
Platform
From plan to outcome,
in one platform.
Skynapse plans, coordinates and runs missions with unmanned aircraft, sensors and field teams, and turns what they see into a shared operational picture, on infrastructure that stays under your control.
01 — Plan
Prepare the mission
Build a shared plan that reflects the terrain, the assets available and the objective.
- 01
Mission Planning
Draw the area, set the launch point and build the mission on the map: routes, tasks and phases in a single planning environment, with waypoints that can be edited and reordered at any time.
- 02
Terrain Analysis
Cartography and an elevation model are read together, so that every part of the area receives a priority and every route follows the ground: altitude above terrain, line of sight and known obstacles.
- 03
SAR Patterns
Structured search patterns generated over the area of interest and prioritised by terrain. Over water, a drift model estimates where wind and current have carried the search object.
02 — Integrate
Connect every asset
Bring heterogeneous platforms, sensors and teams into one coherent environment.
- 04
UAV Integration
Different aircraft, one workflow. MAVLink autopilots such as PX4 and ArduPilot and DJI enterprise platforms are operated side by side, with position, status and mission progress in one view.
- 05
Sensor FOV
The footprint of each sensor is projected onto the map, so that operators see what is being observed, what has been covered and where the gaps are.
- 06
TAK Integration
Aircraft, sensor footprints, mission areas and waypoints appear on ATAK and other TAK clients, and the markers placed by field teams come back to the operations room.
- 07
CoT Integration
Positions, objectives, routes and events are exchanged as Cursor on Target, the common language of TAK environments, for interoperability with the systems you already use.
03 — Understand
Turn data into intelligence
Help operators focus on what matters, when it matters.
- 08
AI Detection
People and vehicles are highlighted in visible and thermal imagery in real time, on board the aircraft, so that the capability holds when the link is limited.
- 09
Object Tracking
Detected objects keep a stable identity over time, so that operators follow a subject rather than a sequence of frames.
- 10
Target Geolocation
What the sensor sees becomes a position on the map, computed from the image and the elevation model, that teams can navigate to.
04 — Coordinate
Act as one team
Keep command, operators and field teams aligned from first tasking to final report.
- 11
Mission Coordination
The area is divided across aircraft according to their endurance, coverage is tracked across phases, and operators, stations and field teams stay aligned through shared tasks, routes and messages.
- 12
Operational Picture
One shared, real-time view of aircraft, sensors, stations, teams and findings, with live low-latency video in the browser and recordings ready for the debriefing.
05 — Deploy
Under your control
Enterprise-ready and sovereign by design: the platform runs in your environment, with your identity and your rules.
- 13
On-premise & Air-gapped
Deployed in your data centre, in a sovereign cloud or on a deployable node, including environments with no external connectivity.
- 14
Access & Identity
Multi-tenant by organisation, with role-based access and single sign-on through LDAP, Kerberos and OpenID Connect.
- 15
Audit & Records
A complete trail of actions and decisions, forwarded to your SIEM, with recorded video and mission history for review.
- 16
Open Interfaces
REST and WebSocket APIs to integrate command systems, dashboards and existing tools.
- 17
Dedicated Editions
A civilian edition and a defence edition, built and deployed separately, each with the capabilities its users need.
- P1–P4
- Terrain-based search priorities, by target and environment
- 20+
- Object categories for drift prediction over water
- 3
- Single sign-on protocols: LDAP, Kerberos, OpenID Connect
- On-prem
- Sovereign or air-gapped deployment, on your infrastructure
