Contested autonomy software

YOUR AUTONOMY STACK NEEDS TO WORK WHEN GPS DOESN’T

VICTUS’s end-to-end Contested Autonomy Platform keeps any robotic system on mission when GPS is jammed or denied.

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The operational reality

When GPS Fails, Most autonomous 
platforms fail with it.

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Jamming, bad weather, and contested airspace aren’t edge cases. They’re the mission environment. Without a reliable answer to the most basic question — Where am I? — every higher-order function breaks down. It’s a foundational design gap that affects every platform your program depends on.

Jamming

Active jamming degrades or eliminates GPS signal across contested environments. Platforms that depend on satellite navigation lose position awareness and cannot complete the mission.

Spoofing

Denied, degraded, and operationally isolated environments are standard in modern conflict. Commercial autonomy stacks were never built to operate in them.

Adverse Conditions

Dust, low visibility, over-water flight, and solar interference degrade GPS reliability when the mission demands it most.

The solution

The Contested Autonomy Platform Built Around Gravity and Machine Learning

Trained in simulated and real world contested environments.

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Uses Sensors Already Onboard

Every platform already carries inertial and gravity sensors. PhantomNAV uses them as the sole navigation input, no external signal needed.

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Machine Learning State Estimation

ML model processes raw sensor data in real time to produce continuous, accurate position awareness across all operating environments.

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GPS-Independent Navigation

PhantomNAV holds position through jamming, adverse weather, over-water flight, and airgapped conditions where no satellite signal reaches.

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Platform Agnostic

PhantomNAV runs on drones, aircraft, ships, satellites, and unmanned ground vehicles. If it carries inertial sensors, it can run PhantomNAV.

Core Capabilities

Built to perform where 

the mission actually happens.

Get Started

MAKE YOUR NEXT MISSION AN UNCONTESTED SUCCESS.

Find out how VICTUS’s end-to-end contested autonomy platform can help prevent navigation failure.