Same platform. Different worlds.
Smartout for autonomous navigation. Build the twin. Plan the mission. Deploy the asset. Supervise and learn. One operating logic behind every deployment, indoors, on land and under the sea.
Every run starts from better data than the last.
Spatial data becomes a navigable twin, the twin becomes a mission, and the mission runs on board the asset. Field results return to the twin.
Environment data
Stream CAD, satellite, drone, LiDAR and bathymetry.
Digital twin
A navigable, high-fidelity model of the real environment.
Mission intel
Plan and optimise routes around spatial constraints.
Autonomous asset
Onboard pathing and real-time navigation.
Command & control
Monitor, supervise and update the twin live.
CAPTURED FIELD DATA RETURNS TO THE TWIN FOR CONTINUOUS LEARNING
One onboard stack. Any machine.
Five subsystems around one vehicle core. The same architecture is reused on every asset. Only the hardware and configuration change.
Compute & storage
Edge compute, mission storage and a local subset of the digital twin.
Communications
Wi-Fi, private 5G, satellite, mesh radio and acoustic modem.
Unified abstraction layer
One interface between Smartout and whatever the machine is.
Navigation
SLAM, GNSS/RTK, IMU, DVL and sonar odometry engines.
Operational awareness
RGB, thermal, LiDAR, radar and environmental sensing.
Autonomy engine
Path planning, dynamic obstacle avoidance and fail-safe behaviour.
Buildings become navigable environments.
Smartout converts CAD and BIM into operational twins, generates routes, and keeps autonomous assets connected to the command centre.
Operational challenge
- Static building models, dynamic obstacles
- Changing interior layouts and restricted zones
- Positioning a multi-robot fleet indoors
What Smartout provides
- An operational 3D twin from BIM and CAD
- Real-time route updates as the building changes
- Central supervision of the indoor fleet
Illustrative example
Autonomous operations across changing terrain.
Terrain, satellite and drone data become a forest twin. The same twin drives sampling and boundary patrols, and switches to fire response the moment heat is detected.
Illustrative example
The seabed becomes the mission environment.
Bathymetry and a mission objective are enough to plan a full dive. Depth, currents and known obstacles shape a safe route before the vehicle leaves the surface.
Map · inspect · survey
- Bathymetry. Depth grids and obstacle maps build the twin.
- Route planning. A safe, energy-optimised path generated before the dive.
- Inspection and sampling. Pipelines, subsea structures and seabed assets.
- Data return. Acoustic telemetry syncs the twin to the command centre.
Illustrative example
From live data to real decisions.
Monitor the fleet, track missions in real time, open sensor feeds and keep the digital twin current, all from a single command centre.
Deploy today. Scale tomorrow.
One common platform, three environments, and room for many more.
Indoor navigation
- CAD/BIM to operational twin
- Automated route generation
- Autonomous AMR integration
- Central facility command and control
Forest operations
- Terrain, satellite and drone data
- Sampling and patrol routes
- Automated fire response
- Multi-vehicle fleet control
Undersea operations
- Bathymetry plus a dive objective
- Subsea digital twin
- Deep AUV navigation
- Acoustic telemetry sync
Autonomy for a more resilient world.
Smartout turns complex environments into actionable intelligence and autonomous operations, on land, at sea, in the air and indoors.
Have an environment in mind? Let's plan the first mission.
Tell us where your machines need to operate. We'll show you how Kaiinos plans, runs and supervises the mission.
Plan a mission with ushello@kaiinos.ai