Dynamic management of lift stations
Reduce your consumption and avoid overflows thanks to intelligent control of lift stations.
Thanks to predictive and automated regulation, Purecontrol adapts pump cycles in real time to the weather and the characteristics of your network. You improve environmental performance while controlling your operating costs.
Intelligent control of lift stations
Our solution intelligently adjusts the pumping of lift stations by combining:
Objective:
Reduce overflows and operating costs while ensuring network performance.

Reducing overflows
Thanks to the weather forecast integrated into our solution, pumping is triggered preventively to increase storage capacity before a rainy episode. The solution also prioritizes the activation of pumps with the best flow, and takes into account chain effects between stations.
The result: avoided overflows and better control of the network.
Reduced pumping costs
In dry weather, Purecontrol automatically switches to energy saving mode. The solution prioritizes the most efficient pumps and adapts the cycles to variable rates, by emptying stations during off-peak hours, and thus limiting pumping during peak hours.
The result: savings on the energy bill.


Holistic network management
Our algorithms can analyze the entire sanitation network to implement holistic management. For example, the solution will activate early buffering upstream to avoid overflow to a riskier station downstream.
To always monitor the status of your network, our dashboards provide monitoring at the network level, by collection basin and by lift station.

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Pollution control plant manager
Reduction in overflows and pumping costs

From hypervision to piloting
Simplify daily operations with real-time monitoring and control
to identify the optimal operating scenario
ultra-precise meteorological data: data per Km2, updated every 5 min
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Sanitation networks: how to limit overflows?
The use of a data-driven approach combined with predictive control of pump stations makes it possible to reduce energy consumption, while reducing overflows during rainy events.
