A drone or a robot is only as good as the software feeding it decisions and the pipeline keeping it current. Nexagen enables that software, whatever the platform is.
We do not build the drone.
We enable the application that runs it.
Our work is application enablement: building, integrating, securing, and fielding software so it runs where the mission is. It does not matter whether the application flies a drone, drives a robot, or runs an autonomous system. The enablement is the same. Autonomy is where we point it.
One loop, from sensor to effect.
Sensors feed decisions, a human stays on the loop before effects, and a software backbone keeps the whole thing current in the field. The airframe is interchangeable. The enablement is the constant.
Enablement first. The application follows.
The platform is the product. OrionHub enables any application to reach the edge, and SoldierIQ is one we have already enabled and demonstrated there. Autonomy is the domain we are aiming that capability at next.
The enablement platform
OrionHub
Builds, integrates, secures, tests, and fields any application to the edge through a governed GitOps pipeline, with no downtime and no centralized dev cycle. This is the part that does not care what the application is.
- Application enablement across vendors and echelons
- Zero Trust with role-based access and full traceability
- Deploy, update, and rollback at the tactical edge
An enabled application · demonstrated
SoldierIQ
One application we enabled and demonstrated at the edge, fusing UAS and ISR feeds into decisions on tactical compute, even in disconnected conditions. Proof the pipeline delivers a working loop, not just code.
- Multi-domain sensor fusion at the point of collection
- Course of action generation and target classification
- Runs in disconnected, degraded, and bandwidth-constrained conditions
One capability, many platforms.
Unmanned aviation
UAS and ISR feeds are ingested and normalized at the edge, then fused for detection, classification, and integration into the common operating picture.
Contested comms
The autonomy loop holds up across MADL, SATCOM, and RF transport, so a platform keeps deciding and acting when the link to headquarters degrades or drops.
Platform agnostic
The same pattern that turns a drone's sensors into decisions extends to any unmanned or robotic system. The software is the reusable part, not the airframe.
Demonstrated end to end at SOCOM TE 26-2.
TRL 6-7 capability
At SOCOM TE 26-2, the system executed a complete sensor-to-decision-to-action workflow on a tactical platform, fusing multi-domain feeds, generating courses of action, and delivering outputs into TAK and mission systems, operating effectively in disconnected, degraded, intermittent, and limited conditions.
Putting autonomy on a platform?
Talk to us about the software layer (edge decisioning and continuous fielding) for your unmanned or robotic program.
