awareBISA - Plant Health Analysis
aware

BISA

AI-Assisted Plant Health
Analysis

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AI-Assisted Plant Health Analysis

We design and build practical robots for the modern world. Our systems are created to operate in real environments, handle real tasks, and adapt to different use cases without unnecessary complexity. By focusing on reliability, modularity, and clean industrial design, we develop robotic platforms that scale with real needs and deliver consistent performance in everyday operation.

awareBISA brings AI-powered plant health analysis to agriculture. By combining multispectral imaging, NDVI mapping, and chlorophyll fluorescence data, our system reveals stress, nutrient deficiencies, and disease before they become visible to the human eye. From drone-based field surveys to in-situ robot sensors, BISA provides actionable insights for precision farming and sustainable crop management.

awareBISA - Crop Health Mapping
Health mapping and multispectral analysis for precision farming.

Go Beyond the Visible

Satellite and global imagery
Drone aerial survey
Robot and sensor data
Irrigation and water stress
Leaf-level analysis
Multi-source data: satellite, drone, robot sensors, irrigation, and leaf-level analysis.

Multi-Source Data & Comprehensive Workflow

We design and build practical robots for the modern world. Our systems are created to operate in real environments, handle real tasks, and adapt to different use cases without unnecessary complexity. By focusing on reliability, modularity, and clean industrial design, we develop robotic platforms that scale with real needs and deliver consistent performance in everyday operation.

control
RGB - ControlRGB
NDVI - ControlNDVI
ΦPo - ControlΦPo (Fv/Fm)
salt-stressed
RGB - Salt stressedRGB
NDVI - Salt stressedNDVI
ΦPo - Salt stressedΦPo (Fv/Fm)
NDVI
0.25 0.50 0.75
ΦPo
0.00 0.1 0.4 0.7 0.9
RGB, NDVI, and ΦPo (Fv/Fm) — control vs. salt-stressed comparison.

From RGB to Photosynthetic Efficiency

We design and build practical robots for the modern world. Our systems are created to operate in real environments, handle real tasks, and adapt to different use cases without unnecessary complexity. By focusing on reliability, modularity, and clean industrial design, we develop robotic platforms that scale with real needs and deliver consistent performance in everyday operation.

This section is under development.