System Status: NominalOps Depth: −4,000m CCZOrbital Target: NRHO LunarAutonomy: Level 5 EdgeISA / UNCLOS CompliantSpace Act Title IV AuthorizedZero-Plume Protocol: ActiveEnergy Security 3.0 — OnlineSystem Status: NominalOps Depth: −4,000m CCZOrbital Target: NRHO LunarAutonomy: Level 5 EdgeISA / UNCLOS CompliantSpace Act Title IV AuthorizedZero-Plume Protocol: ActiveEnergy Security 3.0 — Online
REF: ZFV-HERO-01
ES 3.0 Active

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.

Explore Capabilities

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.

Deep sea abyssal plain
Operational AuthorityISA / UNCLOS

Operating under formal sovereign sponsorship to secure exclusive exploration blocks in the Clarion-Clipperton Zone.

Target MineralsCo · Ni · Cu · Mn
Operating Depth−4,000 m Benthic
Extraction MethodElectro-Fluidic Array
Plume GenerationZero Protocol
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.

Extraction MethodMicrowave Volatile (MVE)
Propellant OutputLH₂ / LOX
Depot OrbitNRHO Lunar
Legal FrameworkSpace Act Title IV
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.

Lunar surface orbital mission
Regulatory GuaranteeSpace Act Title IV

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.

Swarm Optimization

Decentralized coordination of multi-node extraction arrays across both abyssal and lunar operational theaters.

Asynchronous Telemetry

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%

All Systems Nominal