Digital Twin

We design digital twins for cities, districts, and infrastructure territories: geodata, buildings, roads, cameras, UAVs, utilities, safety, social assets, and ESG scenarios are brought together in a unified engineering 3D environment.

Presentation fragment with visualization of the urban-planning layer of the digital twin

Not Just a 3D Map, but an Environment for Testing Urban Decisions

A digital twin combines geodata, buildings, roads, cameras, sensors, utility networks, social assets, and service-operation scenarios. In this model, teams can see in advance what will happen during new construction, road closures, utility accidents, mass events, or autonomous transport launch.

01

Geospatial Foundation

Cesium, GIS, 3D Tiles, satellite data, terrain, CAD/BIM, and urban layers give the model precise binding to the real territory.

02

Scenarios and Simulation

NVIDIA Omniverse and OpenUSD make it possible to assemble an urban scene, transport, cameras, UAVs, sensors, and physically plausible scenarios.

03

AI and Forecasting

NVIDIA Cosmos and analytical models help generate rare situations, synthetic data, and forecasts for services, transport, and video analytics.

6urban layers: transport, utilities, safety, urban planning, social infrastructure, and ESG.
3Dengineering environment for testing decisions before changes are made in the real city.
AIvideo analytics, rare-event search, forecasting, and operator decision support.

What a Digital Twin Consists Of

The architecture is built not around one attractive map, but around connected urban data, a 3D scene, rules, analytics, simulation, and an operator loop. This approach makes it possible to test decisions before real changes are made in the city.

01

Geodata

Cadastre, GIS, terrain, orthophotos, 3D Tiles, coordinate base, and territory boundaries for precise positioning of all objects.

02

Urban 3D Scene

Buildings, roads, intersections, networks, cameras, stops, social assets, risk zones, and development projects in one visual environment.

03

Data and Integrations

Traffic flows, sensors, video analytics, requests, service statuses, CAD/BIM models, regulations, and external information systems.

04

Scenarios and Simulation

Testing of closures, accidents, mass events, construction, service routes, UAVs, and load on urban infrastructure.

05

AI and Computer Vision

Event recognition, deviation search, load forecasting, synthetic data, and operator decision support.

06

Operator Loop

Monitoring panels, map layers, statuses, event logs, reports, manual scenario checks, and a clear operating picture for city services.

From Source Data to a Working Urban 3D Environment

The project can start with one district, transport corridor, industrial territory, or industry layer. The model is then expanded with data sources, scenarios, KPIs, and interfaces for administration teams, services, and operators.

Presentation fragment on the urban-planning layer of the digital twin
01

Define the Task and Model Boundaries

We define the territory, users, applied scenario, data scope, and result: transport, utilities, safety, urban planning, ESG, or an integrated model.

02

Collect Urban Data

We connect GIS, CAD/BIM, road schemes, cameras, sensors, requests, network data, asset passports, traffic flows, and service regulations.

03

Build the Object Model

A building, road, intersection, school, network, camera, vehicle, incident, and development project become digital entities with attributes, relations, and history.

04

Assemble the 3D Scene and Layers

We combine geometry, semantic layers, movement of transport, people, UAVs, cameras, weather conditions, and response scenarios.

05

Configure Analytics and Scenarios

We compare development options, calculate KPIs, forecast load, identify risks, and prepare recommendations before city decisions are implemented.

06

Put the Model into Operation

We configure layers, roles, reports, and operator screens so the digital twin becomes a working tool for urban teams.

Transport, Utilities, Safety, and Territory Development in One Model

Layers can be implemented separately, but the strongest effect appears when they are connected: a new object immediately shows its load on roads, networks, schools, ecology, budget, and safety.

Presentation fragment on road traffic and pedestrians in the digital twin

Transport and Urban Mobility

The road-traffic digital twin combines road semantics, intersections, traffic lights, stops, routes, video events, pedestrian flows, and a simulation model.

It can test closures, roadworks, traffic-light phase changes, public transport priority, autonomous route launch, and the impact of new interchanges before real roadworks begin.

traffic flowstraffic-light cyclespedestriansautonomous transport
Presentation fragment on utilities and city servicesPresentation fragment on citywide safetyPresentation fragment on social infrastructure

City Services and Social Infrastructure

The utilities layer connects buildings, networks, meters, central heating substations, transformer substations, container sites, municipal vehicles, requests, accidents, and work orders. This helps model outages, cleaning, flooding, waste collection, and reserves for critical assets.

The safety layer combines cameras, incidents, service routes, evacuation, mass events, and risk zones. The social infrastructure layer shows capacity and load of schools, hospitals, public service centers, sports facilities, accessibility, deficits, and resident routes.

utilitiesAI camerasservice routesasset accessibilityincidents
Presentation fragment on ESG and sustainable development in the digital twin

Urban Planning and Sustainable Development

The urban-planning layer connects the master plan, land-use and development rules, parcels, constraints, red lines, restricted-use zones, development projects, timelines, BIM/IFC, and the impact of new assets on roads, networks, schools, ecology, and citizen requests.

The ESG layer turns the digital twin into a decision-testing system: district indices, risks, resilience, ecology, transport, energy, waste, social infrastructure, and budget impact are shown in one management loop.

master plan and land-use rulesnetwork loaddistrict KPIsESG2030/2035 scenarios

Build a Digital Twin for a Specific Management Task

The project can be light and pilot-based: 2.5D layers with attributes for a district or corridor. Detailed 3D/BIM is added where presentation, precise simulation, critical assets, and AI training matter.

Transport and Roads

Flows, queues, traffic lights, roadworks, closures, public transport priority, and before/after scenario comparison.

Utilities and City Services

Networks, accidents, cleaning, solid municipal waste, requests, vehicles, work orders, reserves, and load forecast for utility infrastructure.

Safety and Response

AI cameras, incidents, service routes, evacuation, mass events, risk zones, and response-time control.

Territory Development

Master plan, constraints, projects, social infrastructure, ESG indices, and load testing for the urban environment.

We Will Create a Digital Twin of a City, District, or Infrastructure Asset

You can start with one applied layer: transport corridor, utilities, safety, social infrastructure, urban-planning project, ESG dashboard, or UAV scenarios. The model then expands into a unified urban 3D environment.