From field data to controlled irrigation.
Weather-responsive management that evaluates rainfall forecasts, temperature, wind and evaporative demand alongside irrigation schedules.
How it works
Separate forecast rain from measured rain. Rain probability is not rainfall depth. Check data age and consider postponing sprinkler irrigation in strong wind. Set frost and extreme-weather thresholds for the planting, method and site.
Data used
Hourly forecasts; measured rainfall; ET₀; wind; temperature; forecast update time; site coordinates.

Design and commissioning
Define scope by evaluating site topology, planting and soil, selected devices, sensors and software version together. For retrofit projects, establish valve/coil compatibility, measurement points, communication coverage and operational responsibilities during the survey.
Verify postponement, notifications and next-review time for forecast outages, measured rain and wind-threshold scenarios.
The next step
Probabilistic forecasts, local weather-station calibration and uncertainty-aware water-budget optimisation.
This section describes development and project-specific integration objectives. It is not a claim of standard product availability or guaranteed performance; implemented functions are defined in the quotation and acceptance criteria.
Applications
Municipal parks, public gardens, university campuses, industrial-zone landscapes, residential estates, hotels, sports facilities and road medians. As zone and site counts grow, standard asset records, traceable actions and measured management become essential.
Plan your landscape irrigation project with us.
Share the site area, valve count, existing connectivity and project objectives. We can define device selection, coverage survey, integration and pilot requirements together.
Request a project quotationContact our technical team


