Glacial Lake Outburst Flood Risk Assessment in High Mountain Asia
A logistic-regression approach using remote-sensing parameters to assess GLOF risk, presented at IGARSS 2024 in Athens.
Our Earth-observation and remote-sensing work has earned international awards, competitive research funding, and peer-reviewed publications, alongside active leadership in the geoscience community.
First-place winning submission in the IEEE Geoscience & Remote Sensing Society's REACT competition for Earth Observation and the Sustainable Development Goals.
A 48-month, Swiss-funded research programme on large-scale landslide hazard assessment via time-series satellite radar interferometry, with ETH Zurich and UET Lahore.
Distinction in the CleanTech 2022 Challenge, reflecting our commitment to innovation in environmental technology and capacity-building.
Helped establish Lahore's IEEE Geoscience & Remote Sensing Society chapter (2023) to build local capacity in remote sensing and spatial analytics.
Our research is published in leading IEEE venues. A selection of recent papers, with the full record on Google Scholar.
A hybrid CNN–Vision Transformer architecture, guided by annotation strategy, for accurate landslide segmentation from satellite imagery.
Read on IEEE Xplore ↗A novel index for detecting landslide activity from satellite radar interferometry, combining InSAR coherence and sensitivity analysis for hazard monitoring.
Read on IEEE Xplore ↗A logistic-regression approach using remote-sensing parameters to assess GLOF risk, presented at IGARSS 2024 in Athens.
Published in the International Journal of Applied Earth Observation and Geoinformation, developed with ETH Zurich and the Chinese Academy of Sciences.
An invited tutorial delivered at the 9th Asia-Pacific Conference on Synthetic Aperture Radar (APSAR 2025), Matsue, Japan.
Award-winning research, delivered as production software. Let's build what's next.