Measure terrain change without sending more people into operational risk.
Drone LiDAR, mine and quarry mapping, stockpile volumes, haul-road condition, water and change analysis for mining operations across India.
What makes this ground
consequential.
Terrain changes faster than static plans
Faces, benches, stockpiles, dumps and haul roads can become outdated between conventional survey cycles.
Commercial quantities need a defensible baseline
Volume results are meaningful only when boundaries, surfaces, density assumptions and comparison dates are controlled.
Operational areas carry exposure
Traffic, unstable edges, water and restricted areas make complete ground coverage difficult.
Pit and quarry mapping
High-resolution surface models, breaklines, contours and current operational context.
Stockpile volumetrics
Repeatable pile boundaries, base surfaces and quantity schedules with stated assumptions.
Haul-road intelligence
Gradient, width, surface condition and drainage observations along active routes.
Water and environmental change
Pond, drainage, dump and land-change evidence across capture dates.
Autonomous monitoring
Scheduled aerial patrols and fixed-camera visibility for suitable operating environments.
Evidence that enters
the operating workflow.
- Current mine or quarry surface
- Stockpile and excavation quantities
- Cut-and-fill change maps
- Haul-road and water observations
- Dated spatial record in Falcon AI
A large site became a coordinated terrain and hydrology record.
Challenge
Terrain, vegetation, drainage, water bodies and development constraints existed as separate questions.
Aerial solution
Aerial mapping, ground control, terrain modelling, canopy analysis, hydrology and bathymetry were combined into one property-intelligence system.
Result
Multiple decision layers were delivered as one traceable property-intelligence package.