Interferometric Synthetic Aperture Radar (InSAR)

At Ground Evolution Monitoring, we are experts in InSAR - an active remote sensing technique used to measure Earth surface and structural deformation with millimetric precision. Using proprietary InSAR software developed in-house, we provide clients with reliable, accurate and detailed displacement data. Learn more about this technique below.

What is InSAR?

  • Interferometric Synthetic Aperture Radar (InSAR) is a remote sensing technique that measures ground and structural movement from space.

  • By comparing radar images captured at different times, we can detect surface displacements with millimetric precision across wide areas – from individual buildings to entire regions spanning hundreds of kilometres.

    Unlike optical satellite imagery, radar sensors work day and night and can see through cloud cover, making them reliable for continuous monitoring regardless of weather conditions.

  • The technique is entirely remote, requiring no equipment to be installed on site, and can analyse historical data going back until 2014 to understand how ground conditions have changed over time.


How does it work?

  • InSAR detects movement in the line-of-sight direction between the satellite and the ground.

  • This captures both vertical motion (subsidence and uplift) and horizontal motion (lateral displacement).

  • Typical applications include monitoring ground settlement caused by tunnelling or excavation, tracking subsidence from underground mining or fluid extraction, assessing slope stability on embankments and cuttings, and detecting structural movement in buildings, bridges, and other infrastructure.

  • InSAR is particularly powerful for identifying slow, gradual movements that might not be noticed through visual inspection or periodic surveys.

  • By analysing longitudinal radar data, we can measure displacement rates of just a few millimetres per year and identify trends before they become critical issues.


InSAR measurement principles. The target (house) is imaged by the same Synthetic Aperture Radar (SAR) satellite on two different dates. The displacement (settlement) causes a longer path length (range) for the radar signal, increasing the phase shift. We can determine millimetric rates of movement from this subtle phase shift.


Satellite data sources

  • Multiple Synthetic Aperture Radar (SAR) satellites are currently in operation, each offering different characteristics in terms of spatial resolution, revisit frequency, and radar wavelength.

  • Commercial providers such as ICEYE, Capella Space, and the COSMO-SkyMed constellation offer high resolution imagery and flexible tasking for specific projects.

  • For systematic, wide-area monitoring, the European Space Agency's Sentinel-1 mission provides the most accessible and cost-effective data source.


Sentinel-1 radar image for London, UK.


Sentinel-1

  • Sentinel-1 is a constellation of C-band radar satellites operated by the European Space Agency as part of the Copernicus Earth observation programme.

  • The mission provides open-access data covering most of the world's land surfaces on a regular repeat cycle.

  • Each satellite follows a near-polar, sun-synchronous orbit at approximately 700 km altitude, imaging the same location every 12 days (or 6 days when both satellites in the constellation are operational).

  • The satellites acquire data in both ascending orbits (travelling northward) and descending orbits (travelling southward). This dual geometry is valuable for InSAR analysis, as combining measurements from different viewing angles allows us to separate vertical and horizontal components of movement.

  • Over the UK and Europe, Sentinel-1 has been acquiring consistent data since 2014, providing over a decade of archived imagery for retrospective analysis of ground conditions.


Glossary of key terms

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