A coastal community under storm and wildfire risk with distributed energy network conditions visualized across the grid

The intelligencethat keeps criticalpower systems on.

Hygge connects forecasts, energy availability, and your priorities to help decide what happens next—then coordinates authorized actions and confirms the response.

A system that responds to the many changing conditions.

Solar, electric vehicles, heating and cooling, storage, rates, weather, and grid events overlap in real time. Intelligence turns those signals into a clear operating plan.

See the system

Outage risk

Build reserve before power becomes uncertain.

High demand

Protect priority loads and reduce avoidable peaks.

High emissions

Use stored energy when the grid is relying on its dirtiest, most avoidable generation.

Grid request

Coordinate flexible capacity under partner-defined programs.

A family sharing dinner in a warm home while Hygge Power keeps energy useful and comfortable
24 HOUR LOAD CURVEENERGY THROUGH THE DAY
GRIDStable60 Hz · reserve available
WEATHERStorm watchExpected 9 PM
RATESPeak window4–9 PM
OUTAGE RISKElevatedPrepare reserve
DEVICE HEALTH12 of 13 respondingEquipment status
DemandSolarProtected reserveEME maps the next safe action
Signals inform a decision. Authorized instructions reach equipment, and feedback helps validate the response.

Cloud-informed, locally protected.

Hygge Energy Storage has built-in cellular connectivity alongside local controls. MES brings storage, devices, and API controls together in Hygge’s cloud layer. Connect → Decide → Respond. Choose a situation and follow how energy storage, intelligent planning, and dispatch work together.

What would you like your energy system to do?

Following: Prepare for an outage. The three stages below reflect this scenario.

MES — connects storage, devices, and controls

Connect. Storage, devices, and controls.

MES, the Modular Energy System, brings storage, devices, and API controls together in the cloud. Hygge Energy Storage is one physical product connected through this layer.

Stored energy and essential devices, ready for a changing forecast.

Equipment and inputs

What’s connected

Hygge Energy Storage, compatible charging controls, and the devices or circuits selected for backup.

What informs the system

Outage forecasts, battery charge, device demand, and your chosen reserve target.

Conditions + your priorities

Information helps guide the system. Controls connect those decisions to equipment.

MES · Cloud connections
  • Energy storagePart of this example
  • Solar integrationOptional integration
  • Connected controlsPart of this example
  • Essential devicesPart of this example
Supported equipment and integrations depend on the system configuration.

EME — plans and explains

Decide. Around your priorities.

EME connects the available energy with your priorities, explains the next move, and keeps you in control.

Increase the reserve target before the storm arrives.

Plan and permissions

Why this action

EME weighs the forecast against available energy and your essential loads, then proposes a charging plan within the system’s limits.

Your preferences come first

Charging follows your approved settings. You receive an explanation of the changed reserve target.

Prepare reserve before the storm

Planned stored energy over time

Stored energyHighLowEnergy held for essentialsStartPlan in progressLaterTime →
Forecast receivedBuild reserveHold for essentials
Stored energy is prepared ahead of the event, then held for your chosen priorities.
Hygge app screens showing home energy, connected systems, and weather information
What is happening? What comes next? What should the system do? The app brings conditions, forecasts, and the proposed action together, with controls that keep you involved.

RED — sends and confirms

Respond. Power that follows through.

Your approved plan reaches connected equipment, and the response comes back clearly. RED carries out the instruction and uses equipment feedback to validate the response.

Hygge modular energy storage in a home setting
EME decisionReserve decision approved
Connected equipmentEnergy Storage + connected devices
  1. 01 · InstructionCharging instructions sent
  2. 02 · ResponseEnergy Storage reports charging
  3. 03 · ValidationCharging feedback received
Response and confirmation

What came back

The feedback separates the requested reserve target from the device’s reported charging state. A charging response does not mean the target has already been reached.

If confirmation is missing

The result stays unconfirmed and is surfaced for review.

Save this scenario

Your Priority System.

MES · Inputs and capabilities
  • Weather
  • Devices
  • Loads
  • People
EME · Desired outcomes
  • Protection and alerts
  • Insight and planning
RED · Authorized response
  • Stored energy reserve
  • Priority loads

Understand how the system works in detail.

Receive a personalized PDF explaining each selected component, how the MES, EME, and RED layers work together, and which technical questions to explore next.

We use your email to deliver this report and understand interest in this configuration.

Pilot and partner evaluation

Connect the equipment. Define the boundaries.

Equipment and connections

Hygge Energy Storage includes built-in cellular connectivity, power electronics, and local controls. MES is the separate cloud layer where storage, devices, and API controls come together. Partner equipment and connection requirements are reviewed for each evaluation.

Permissions and limits

Define the devices, reserve settings, and actions the system may use. Instructions must stay within the agreed permissions and equipment limits.

Status and response

Review what equipment can report, how instructions are acknowledged, and how missing responses are surfaced. An instruction sent is distinct from a response confirmed.

Share your equipment, interfaces, and intended use. Together, we can define compatibility checks and what a pilot needs to establish.

An intelligence layer for real-world energy.

Hygge combines physical energy systems, decision intelligence, and reliable dispatch so energy can respond to changing conditions with more clarity, control, and confidence.