001 — Overview
The Dirt-to-Orbit
Infrastructure Play.
Deploying autonomous cyber-physical systems to secure the 22nd-century supply chain — from the abyssal plain to near-rectilinear halo orbit.
Operating Depth
−4,000m
Benthic / CCZ
Orbital Target
NRHO
Near Lunar Orbit
Extraction Matrix
Zero-KE
Zero-Kinematic
System Autonomy
L5Edge
Full Autonomy
002 — Project Erebus
Abyssal
Extraction.
Earth's most lethal analog environment serves as our autonomous software validation theater before multi-billion-dollar orbital deployment.
Operating under formal sovereign sponsorship to secure exclusive exploration blocks in the Clarion-Clipperton Zone.
Benthic Commercialization
Autonomous low-kinematic nodes at 4,000m depths harvesting high-value polymetallic nodules. Establishing an allied critical mineral supply chain for Tier-1 battery manufacturers.
Zero-Plume Extraction
Advanced electro-fluidic and acoustic arrays replace heavy mechanical dredging — eliminating benthic plume generation and protecting deep-sea ecosystems entirely.
003 — Project Selene
The Orbital
Toll Road.
Extracting lunar water-ice and refining it into LH₂/LOX propellant — positioned as the exclusive orbital gas station for NASA and heavy-lift vehicles.
Microwave Volatile Extraction
MVE bypasses thermodynamic failures of mechanical drilling by heating subsurface lunar ice directly into vapor — immediately captured and cryo-refined into propellant.
Eliminating the Launch Tax
Fueling deep-space missions in orbit completely bypasses the Earth-to-LEO gravity well, erasing the massive SWaP penalty that constrains the multi-planetary economy.
Explicitly authorized under U.S. domestic law and the Artemis Accords, legally securing the right to own and commercialize extracted lunar resources.
004 — Autonomy Core
StrataRisk
Core™
The speed of light prohibits zero-latency lunar control. Legacy remote operations are obsolete.
High-Autonomy Edge Engine
Our proprietary neural risk-engine utilizes High-Autonomy Edge Computing to orchestrate both deep-sea and lunar extraction loops without human-in-the-loop dependencies — operating in two of the most latency-constrained environments on the frontier.
Decentralized coordination of multi-node extraction arrays across both abyssal and lunar operational theaters.
Secure, highly compressed data packets transmitted post-action to Mission Control. Resilient to signal degradation at extreme range.
System Performance
Autonomy Level
5
Human Dependency
0%