> <li>Remote sensing</li> <li>Crop monitoring</li> <li>Vegetation analysis</li> <li>UAV data processing</li> <li>Scientific research</li> </ul> <div dir="auto"> <h3>Author</h3> </div> <p dir="auto"><strong>Author:</strong> Esteban Caffiero<br><strong>Affiliation:</strong> Universidad de Concepción, Chile<br><strong>Roles:</strong> Agricultural Engineer, Scientific Software Developer<br><strong>Contact:</strong> <a href="mailto:ecaffiero2020@udec.cl">ecaffiero2020@udec.cl</a> |</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_18623816 |
| institution | Zenodo |
| language | |
| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | UAV-Based Multispectral Analysis System with Spectral Index Calculator Caffiero, Esteban <div dir="auto"> <h1>Spectral Indicator</h1> </div> <div dir="auto"> <h3>UAV-Based Multispectral Analysis System with Spectral Index Calculator</h3> </div> <div dir="auto"> <h2>Description (English)</h2> </div> <p dir="auto">A Python-based software for visualization, editing, calibration, and processing of multispectral GeoTIFF images.<br>The system allows the computation of up to <strong>40 spectral indices</strong> using the <strong>Green, Red, Red Edge, and Near-Infrared (NIR)</strong> bands.</p> <p dir="auto">It also provides an intuitive and organized workflow for extracting average information from user-defined <strong>Regions of Interest (ROIs)</strong>, which can be easily and manually created.</p> <div dir="auto"> <h2>Descripción (Español)</h2> </div> <p dir="auto">Programa desarrollado en Python para la visualización, edición, calibración y procesamiento de imágenes multiespectrales en formato <strong>GeoTIFF</strong>.<br>El sistema permite calcular hasta <strong>40 índices espectrales</strong> a partir de las bandas <strong>Green, Red, Red Edge y Near-Infrared (NIR)</strong>.</p> <p dir="auto">Además, permite de manera simple y ordenada la extracción de información promedio mediante <strong>Regiones de Interés (ROIs)</strong> definidas por el usuario, las cuales pueden ser creadas de forma manual y sencilla.</p> <div dir="auto"> <h2>Main Features</h2> </div> <ul> <li>Multispectral GeoTIFF visualization and processing</li> <li>Radiometric calibration</li> <li>Computation of 40 spectral indices</li> <li>ROI-based statistical extraction</li> <li>UAV / Drone oriented workflow</li> <li>Fully developed in Python</li> </ul> <div dir="auto"> <h2>Technologies</h2> </div> <ul> <li>Python</li> <li>NumPy</li> <li>Rasterio / GDAL</li> <li>OpenCV</li> <li>Matplotlib</li> <li>Tkinter / PyQt (si aplica)</li> </ul> <div dir="auto"> <h2>Use Case</h2> </div> <p dir="auto">Designed for applications in:</p> <ul> <li>Precision agriculture</li> <li>Remote sensing</li> <li>Crop monitoring</li> <li>Vegetation analysis</li> <li>UAV data processing</li> <li>Scientific research</li> </ul> <div dir="auto"> <h3>Author</h3> </div> <p dir="auto"><strong>Author:</strong> Esteban Caffiero<br><strong>Affiliation:</strong> Universidad de Concepción, Chile<br><strong>Roles:</strong> Agricultural Engineer, Scientific Software Developer<br><strong>Contact:</strong> <a href="mailto:ecaffiero2020@udec.cl">ecaffiero2020@udec.cl</a> |</p> |
| title | UAV-Based Multispectral Analysis System with Spectral Index Calculator |
| url | https://doi.org/10.5281/zenodo.18623816 |