Skip to content

Zantasy Defence Systems

Illustrative concept

Assured autonomy when signals cannot be trusted.

Zantasy develops platform-independent navigation resilience, sensor-fusion and autonomy-assurance technology for uncrewed systems operating across land, air and maritime domains.

Operate when signals fail.

UK-based · Platform-independent · Human-authorised operations

01 — Operational problem

Autonomous systems depend on information they cannot always trust.

GNSS may be degraded, denied, unavailable or inconsistent with other navigation sources. Communications can be interrupted. Cameras can be obscured. Sensors can disagree.

In degraded and contested environments, an autonomous system must do more than follow a route. It must recognise uncertainty, identify which information remains reliable and move into an authorised safe behaviour before uncertainty becomes mission failure.

GNSS can disappear.

Communications can be interrupted.

Cameras can be obscured. Sensors can disagree.

SOURCE A — GNSSSOURCE B — INERTIALSOURCE C — TERRAINCONFAGREEMENT
FIG. 01 — Source agreement, divergence and degradation · illustrative (fictional data)

03 — Resilience architecture

Sense. Verify. Decide. Supervise. Assure.

Sensors and platform inputs feed an integrity and confidence layer; the vehicle follows an authorised response under mission supervision, and testing and evidence close the loop.

04 — Multi-domain applications

One architecture across land, air and maritime systems.

LAND

Optionally crewed logistics, reconnaissance support, equipment carriage, casualty-evacuation support and hazardous-area operations.

AIR

Resilient route execution, lost-link behaviour, coordinated sensing and mission support for partner UAS programmes.

MARITIME

Harbour protection, patrol, survey, inspection, communications relay and mission support for uncrewed surface systems.

06 — Evidence and development

Engineering experience, evidenced through controlled testing.

Vehicle autonomy and drive-by-wire

The team brings experience in vehicle autonomy and drive-by-wire integration, from control interfaces to supervised vehicle behaviour.

Simulation and controlled testing

Behaviours are developed and checked through simulation, hardware-in-the-loop evaluation and controlled testing before any wider use.

Perception and robotic systems

Experience across perception, sensor integration and robotic systems informs how Zantasy designs for degraded and conflicting inputs.

Evidence before deployment

Capabilities are stated as designed intent and demonstrated only within a defined, controlled test scope — not claimed as operational history.

Founder photography to be supplied
FIG. 30 — Workshop integration

09 — Discuss a programme

Zantasy works with defence users, primes, platform manufacturers and qualified technology partners to integrate, test and demonstrate resilient autonomy for degraded and contested environments.

Please do not submit classified, export-controlled or operationally sensitive information through this website.