AFLEET provides a web‑based platform that enables real‑time control of multiple unmanned vessels, supporting both manual and autonomous operation from a single interface.
Funding
Funding not disclosed
Founders
Product
Problem
Coordinating multiple unmanned vessels traditionally requires separate control stations, manual operation, and complex integration of sensors, leading to high fuel consumption, increased CO₂ emissions, and safety risks for operators who must be on-site.
Solution
AFLEET offers a web‑based platform that centralizes real‑time control of multiple unmanned vessels in a single interface, supporting both manual piloting and autonomous mission execution. Its modular architecture allows users to plug in new sensors, payloads, and functional modules without redeveloping the core system. Operators can launch units, monitor live mission progress, and receive processed data as a service, all from a land‑based control center, which enhances human safety. The platform’s optimized routing and autonomous capabilities reduce fuel usage by up to 97%, delivering significant cost savings and lower CO₂ emissions. Data collected during missions is streamed, stored, and made accessible through the application for downstream analysis.
Target Audience
Primary customers are operators and managers of maritime, offshore, or environmental monitoring fleets who need centralized, remote control of unmanned vessels, as well as service providers offering data collection and analysis for industrial or research applications.
Features
- Unified web dashboard for simultaneous control of multiple unmanned vessels, with manual and autonomous modes
- Modular plug‑in framework for easy integration of additional sensors, payloads, and custom functions
- Live mission tracking and real‑time telemetry visualization within the same interface
- Automated route planning and autonomous navigation that cut fuel consumption by up to 97%
- Data‑as‑a‑service delivery, providing processed mission results and analytics on demand
- Land‑based operation model that removes the need for personnel to be physically present on the vessels