Each module transforms complex geospatial data into clear, actionable intelligence, helping organizations plan, build, and adapt more effectively across energy, infrastructure, and environmental projects.

Accelerate renewable siting with integrated terrain, grid, and climate intelligence.
Identify optimal solar, wind, and hybrid sites with environmental, technical, and infrastructure-ready scoring.
Includes:
→ Ideal for utilities, developers, energy investors, and policy-makers.

High-resolution coastal and climate exposure mapping for assets, properties, and regions.
Analyze flood, surge, erosion, wildfire, and climate impacts with scenario-based resilience scoring.
Includes:
→ Ideal for insurers, city resilience offices, coastal developers, and risk analysts.

Rapid prospectivity mapping using multi-sensor terrain, lineaments, and spectral indicators.
A fast-turnaround intelligence layer for juniors, investors, and early-stage exploration programs.
Includes:
→ Ideal for mining juniors, early-stage investors, and resource strategy teams.

Seabed, geohazard, and infrastructure intelligence for offshore wind development.
Integrates bathymetry, seabed terrain, hazards, and logistics scoring for early-stage site evaluation.
Includes:
→ Ideal for offshore wind developers, marine engineers, and energy-transition investors.

High-resolution drone photogrammetry, DEM/DSM generation, and 3D terrain modeling.
Field-ready mapping for environmental, coastal, energy, and infrastructure projects.
Includes:
→ Ideal for environmental firms, coastal engineers, developers, and infrastructure planners.

Map the foundation of sustainable development with high-resolution terrain analytics.
Transform elevation, geomorphology, and accessibility data into decision-grade intelligence.
Includes:
→ Ideal for planners, engineers, miners, and mission designers.

Multi-hazard climate analytics to protect assets, communities, and infrastructure.
Adaptive, scenario-based risk modeling for resilience planning.
Includes:
→ Ideal for insurers, governments, resilience offices & defense logistics.

Next-generation siting + grid integration for solar, wind, and storage.
A full-stack spatial model combining terrain, infrastructure, congestion, markets, and ESG.
Includes:
→ Ideal for utilities, developers, state energy offices & infrastructure funds.

Multi-resource targeting across minerals, geothermal, water, and subsurface opportunity mapping.
Integrates remote sensing, terrain, geophysics, and ESG to accelerate discovery.
Includes:
→ Ideal for mining juniors, sovereign agencies & resource investors.

Ocean-facing intelligence for offshore energy, coastal resilience, and subsea infrastructure.
From shoreline retreat to bathymetry and subsea corridors.
Includes:
→ Ideal for offshore wind developers, port authorities & blue-economy programs.

Planetary surface mapping, navigation, hazard analysis, and illumination modeling for Artemis-class missions and robotic exploration.
This module fuses multi-sensor lunar datasets to provide site scoring, traversability, power and comms planning, and mission-grade routing logic.
Includes:
→ Ideal for Artemis planners, CLPS providers, lunar robotics teams, and planetary mission designers.

Terrain and mission intelligence for autonomous systems on land, sea, and planetary surfaces.
Built for drones, rovers, AUVs, and robotic exploration.
Includes:
→ Ideal for robotics teams, defense primes, autonomy labs & planetary mission planners.

Predictive intelligence across LEO, cislunar, and planetary operational environments.
From congestion and debris to space weather and refueling corridors.
Includes:
→ Ideal for satellite operators, government, defense & commercial space ventures.

Planetary surface mapping, navigation, hazard analysis, and illumination modeling for Artemis-class missions and robotic exploration.
This module fuses multi-sensor lunar datasets to provide site scoring, traversability, power and comms planning, and mission-grade routing logic.
Includes:
→ Ideal for Artemis planners, CLPS providers, lunar robotics teams, and planetary mission designers.

Reveal subsurface structure, stability, and resource potential with physics-informed analytics.
This module integrates lineaments, structural geology, geophysical proxies, inversion-ready workflows, and terrain mechanics to map subsurface architecture and predict where minerals, geothermal systems, and hazards are most likely to develop. It bridges remote sensing with geophysics to support deeper, more reliable site characterization.
→ Ideal for resource explorers, geothermal teams, hazard analysts, infrastructure engineers, and lunar mission planners.

Map geothermal opportunity with integrated subsurface proxies, structural indicators, and thermal analytics to fast-track early exploration.
This module combines terrain modeling, lineament extraction, heat-flow proxies, spectral alteration signatures, and infrastructure access scoring to identify and prioritize promising geothermal zones. Designed to reduce pre-drill uncertainty and guide responsible development.
→ Ideal for geothermal developers, state energy offices, utilities, and low-carbon infrastructure investors.

Predict hazards. Protect assets. Strengthen resilience.
Advanced multi-hazard modeling - floods, fires, landslides, storm surge, and seismic exposure delivered through integrated terrain, remote sensing, and climate analytics.
This module provides rapid assessment of regional hazard exposure, real-time anomaly detection using optical + SAR fusion, and resilience scoring for infrastructure, communities, and supply corridors.
→ Ideal for utilities, emergency agencies, insurers, and defense planners.

High-confidence resource intelligence integrating spectral analysis, structural controls, and AI-driven prospectivity scoring.
An enhanced version of your core mineral-intelligence toolkit, adding multi-sensor alteration mapping (ASTER, Sentinel, hyperspectral), terrain-structure correlation, ESG-sensitive routing, and ML-calibrated prospectivity models used for early-stage exploration and portfolio evaluation.
→ Ideal for mining juniors, investors, and sovereign resource agencies.

Site-level terrain, climate, and infrastructure intelligence for property due-diligence, development, and long-term resilience.
Combines flood/fire/erosion modeling, slope and access scoring, exposure to climate and ESG constraints, and proximity to utilities, transit, and infrastructure.
→ Ideal for developers, coastal buyers, asset managers, architects, and institutional real-estate teams.

Optimize routing and corridor planning with terrain-aware logistics, hazard overlays, and ESG constraints.
Supports transmission lines, pipelines, offshore cables, transport links, and mission supply routes. Integrates traversability modeling, hazard avoidance, habitat sensitivity, and cost-aware path scoring for Earth and early lunar analogs.
→ Ideal for utilities, energy developers, transport planners, engineering firms, and mission logistics teams.

Quantify environmental, climate, and operational performance for assets, corridors, and development zones.
A site-level sustainability engine that blends terrain, habitat sensitivity, water stress, erosion risk, climate exposure, ESG constraints, and resilience indicators. Designed for developers, infrastructure owners, and municipal agencies seeking measurable sustainability performance.
→ Ideal for ESG funds, development banks, and corporate sustainability teams.

Predict risk. Allocate capital. Build resilient portfolios.
Spatial-financial analytics combining ESG indicators, climate exposure, market signals, and regulatory dynamics to inform capital allocation and portfolio strategy.
This module delivers regional and asset-level ESG risk scoring, transition-risk analysis, investment suitability mapping, and scenario forecasting to support funds, lenders, and sovereign agencies.
→ Ideal for ESG funds, infrastructure investors, lenders, sovereign wealth teams, and climate-risk consultancies.

Protect offshore assets and plan subsea corridors with bathymetry-driven hazard modeling, seabed mobility analysis, and marine infrastructure risk intelligence.
This module integrates satellite oceanography, seabed geomorphology, shoreline change, SAR-based anomaly detection, and habitat constraints to support offshore wind, subsea cables, ports, and coastal energy systems.
→ Ideal for: offshore wind developers, subsea cable operators, marine engineering firms, port authorities, and blue-economy investors.
Solar-activity forecasting, radiation modeling, and geomagnetic disturbance intelligence powering resilient orbital operations, mission planning, and off-Earth infrastructure protection.
Immersive 3-D simulation of terrain, infrastructure, and mission zones.
Integrated sensing, navigation, and decision intelligence for robotic exploration, inspection, and repair across Earth and planetary environments.
Secure, privacy-preserving data federation enabling multi-operator learning across Earth, ocean, and space systems.
Terrain-aware routing, line-of-sight modeling, and autonomous planning for ground stations, optical networks, and lunar/planetary comms.
Transforms geospatial intelligence into financial and strategic foresight.

Unified orchestration and governance layer for planetary infrastructure.

Multi-objective design of missions and infrastructure (cost, risk, energy, comms, autonomy) with explainable trade-space.

Privacy-preserving, multi-party learning across nations, operators, and agencies.

Governance + traceability stack ensuring compliance-grade provenance.
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