Smart Farming for a Sustainable Future
Building tomorrow's agri-professionals through cutting-edge education and hands-on experience.
Optimize resource use efficiency by strengthening precision crop management.
Promote sustainable crop production under changing climatic conditions using cutting-edge technologies in agriculture.
Boost high-value crop production and quality under controlled environmental conditions.
Graduates emerge as highly competent agri-tech professionals equipped with modern skills.
Utilize precision tools such as IoT, sensors, and data analytics to optimize resource use and enhance crop management efficiency.
Develop sustainable farming models using smart technologies to address the adverse effects of climate change on agriculture.
Develop skills to manage and enhance the production and quality of high-value crops in controlled environmental conditions.
Gain hands-on experience in designing, setting up, and managing hydroponic systems for optimized crop growth.
Integrate advanced technologies like drones, AI, and automation to promote innovation and efficiency in modern agriculture.
Five integrated domains of smart agriculture technology defining this curriculum.
State-of-the-art infrastructure enabling real-world learning experiences.
Industry-standard software across spatial analysis, crop modelling, statistical computing, and drone processing.
Extensive practical training bridging classroom theory with real-world agri-tech applications.
Drone piloting and flight planning for agricultural applications.
Aerial image acquisition and processing using PIX4D for crop monitoring and field mapping.
Handling GPS devices, soil sensors, crop sensors, weather instruments, and nutrient diagnostic tools.
Calibration, testing, and field demonstrations of modern agricultural machinery and farm equipment.
GIS and remote sensing applications using QGIS, ArcGIS, and ENVI.
Data analysis, modelling, and statistical analysis using DSSAT, RStudio, SPSS, and Python.
Product development and technology validation for precision agriculture solutions.
Decision-support and analytical skill development for sustainable farming practices.
Connecting students with the agri-tech ecosystem through structured exposure programs.
Agro-industrial attachment programs for real-world operational exposure.
Workshops on smart agriculture technologies and emerging innovations.
Summer internships with leading agri-tech enterprises.
AI and Python training workshops for digital agri-tech competency.
Training programs extended to students from other universities.
Real-time field monitoring and drone-based crop assessment activities.
A unique interdisciplinary curriculum that is future-ready and industry-aligned.
Seven thoughtfully designed courses totalling 29 credits spanning theory, practicals, and a project.
| Course Code | Course Title | Credits | L+P+Project |
|---|---|---|---|
| CUAG2297 | Raising Crops under Automated Polyhouse | 3 | 1+2+0 |
| CUAG2298 | Soil-less Farming and Hydroponics Technology | 3 | 1+2+0 |
| CUAG2299 | Smart Irrigation and Nutrient Management | 3 | 1+2+0 |
| CUAG2300 | Management of High Value Cut Flowers and Vegetables under Controlled Environments | 3 | 0+3+0 |
| CUAG2294 | Management of Crops in Hydroponics | 3 | 0+3+0 |
| CUAG2295 | Use of Smart Tools for Precision Crop Management | 3 | 0+3+0 |
| CUAG2296 | AELP Project | 11 | 0+0+11 |
A visual journey through our laboratories, fields, and training sessions.
An expansive horizon of opportunities in the rapidly growing agri-tech ecosystem.
Click any video to watch on YouTube — demonstrations, field visits, and student activities.