
Monitor the extent, progression, and intensity of natural hazards
Explore and monitor geological and hydrometeorological hazards using satellite image analysis. Effectively detect their extent, progression, and intensity over vast areas and track their development over time. Prepare your response and minimize impact.
InSAR for mapping geohazards
Get an accurate reading of the monitored area. Map developments, detect changes and deformations, and acquire data that allows you to implement measures with maximum effectiveness.
Explore applications in:
Climate hazards
Monitor hydro-meteorological impacts and fires. Predict the course of hazards, measure impacts, assess damages, and leverage insights to design preventive measures.
Explore applications in:
Retrospective inventorization
We use advanced methods like change detection, machine learning, and InSAR to assess the extent, intensity, and progression of disasters or potential hazards. Archival satellite imagery allows for retrospective analysis of past occurrences and their impacts. Our findings are delivered as a product or used to model territorial susceptibility and contribute to multi-factor risk assessments, accounting for vulnerability and exposure to natural hazards.
Proactive monitoring
We monitor optical and radar satellite images to detect precursors to catastrophic events. These detections dynamically recalibrate susceptibility models and parameterize disaster probability scenarios. Monitoring proceeds in phases, with evaluation frequency tailored to client needs.
Choose how to get results
We deliver mapping and measurement results in formats and protocols customized to customer requirements: as spatial data with a time component, through the InSARviz online platform (interactive visualization tool for satellite SAR interferometry), through your API, or as a technical report with maps.
Artificial corner reflectors
We allow you to take or refine InSAR measurements in locations where surface characteristics, vegetation, and other influences would normally hinder standard InSAR deformation mapping.
Case studies and references

Support to resilient road investments in South-East Asia

Monitoring railway embankments to early detect potential failures

Monitoring construction of Metro line D in Prague

Using InSAR to support geotechnical survey for high-speed rail construction

InSAR monitoring system for landslide-prone segment of D8 highway
