Wir verbinden GIS und BIM: Punktwolken, Gelände, BIM und Live-IoT-Feeds werden in einer abfragbaren Browserumgebung ohne Plugins zusammengeführt.
BIM, GIS terrain and live sensor data usually live in separate tools with no shared, queryable view, and the generalist teams asked to bridge them are exactly where the spatial layer stalls everyone else on the project.
Browser-based viewers for point clouds, terrain, and as-built documentation. Measure and compare. No desktop software required.
LiDAR + BIM + GIS terrain + live IoT sensor data fused into a queryable 3D environment. Structural, environmental, HVAC, and energy sensors feeding real-time status into the model.
BIM design overlaid with as-built scan data. Visual and quantitative deviation analysis in the browser.
IoT strain, vibration, and tilt sensors mapped to 3D asset models. Threshold-based alerts with long-term deformation tracking.
Cut/fill volumetrics from drone survey and LiDAR data. Before/after terrain comparison with automated reporting.
Time-lapse 3D models from sequential drone surveys. IoT sensors bridge the gap between scans, tracking movement, load, and environmental conditions continuously.
| Inputs | LiDAR, BIM, terrain, live IoT feeds |
|---|---|
| Delivery | Browser-based, no plugins |
Review of your point cloud, BIM and sensor sources, stack alignment, bottleneck map.
SoW, milestones and the viewer or twin scope, under an English-law contract.
Weekly demos, CI/CD and observability from day one, delivered browser-based with no plugins.
Extend the twin with new sensors or comparisons. You keep the code and the team.
Autonome räumliche Workflows auf der bereits von uns gelieferten Dateninfrastruktur: natürlichsprachige räumliche Abfragen, Überwachungsagenten und eine kontrollierte Audit-Ebene.
Wir bauen die räumliche Intelligenzschicht, die IoT-Telemetrie in kartenbasierte Betriebsentscheidungen verwandelt. Wir verkaufen keine IoT-Hardware.