Dark aerial terrain representing a communication-constrained mission environment

Mission coordination for autonomous systems

Operate beyond the signal.

OMNIVISION is developing software for coordinating autonomous drone teams where communication is disrupted, degraded, denied, or unavailable.

Problem

Mainstream drone coordination assumes a permanent datalink.

Radio-linked multi-drone control has no native concept of cooperation once that link is contested, detected, or lost.

Platform

A drone orchestration layer for the autonomous edge.

OMNIVISION translates mission intent into local orchestration: shared context, asset roles, and fallback autonomy that stay with the swarm when the signal starts to fail.

FIG 0.1

Mission design

Define objectives, routes, zones, priorities, and fallback behaviours before launch.

FIG 0.2

Distributed execution

Keep autonomous assets moving when central communication degrades or drops away.

FIG 0.3

Multi-asset awareness

Maintain one operating picture across heterogeneous drones, states, and mission roles.

Mission continuity

When the link breaks, the mission should not.

01 / Mesh intact

Connected

Operator intent, telemetry, and tasking remain synchronized across the active group.

02 / Link contested

Degraded

Assets compress updates, relay through nearby nodes, and continue the plan with partial oversight.

03 / GPS / comms denied

Autonomous

The mission falls back to pre-briefed objectives, local sensing, and bounded autonomy until contact returns.

Origin

1st runner-up at EDTH Rome.

OMNIVISION emerged through the European Defense Tech Hackathon in Rome, where the founding team placed 1st runner-up and developed the initial concept around resilient mission software for autonomous systems.

OMNIVISION founding team at the European Defense Tech Hackathon in Rome

Team

Formed across borders. Built around a shared mission.

The team combines software engineering, IoT, industrial engineering, product design, and autonomous-systems experience across Singapore and Europe.

Daniel Guan

Daniel Guan

  • Software Engineer
  • Computer Science & Business, National University of Singapore
  • Defense Product Designer
Santiago Morales Henao

Santiago Morales Henao

  • Double Master's in Management Engineering and Product-Service System Design, Politecnico di Milano
  • Master's in Computer Science-IoT, Università degli Studi di Salerno
Elijah Chia

Elijah Chia

  • Software Engineer
  • Information Systems, National University of Singapore
  • IoT Devices and AWS Certified Solutions Architect

Partners

Autonomous drone swarms built for signal-denied missions.

We are speaking with operators, autonomous-systems teams, drone manufacturers, researchers, and strategic partners shaping resilient mission software.