Poseidon’s Forge provides a build‑to‑suit ecosystem for autonomous underwater vehicles, using AI‑driven optimization and modular hardware to create custom AUVs that adapt to changing mission requirements. Its platform includes an intelligent optimizer, physics‑based digital‑twin simulation, active buoyancy control, counter‑rotating propellers, and autonomy software for mission planning, multi‑vehicle coordination, and docking, delivering high efficiency and stability for commercial, scientific, and defense operators.
Funding
Funding not disclosed
Founders
Product
Problem
Operators of autonomous underwater vehicles often face rigid, off‑the‑shelf platforms that cannot be easily adapted to changing mission requirements, leading to costly redesigns, sub‑optimal performance, and extended deployment timelines.
Solution
Poseidon’s Forge offers a build‑to‑suit ecosystem for AUVs that combines AI‑driven optimization with modular hardware to create vehicles tailored to specific tasks. An intelligent optimizer continuously refines designs using real‑world mission data, while a digital‑twin simulator enables risk‑free testing and rapid iteration. The platform integrates advanced hydrodynamics, active buoyancy control, counter‑rotating propellers, and next‑generation power‑management systems to maximize efficiency and stability. Software provides autonomous mission planning, multi‑vehicle coordination, and docking capabilities, ensuring the AUV can evolve alongside the user’s needs.
Target Audience
Primary customers are commercial operators, scientific research institutions, and defense agencies that require customized, high‑performance autonomous underwater vehicles for exploration, data collection, and mission‑critical tasks.
Features
- AI‑based design optimizer that adapts vehicle geometry and component selection based on mission parameters and operational data
- Modular architecture allowing easy reconfiguration of sensors, payloads, and propulsion modules for diverse applications
- Active buoyancy control and counter‑rotating propellers delivering enhanced stability and reduced drag
- High‑performance power management, custom battery‑management systems, and fast communication links for reliable data transfer
- Real‑time autonomy software with mission planning, multi‑vehicle collaboration, homing and docking functions
- Physics‑based digital twin simulator for virtual sea trials, AI training, and post‑mission analysis