AN INTELLIGENT RENEWABLE ENERGY NETWORK

POWER MOVESDIFFERENTLY NOW.

Current connects renewable generation, storage, transmission, businesses, transport, and communities through one balanced energy network.

6.4 GWRenewable Capacity
3.8 GWhBattery Storage
2.1MConnected Customers
87%Current Renewable Share
Pre-sunrise lightsSolar trackingTurbines rotatingRoutes energizedBalanced grid

SEE GENERATION, DEMAND, AND STORAGE AS ONE SYSTEM.

Toggle conceptual layers, select simulated infrastructure, and follow power routes across a regional digital twin.

The digital twin exposes generation, transmission, distribution, storage, demand, transport, weather, and constraint layers.

Sunline Array 4

Asset type
Grid asset
Rated capacity
500 kV / 850 MW
Current output
Simulated 74% loading
Availability
96% sample availability
Connected zone
Central renewable corridor
Weather
Mild wind, scattered cloud
Maintenance
Crew inspection scheduled

All dashboard information is simulated.

DIFFERENT SOURCES. ONE COORDINATED SUPPLY.

Move through five renewable generation environments and see how each source contributes to a balanced supply.

Solar, wind, hydro, geothermal, and sustainable bioenergy are presented as linked environments with simulated output.

Solar

Capacity
2.4 GW
Current output
1.86 GW
Operating constraint
Cloud cover and heat derating
Weather dependency
Clear east, scattered afternoon cloud
Connection
Routes through Eastgate balancing node

All dashboard information is simulated.

FOLLOW THE SUN. FORECAST THE CLOUDS.

Adjust daylight, cloud cover, panel angle, dust, and temperature to watch a simplified solar output model respond.

The solar farm includes tracking rows, fixed panels, inverters, transformers, roads, vegetation, and a weather station.

Irradiance476 W/m2
Output1.30 GW
Inverter efficiency91.3%
Next hour1.35 GW

Simplified educational simulation. This is not a bankable solar forecast.

CAPTURE THE WEATHER WITHOUT CONTROLLING IT.

Inspect onshore and offshore wind assets, change speed and direction, pause turbines, and view a simplified wake layer.

Turbines, offshore foundations, array cables, service access, and a weather system respond to wind controls.

Wind view
Rotor speed18.6 rpm
Blade pitch3.5 deg
Current output1.20 GW
Wake effect9% loss

Nacelle component view

Generator
Conceptual component
Gearbox
Inspectable educational cutaway
Pitch system
Responds to wind-speed slider
Export route
Follow power to onshore substation

All dashboard information is simulated.

STORED WATER. RESPONSIVE POWER.

Follow water from reservoir to intake, penstock, generator, tailrace, and grid connection at a mountainous facility.

The hydro view shows reservoir state, downstream release, flexibility, and a conceptual environmental-flow layer.

Operating mode
Flow986 m3/s
Power613 MW
Flexibility81%
ReleaseDownstream

High-level concept view only. It does not provide operational instructions for real facilities.

STORE THE SURPLUS. RELEASE IT WHEN THE GRID NEEDS IT.

Operate a simulated battery campus with charge, discharge, and hold modes while state of charge and route intensity shift.

Battery containers, inverters, transformers, cooling lanes, fire-safety zones, and control buildings visualize dispatch.

Battery action
71%
Rated power1.2 GW
Energy capacity3.8 GWh
Current actionCharging
Available discharge2.5 GWh

Storage technologies differ in duration, efficiency, cost, materials, and environmental profile.

SUPPLY AND DEMAND MUST MEET EVERY SECOND.

Run a simplified dispatch simulator with demand events, generation controls, storage behavior, and frequency feedback.

The balance simulator is an educational simplification, not a dispatch or power-system engineering tool.

Demand5.32 GW
Generation4.23 GW
Surplus-1.09 GW
Frequency49.91 Hz
Curtailed0.00 GW

Educational simplification only. This is not a real dispatch or power-system engineering tool.

MOVE POWER FROM WHERE IT IS GENERATED TO WHERE IT IS NEEDED.

Follow overhead and underground corridors, inspect capacity usage, and trigger a conceptual reroute during an outage.

The transmission corridor includes high-voltage lines, underground cable, substations, reactive support, and interconnection.

Selected line
Capacity usage62%
Voltage levelConceptual high voltage
RouteOverhead corridor
RerouteStandby

Flow lines are conceptual and do not represent AC power-flow physics or real operating instructions.

WHERE VOLTAGE CHANGES AND ROUTES CONNECT.

Rotate through a substation model with transformers, breakers, busbars, protection equipment, and a maintenance state.

A visible safety note reinforces that high-voltage infrastructure must only be accessed by qualified personnel.

Eastgate regional substation

Incoming lines
2 high-voltage corridors
Busbars
Normal
Transformers
3 sample units
Protection
Conceptual relays
Outgoing feeders
Urban, industrial, transport

All dashboard information is simulated.

Electrical infrastructure must only be accessed or operated by qualified personnel.

ONE GRID. MILLIONS OF DIFFERENT MOMENTS.

Move into a city where district demand, rooftop solar, local storage, transit, hospital load, and EV charging change by time of day.

Residential, commercial, hospital, transit, data center, university, industrial, and public service districts animate demand.

District demand55 MW
Rooftop solar42 MW
Local storage18 MWh available
EV chargingManaged peak

A SMALLER GRID THAT CAN STAND ON ITS OWN.

Operate a university microgrid in connected, renewable-priority, peak-reduction, backup, and islanded demonstration modes.

The microgrid combines rooftop solar, small wind, battery storage, EV charging, critical loads, and a grid connection.

Microgrid mode

Conceptual simulation only; not suitable for operating a real microgrid.

MOVE VEHICLES WITHOUT MOVING THE PEAK.

Compare immediate, off-peak, renewable-matching, fleet, and grid-support charging strategies across a transport network.

Home, workplace, public fast charging, bus depots, delivery fleets, rail, and local batteries shape a sample demand profile.

Charging strategy
Unmanaged peak12.6 MW
Managed peak7.3 MW
Local batterySupporting
V2G noteNot universally available

CLEANER POWER FOR THE LOADS THAT SHAPE THE ECONOMY.

Inspect industrial loads, shift flexible processes, and compare illustrative baseline and improved energy states.

Manufacturing lines, electric furnaces, motors, compressed air, heat recovery, solar, storage, and a control room are represented.

Improvement focus
Baseline peak118 MW
Improved peak108 MW
Power qualityConceptual stable band
Savings noteIllustrative estimate

THE GRID READS THE WEATHER BEFORE IT REACTS.

Scrub a regional weather timeline to see cloud, wind, temperature, rain, reservoir inflow, generation, and demand impacts.

The forecast view compares simulated values and uncertainty bands; it is not a real weather or generation forecast.

Simulated forecast demonstration only; not a real weather or generation forecast.

WHEN CONDITIONS CHANGE, THE GRID MUST ADAPT.

Play a controlled storm sequence as solar falls, wind rises, a line is interrupted, storage discharges, and priority services remain supplied.

The resilience event visualizes conceptual response options without executing actions against real infrastructure.

  1. 01Storm approaches
  2. 02Wind output rises
  3. 03Solar output falls
  4. 04Transmission line interrupted
  5. 05Storage discharges
  6. 06Demand response activates
  7. 07Power reroutes
  8. 08Priority services supplied
  9. 09Line returns
  10. 10Storage recovering

Controlled simulation only. No actions are connected to real infrastructure.

RENEWABLE INFRASTRUCTURE ACROSS THE REGION.

Select simulated regional projects and move the 3D map to their generation, storage, microgrid, and charging destinations.

A terrain map links Sunline Array, Northshore Wind, Blue Ridge Hydro, Orbit Storage, Eastgate Microgrid, and Greenway Charging.

SUNLINE ARRAY

Project type
850 MW solar
Status
Operating
Location
High desert plateau
Energy connection
Linked to Current regional grid
Illustrative outcome
1.2 TWh simulated annual renewable supply

All dashboard information is simulated.

CLAIMS SHOULD COME WITH METHODS.

Review illustrative environmental accounting with measured, modeled, estimated, and goal-based labels plus uncertainty notes.

Metrics cover renewable generation, avoided operational emissions, land, water, materials, habitat, recycling, and end-of-life planning.

Renewable generation

Sample estimate
18.6 TWh
Calculation basis
Modeled from simulated fleet availability and regional weather bins.
Reporting period
Illustrative 2026 operating year
Data category
Modeled
Uncertainty
+/- 8%

All dashboard information is simulated.

Avoided-emission and environmental figures are simulated, estimated, or modeled as labeled.

ONE SYSTEM, WATCHED CONTINUOUSLY.

Enter a nighttime control center where generation, storage, forecast, transmission, maintenance, and active event desks coordinate.

The control room contains regional displays, analyst stations, shift status, communications, and simulated event workflows.

Regional grid display

Generation mix
87% renewable simulated share
Demand
5.63 GW sample load
Storage
68% state of charge
Weather
Storm front in 6-hour forecast
Planned maintenance
2 transmission inspections
Active events
1 conceptual constraint watch

All dashboard information is simulated.

ENERGY SOLUTIONS BUILT AROUND DIFFERENT NEEDS.

Choose a destination inside the 3D grid to explore renewable supply, industrial microgrids, storage, EV charging, and partnerships.

Solutions are represented as destinations on the grid rather than a conventional feature-card grid.

Renewable Supply

Included services
Planning, modeling, procurement, operations
Sample project type
Regional supply agreement
Grid destination
Moves camera to relevant energy environment
Consultation panel
Available in assessment

All dashboard information is simulated.

Open consultation panel

WHAT SHOULD YOUR ENERGY SYSTEM DO?

Complete a working multi-step assessment with validation and a live, non-investment-grade project summary.

The assessment collects organization, location, energy profile, goals, and contact details before showing a polished confirmation.

Organization

THE FUTURE OF ENERGYIS A BALANCED SYSTEM.

Connect renewable generation, storage, infrastructure, and intelligent demand through one coordinated grid.

SolarDecreasing
WindActive
HydroAdjusting
BatteryDischarging
GridBalanced

Current static grid summary

The Current demonstration connects simulated solar, wind, hydro, geothermal, sustainable bioenergy, battery storage, transmission, substations, city distribution, industrial microgrids, EV charging, weather, resilience, environmental accounting, and operations into one conceptual renewable grid. Reduced-motion users receive the same content and controls with less animated camera movement.