Ādaži digital twinMunicipal operations3D command reading for assets, reach, and service attachment.
Twin Base StudioPolisplexity / ĀdažiTwin Base StudioRiga planning region, Latvia
Workspace
Cockpitlive
Municipal
Public
Guidance
Theory
Docs
Municipal controls

Use this rail for presets, fidelity, base-vs-seed visibility, and municipal scene inspection. The goal is to keep baseline geometry, inferred meaning, and future packs clearly separated.

3D fidelity
Bring in more city detail

Low keeps the scene light. High should visibly pull in more roads, buildings, and territorial context.

Light62%Dense
Surface status
ViewerLoading
Visible systems0
Rendered0
Discovered0
Logical twin posture
This rail is not the base twin itself

Bundles, counts, selection logic, fidelity, and viewer state belong to the logical twin layer that makes the baseline manageable across map, 3D, and immersive surfaces.

Mouse controls
Move the twin naturally

Left drag rotates. Wheel zooms. Right drag pans. Click any object to inspect it.

Surface actions
Next semantic packs
Future packs attach here

Waste, WEO, SAMI, EO, or authority data should arrive as new semantic packs, not by rewriting the base layers.

Transport status
Current twin transport is local only

The current module uses an internal payload. Shared exchange standards such as NGSI-LD, JSON-LD, RDF, LDES, DCAT, or brokered federation still belong to the next architecture step.

Current selection
No live selection yet

Choose a road, building, route, or anchor inside the viewer to inspect whether it belongs to the base twin or to an inferred semantic seed.

Inner rail: logical-twin controls for presets, fidelity, base-vs-seed visibility, and layer toggles.
Spatial operations surface

Municipal Operations View

Use the 3D reading to validate the base city canvas, inspect which elements already carry inferred meaning, and decide where the first formal semantic pack should attach.

Preparing live viewer
Spatial operations surface

Municipal Operations View

Use the 3D reading to validate the base city canvas, inspect which elements already carry inferred meaning, and decide where the first formal semantic pack should attach.

Loading3D
Preparing the live 3D surface

Loading city data, counts, and viewer state so the module opens as a single coherent surface.

What municipal teams can validate here

The current municipal surface lets teams inspect what is base geometry, what is inferred semantic meaning, and where the first formal semantic service layer should attach without confusing either with interoperability.

Immediate municipal decisions
Validate the current municipal footprint and base geometry.
Agree which inferred seed becomes the first formal semantic pack.
Decide which municipal datasets should enrich the base and semantic layers next without overloading the current transport model.