השוואת שיטות
סקרו את השיטות שבחרתם זו לצד זו; שורות שבהן יש הבדל מודגשות.
| חקלאות מדייקת עם NDVI× | תזמון השקיה באמצעות ETo× | |
|---|---|---|
| תחום | אגרונומיה | אגרונומיה |
| משפחה | Process / pipeline | Process / pipeline |
| שנת המקור≠ | 1973 | 1998 |
| הוגה השיטה≠ | John W. Rouse, Richard H. Haas | Richard G. Allen, Luis S. Pereira, FAO |
| סוג≠ | Geospatial monitoring pipeline | Water balance pipeline |
| מקור מכונן≠ | Rouse, J. W., Haas, R. H., Schell, J. A., & Deering, D. W. (1973). Monitoring vegetation systems in the Great Plains with ERTS. In Third Earth Resources Technology Satellite symposium, Washington, DC. link ↗ | Allen, R. G., Pereira, L. S., Raes, D., Smith, M., & Higgins, R. B. (1998). Crop evapotranspiration: Guidelines for computing crop water requirements. FAO Irrigation and Drainage Paper 56, Rome. link ↗ |
| כינויים | NDVI remote sensing, Vegetation index monitoring, Satellite crop monitoring | ETo-based irrigation, Water balance scheduling, Evapotranspiration scheduling |
| קשורות | 5 | 5 |
| תקציר≠ | Precision Agriculture with NDVI is a geospatial monitoring pipeline for assessing crop vigor, health, and productivity using the Normalized Difference Vegetation Index (NDVI) derived from satellite or drone imagery. Developed by Rouse and colleagues (1973), this method enables rapid, non-destructive assessment of spatial variation in crop performance and informs variable-rate management decisions. | Irrigation Scheduling with ETo is a water balance pipeline for determining when and how much to irrigate based on reference evapotranspiration (ETo), soil properties, and crop water demand. Standardized by the FAO in the Penman-Monteith equation and widely adopted globally, this method enables efficient water use in irrigated agriculture. |
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