Remote management and smart irrigation system for municipal green areas

Irridea Smart optimizes municipal irrigation using real-time meteorological and soil data.
Up to 35% proven savings in water consumption.

Can a municipality manage the irrigation of green areas without real-time data?

Traditional systems, based on fixed schedules, do not take into account meteorological variables and soil parameters when adjusting irrigation, missing out on a potential for reducing consumption that can reach up to 35%.

For example, after several consecutive days of rain or with high levels of ambient humidity, the system continues to water according to schedule, even if the soil does not need it.

Furthermore, they lack the tools to generate technical indicators that allow for objective measurement and evaluation of water efficiency , limiting the capacity for analysis, budget justification, and optimization.

Unpredictable climate scenarios

Need to adapt irrigation to changing and extreme weather conditions.

Lack of traceability in conventional systems

Lack of precise metrics to evaluate consumption, efficiency, and performance.

Need to optimize water use

Management models aimed at reducing consumption without compromising plant quality.

New climate dynamics and the need to maximize every cubic meter of water require us to move beyond traditional irrigation models and advance towards smarter, more efficient and adaptive systems.

What is Irridea Smart?

Irridea Smart is a remote management and intelligent irrigation system for urban green areas (parks and gardens) that optimizes irrigation times and volumes by analyzing real-time meteorological and soil data.

Designed for the city, this solution allows for the centralized management of irrigation sectors , adapting each action to the climatic conditions and the specific needs of the green areas.

Functionalities of the Irridea Smart remote management and intelligent irrigation system

IPex30
Dynamic adjustment of irrigation based on meteorological data

Irridea Smart analyzes variables such as temperature, precipitation, solar radiation and evapotranspiration in real time to automatically recalculate irrigation needs, avoiding static schedules.

Irridea Smart allows you to individually control and optimize each irrigation sector, adapting the programming to the specific needs of each park, garden or plant species.

Irridea Smart is designed under open communication standards , allowing its integration with municipal platforms and other existing urban systems.

This feature facilitates long-term technological evolution.

Irridea Smart allows centralized monitoring of irrigation sectors, devices and weather stations, with remote operation and immediate adjustment capabilities.

The system provides auditable data on consumption, water efficiency and operational performance, facilitating the preparation of technical reports and the evaluation of the service.

The Murcia City Council has managed to reduce water consumption in its green areas by around 35% thanks to the implementation of Irridea Smart , complemented by the rains recorded in recent months.

The solution has enabled the optimization and remote management of over 20,000 sprinkler systems, adjusting irrigation times to the actual needs of each green space. This translates into reduced costs, more efficient and responsible water use, and early detection of leaks and malfunctions for more effective service management.

Success story

The city of Murcia saves 35% of water thanks to smart irrigation systems and rainfall.

How does Irridea Smart work?

Collection of meteorological and soil data

The system collects real-time information from weather stations owned or integrated into the municipality and sensors.

algorithmic_processing

Algorithmic processing

Irridea Smart has advanced algorithms capable of cross-referencing meteorological data with agronomic parameters.

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Automatic irrigation adjustment

The system dynamically recalculates irrigation needs, avoiding fixed schedules and optimizing water consumption.

Monitoring and traceability

All adjustments and consumption are recorded on the platform, allowing the generation of technical indicators and auditable reports.

Real-world deployment of Irridea Smart in Spain

Irridea Smart is implemented in municipalities of varying sizes and complexity: from large cities with extensive networks of green areas to towns that manage smaller areas.

These projects demonstrate that intelligent urban irrigation management is not a solution reserved for large infrastructures, but a scalable tool adaptable to any municipal reality.

map of Spain

Logroño

Salamanca

Arnedo

Murcia

Teruel

Marbella

Las Rozas

Barcelona

Mostoles

San Sebastián de los Reyes

Mocked

Burgos

Calpe

Lloret del Mar

Picassent

Quart de Poblet

Getafe

Alcalá de Henares

Malaga

Elche

Guadalajara

Palma de Mallorca

Comprehensive management of green areas

Modern management of municipal parks and gardens requires a comprehensive approach.

In addition to the remote management and smart irrigation system, the Irridea Smart solution incorporates complementary solutions for monitoring and optimizing urban green areas.

Water quality in springs and ponds

It is important to control the quality of the water in ornamental fountains and/or ponds. In these spaces, chlorine, pH and turbidity levels are mainly measured, information that helps prevent them from becoming a source of infections due to bacteria, viruses or parasites.

We also consider acoustic monitoring to be essential, as gardens cannot be considered an environmental refuge without proper control of noise levels. It is important to inform citizens about their exposure to noise, as well as have objective indicators that allow managers to execute action plans aimed at mitigating noise in green areas.

Through software based on video analytics and AI, we are able to determine, with an accuracy of over 95%, the number of people found in a specific area.

Early detection of faults in urban trees using IoT

In a city, not all risks are obvious. A large urban tree, located in a high-traffic area and with an unknown structural condition, can become a serious problem, for example, during a severe storm.

This solution consists of an IoT-enabled tree monitoring system that collects environmental and structural data through connected devices, transmits it wirelessly, and centralizes it for analysis.

We will primarily measure:

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