Digital Forest Inventory Mapping
13,920 sq. km of Canadian forest land digitised and attributed with 100% automated consistency. A leading Canadian geospatial firm required a scalable digital forestry inventory to support wood-supply planning, ecosystem management and long-term environmental analysis across Newfoundland and Labrador. Existing manual GIS workflows created bottlenecks in attribution accuracy, turnaround time and operational cost — particularly across multi-vintage forest datasets spanning more than 1.3 million hectares.
Automated GIS workflows digitised 13,920 sq. km, improving forestry planning accuracy, reducing costs and enabling scalable environmental management operations.
- 13,920 sq. km
- Forest land digitised
- 16
- Attributes automated per polygon
- −40%+
- Cost vs manual onshore workflows
Challenge
Approach
Outcome
More from the field
Offshore Mine Mapping & Analysis
Dedicated offshore production facility delivering high-precision 3D mine models and stockpile analytics at global scale. A US-based mining solutions company needed a scalable way to process continuous streams of drone-captured mine data from multiple global sites. Existing workflows relied heavily on fragmented surveying and manual calculations, slowing inventory reporting and limiting operational visibility. The client required a centralized production model capable of generating accurate volumetric reports, terrain models, and engineering-ready outputs across large mining operations. Dedicated offshore production facility established. High-precision volumetric reporting delivered at scale. Engineering-grade 3D terrain models processed for global mining operations.
"Centralized offshore mine mapping improved volumetric accuracy, accelerated terrain analytics and enabled scalable global mining intelligence and operational reporting. "Smart Solar Potential Analysis
90% reduction in field-survey costs through remote rooftop analysis across London suburbs. A UK clean-energy initiative needed to identify residential rooftops suitable for solar installation at city scale. Traditional field surveys were too slow, expensive, and operationally impractical for the speed required to support national renewable-energy targets. The challenge was to accurately assess roof orientation, sunlight exposure, and shading conditions across thousands of homes — without sending teams on-site. 90% reduction in surveying overhead. High-speed rooftop qualification across London districts. Accurate south-facing and shade-free roof identification for rapid solar deployment.
"Remote rooftop analysis reduced solar survey costs, accelerated renewable-energy planning and enabled scalable residential solar feasibility assessment across urban districts. "Paleogeological Vector Models
Multi-era geological maps transformed into a projection-accurate digital database for mineral exploration and geoscience research. A UK-based geological data provider needed to modernise vast collections of historical paleogeological maps and analogue records for industrial and research applications. The challenge involved converting fragmented, projection-distorted geological archives into a unified GIS-ready environment capable of supporting mineral exploration, tectonic analysis, and environmental research at global scale. Multi-era geological vectorization completed across historical landmass datasets. Integrated geological, groundwater, and chemical contour mapping delivered in a unified GIS environment. Projection-accurate outputs maintained across global datasets.
"Historical geological map vectorization created a projection-accurate GIS database supporting mineral exploration, environmental analysis and global geoscience research. "