How It Works
When a satellite passes over your registered fields, its multispectral sensor captures reflected energy across several spectral bands — visible light (red, green, blue), near-infrared (NIR), red-edge, and shortwave infrared (SWIR). Each band reveals different characteristics of plant physiology and soil conditions. The platform handles the full workflow for you:- Ingestion — Imagery is automatically pulled for all registered field boundaries as new scenes become available from connected satellite providers.
- Processing — Raw digital numbers are converted to surface reflectance through atmospheric correction algorithms, removing distortions caused by haze, aerosols, and solar angle.
- Analysis — Corrected bands are fed into vegetation index calculations and anomaly detection models, producing the maps and alerts you see in your dashboard.
Key Remote Sensing Inputs
Multispectral Imagery
Captures reflected light in discrete bands (red, green, NIR, red-edge, SWIR). The primary data source for vegetation index calculations such as NDVI, NDRE, and NDWI.
Thermal Imagery
Measures surface temperature in the thermal infrared range. Used to detect crop water stress, irrigation uniformity issues, and early signs of disease or frost damage.
SAR (Synthetic Aperture Radar)
Uses microwave pulses that penetrate cloud cover. Provides crop structure and soil moisture data even when optical imagery is unavailable due to persistent cloud or smoke.
Drone Imagery
Sub-meter resolution imagery captured on demand. Upload processed orthomosaics directly to the platform to supplement satellite coverage with high-detail field scouting data.
Resolution & Revisit Rates
Different imagery sources offer different trade-offs between spatial detail and how frequently they revisit your fields. Use the table below to understand what to expect from each source.Cloud cover can prevent satellites from capturing usable optical imagery. When a scene over your field is obscured, the platform automatically falls back to the most recent clear-sky image and marks it with a timestamp so you always know when the data was acquired. SAR-derived layers remain available regardless of cloud conditions.