A shared reality model for a connected planet

THE PLANET HAS SIGNALS.
WE TURN THEM INTO DECISIONS.

EarthSynapse connects climate, water, energy, food, ecosystems, infrastructure and human vulnerability inside one continuously updated geospatial decision system.

See cascading risks early. Compare interventions. Verify what worked.

23,418
SIGNAL STREAMS
163
ACTIVE ANOMALIES
12
HIGH-PRIORITY CASCADES
94.8%
DATA FRESHNESS
87%
MODEL CONFIDENCE
Synthetic demonstration
Section 02·The loop

NOT ANOTHER CLIMATE MAP.
A DECISION LOOP FOR THE PLANET.

Observe → Understand → Predict → Decide → Act → Measure · every layer should enable a decision

Section 03·Cross-system dependency

SEE THE CASCADE, NOT THE SILO.

Hover a system to reveal the systems it constrains. Every card carries a signal, the dependency it travels along, and the decision it makes possible.

Water

3 links
Signal
River discharge falling below seasonal baseline
Dependency
Power-plant cooling and municipal supply
Decision enabled
Prioritize demand reduction, storage and allocation

Energy

3 links
Signal
Grid reserve margin approaching critical threshold
Dependency
Cooling water, import capacity and peak demand
Decision enabled
Activate the lowest-cost risk-reduction portfolio

Food

2 links
Signal
Soil moisture in the 7th percentile across the irrigated belt
Dependency
Irrigation abstraction and freight corridor capacity
Decision enabled
Sequence abstraction limits against yield-critical windows

Critical Infrastructure

3 links
Signal
19 rail segments entering thermal-restriction range
Dependency
Track temperature, river draft and terminal throughput
Decision enabled
Pre-position protection before throughput collapses

Ecosystems

2 links
Signal
Riparian vegetation anomaly persisting beyond recovery window
Dependency
Low-flow duration and thermal load in the river reach
Decision enabled
Set ecological floor flows before allocation decisions

Human Vulnerability

3 links
Signal
Night-time heat exposure rising in low-cooling-access districts
Dependency
Municipal water pressure and electricity continuity
Decision enabled
Place cooling capacity where vulnerability is highest

Section 04 — Research origin

IT STARTED AS A CITY MAP.
IT BECAME A PLANETARY SYSTEM.

  1. 2020BUDAPEST

    A geoinformatics research project connected land use, vegetation, air quality, road traffic, cycling and public transport to support better urban decisions.

    01 / 03
  2. 2026DANUBE BASIN

    The same integrated method expands into a compound water–energy–food–infrastructure scenario.

    02 / 03
  3. NEXTPLANETARY FEDERATION

    Interoperable regional systems form a shared global decision-intelligence layer.

    03 / 03

Budapest, 2020 — Henrik Faul — Geoinformatics research

Section 05·Use cases

FROM SIGNAL TO COORDINATED ACTION.

Water–energy nexus

User
National grid operator with a river-cooled generation fleet
Decision
Whether to derate, import or trigger demand response, and when
Output
Ranked 72-hour action portfolio with cooling-constraint probability per asset
Modelled outcome
Reserve margin held above 8% with 12 fewer derating hours

Critical-infrastructure continuity

User
Rail and river-freight infrastructure manager
Decision
Which segments to protect first under thermal and draft restrictions
Output
Segment-level restriction forecast with rerouting capacity estimates
Modelled outcome
19 critical segments protected, corridor throughput loss cut by 31%

Food-system risk

User
Regional water directorate and agricultural agency
Decision
How to phase irrigation abstraction across yield-critical windows
Output
Abstraction schedule scored against yield loss and ecological floor flow
Modelled outcome
Modelled yield loss reduced by 18% at equal water volume

Urban and regional operations

User
Metropolitan utility and city operations centre
Decision
Where to apply pressure zoning and open cooling capacity
Output
District-level pressure plan with vulnerability-weighted hub siting
Modelled outcome
310,000 residents kept on continuous supply during peak stress

Ecosystem restoration

User
Basin authority and environmental agency
Decision
Which reaches to restore for the largest system-wide buffering effect
Output
Restoration priority map with downstream flow and thermal co-benefits
Modelled outcome
Low-flow buffering improved across 240 km of monitored reach

Humanitarian early warning

User
Emergency-management and humanitarian response agency
Decision
Where to pre-position water, cooling and medical capacity
Output
Compound-exposure forecast by district with lead time and confidence
Modelled outcome
Pre-positioning lead time extended from 3 days to 14 days
See the chain reaction before it becomes a crisis.

THE NEXT CRISIS WILL CROSS SYSTEM BOUNDARIES.
YOUR DECISION SYSTEM SHOULD TOO.

Enter command center
Synthetic demo data — not a live operational forecast

All figures, sources and scenarios in this demonstration are synthetic. No partnerships, contracts or live data access are implied.