We provide a software-defined maritime autonomy platform that unifies command, control, and coordination across subsurface, surface, and shoreline assets. Leveraging proprietary technologies such as SeaSphere™ and Vera™, our system acts as a force multiplier, extending the reach, agility, and survivability of manned fleets for modern naval forces.
Funding
Funding not disclosed
Founders
Product
Problem
Naval operations increasingly rely on a mix of manned vessels, unmanned subsurface drones, surface craft, and shore-based sensors, but coordinating these heterogeneous assets requires disparate control systems and manual decision-making, limiting response speed and operational reach.
Solution
Skanarobotics offers a software-defined maritime autonomy platform that unifies command, control, and coordination across subsurface, surface, and shoreline assets. The system leverages proprietary technologies—SeaSphere™ for sensor fusion and situational awareness, and Vera™ for autonomous decision logic—to create a single, adaptive “system of systems.” By abstracting hardware specifics, the platform enables rapid reconfiguration of missions, extending the reach, agility, and survivability of manned fleets. Its scalable architecture supports distributed operations in complex maritime environments, allowing naval forces to execute precise, coordinated actions with reduced operator workload.
Target Audience
Primary customers are modern naval forces and defense agencies that operate mixed fleets of manned and unmanned maritime assets and require integrated, autonomous command and control solutions.
Features
- Software-defined architecture that integrates heterogeneous maritime platforms into a unified command and control framework
- SeaSphere™ sensor‑fusion engine delivering real‑time situational awareness across underwater, surface, and shore domains
- Vera™ autonomous decision module that automates mission planning, task allocation, and dynamic re‑tasking of unmanned assets
- Scalable, modular design allowing incremental addition of new vehicle types and sensors without redeveloping the core system
- Adaptive force‑multiplication capabilities that extend the operational envelope of manned fleets while preserving survivability
- Secure, network‑centric communication layer supporting resilient coordination in contested environments