NOAH builds autonomous ocean habitats that serve as mobile, off‑grid residences for up to 30 occupants. Each unit combines solar, wind, and wave energy with onboard desalination, water capture, and closed‑loop waste processing, while an AI‑driven control system provides real‑time monitoring and predictive maintenance via a cloud dashboard. The modular hulls meet IMO classification and can be configured for residential, research, or eco‑tourism use.
Funding
Funding not disclosed
Founders
Product
Problem
People who wish to live or work on the open sea lack affordable, self-sufficient housing that can operate off‑grid for extended periods. Existing marine vessels are either short‑term rentals, require crew support, or depend heavily on external fuel and water supplies, limiting true autonomy. This gap restricts long‑term oceanic research, remote work, and sustainable marine tourism.
Solution
NOAH designs and manufactures autonomous ocean habitats that function as mobile, off‑grid residences. Each unit integrates renewable energy generation, onboard water production, and closed‑loop waste treatment to sustain occupants without shore support. The habitats are built on a marine‑grade hull that meets classification standards, allowing deployment in a range of sea conditions. An embedded control system monitors power, climate, and resource levels, optimizing performance and alerting users via a cloud‑based dashboard. Modular interior layouts enable customization for residential, research, or hospitality use cases while maintaining a compact footprint for transport and docking. Partnerships with established yachtbuilders streamline construction and certification processes, accelerating time to market.
Target Audience
The primary customers are high‑net‑worth individuals, remote‑work professionals, and research organizations seeking permanent or seasonal habitation on the ocean, as well as eco‑tourism operators requiring self‑contained marine accommodations.
Features
- Integrated solar panels, vertical‑axis wind turbines, and wave energy converters delivering continuous power generation
- Reverse‑osmosis desalination unit coupled with rain‑water capture to provide potable water for up to 30 occupants
- Biological waste processing system that converts organic waste into compost or bio‑fuel, reducing discharge
- Marine‑grade composite hull with self‑healing coating for corrosion resistance and compliance with IMO standards
- AI‑driven environmental control module that balances temperature, humidity, and ventilation based on sensor data
- Remote monitoring platform offering real‑time telemetry, predictive maintenance alerts, and over‑the‑air software updates
- Modular interior cabins and flexible utility bays that can be reconfigured for living, lab, or hospitality layouts
- Seamless integration with existing yachtbuilder supply chains for streamlined assembly and certification