Powerful platform allows you to design on-farm irrigation systems and manage all your agricultural data in one place.
Plan, design, and operate your water allocation with ease.
Create and edit the on-farm designing project. Users can layout site location, import ground level data of site survey, layout irrigation canal, assign land plot to the canal, locate hydraulic structure and download BOQ and construction drawing.
Create a land plot for a project site. Users can add new land-plot, edit the existing land plot, merge, split, or divide a plot. Mobile application is used to collect field attribute data and update land using.
A crop monitor is a dashboard that displays a chart, map, and data of crops such as cropping patterns, crop maps, crop calendars, and field monitoring data.
Users can specify a water allocation schedule as a weekly schedule due to the cropping pattern. The gate opening is a result from the hydrodynamic model.
Augmented Reality makes your photos and videos from mobile preview and insert an on-farm site designing result such as plot boundary, canal, and hydraulic structures for site members.
Implement a revolutionary agnostic approach to measure the following elements: Soil Moisture, Temperature, Flow Data, Rain Gauge, Weather Stations, Fertigation, and Effluent Fertilizer.
In the process of hydraulics systems design, various software simulations are used. However, the increase of efficiency of the designed hydraulic systems can be achieved in two ways: by making design modifications based on reliability theory, on one hand, or based on monitoring of system operating parameters, on the other.
In this paper, a case study of the improvement of a designed and implemented hydraulic system is reviewed, using those two approaches. Based on the data collected by monitoring the system operating parameters, and the system reliability analysis, it was possible to increase the efficiency of the hydraulic system either at the initial design stage, or during system realization.